405 lines
12 KiB
C
405 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/* Copyright (c) 2018-2019 Hisilicon Limited. */
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#include <linux/debugfs.h>
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#include <linux/device.h>
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#include "hnae3.h"
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#include "hns3_enet.h"
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#define HNS3_DBG_READ_LEN 256
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#define HNS3_DBG_WRITE_LEN 1024
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static struct dentry *hns3_dbgfs_root;
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static int hns3_dbg_queue_info(struct hnae3_handle *h,
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const char *cmd_buf)
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{
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struct hns3_nic_priv *priv = h->priv;
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struct hns3_enet_ring *ring;
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u32 base_add_l, base_add_h;
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u32 queue_num, queue_max;
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u32 value, i = 0;
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int cnt;
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if (!priv->ring) {
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dev_err(&h->pdev->dev, "priv->ring is NULL\n");
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return -EFAULT;
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}
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queue_max = h->kinfo.num_tqps;
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cnt = kstrtouint(&cmd_buf[11], 0, &queue_num);
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if (cnt)
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queue_num = 0;
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else
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queue_max = queue_num + 1;
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dev_info(&h->pdev->dev, "queue info\n");
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if (queue_num >= h->kinfo.num_tqps) {
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dev_err(&h->pdev->dev,
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"Queue number(%u) is out of range(0-%u)\n", queue_num,
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h->kinfo.num_tqps - 1);
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return -EINVAL;
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}
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for (i = queue_num; i < queue_max; i++) {
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/* Each cycle needs to determine whether the instance is reset,
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* to prevent reference to invalid memory. And need to ensure
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* that the following code is executed within 100ms.
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*/
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if (!test_bit(HNS3_NIC_STATE_INITED, &priv->state) ||
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test_bit(HNS3_NIC_STATE_RESETTING, &priv->state))
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return -EPERM;
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ring = &priv->ring[(u32)(i + h->kinfo.num_tqps)];
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base_add_h = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_BASEADDR_H_REG);
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base_add_l = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_BASEADDR_L_REG);
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dev_info(&h->pdev->dev, "RX(%u) BASE ADD: 0x%08x%08x\n", i,
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base_add_h, base_add_l);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_BD_NUM_REG);
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dev_info(&h->pdev->dev, "RX(%u) RING BD NUM: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_BD_LEN_REG);
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dev_info(&h->pdev->dev, "RX(%u) RING BD LEN: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_TAIL_REG);
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dev_info(&h->pdev->dev, "RX(%u) RING TAIL: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_HEAD_REG);
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dev_info(&h->pdev->dev, "RX(%u) RING HEAD: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_FBDNUM_REG);
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dev_info(&h->pdev->dev, "RX(%u) RING FBDNUM: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_RX_RING_PKTNUM_RECORD_REG);
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dev_info(&h->pdev->dev, "RX(%u) RING PKTNUM: %u\n", i, value);
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ring = &priv->ring[i];
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base_add_h = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_BASEADDR_H_REG);
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base_add_l = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_BASEADDR_L_REG);
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dev_info(&h->pdev->dev, "TX(%u) BASE ADD: 0x%08x%08x\n", i,
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base_add_h, base_add_l);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_BD_NUM_REG);
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dev_info(&h->pdev->dev, "TX(%u) RING BD NUM: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_TC_REG);
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dev_info(&h->pdev->dev, "TX(%u) RING TC: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_TAIL_REG);
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dev_info(&h->pdev->dev, "TX(%u) RING TAIL: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_HEAD_REG);
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dev_info(&h->pdev->dev, "TX(%u) RING HEAD: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_FBDNUM_REG);
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dev_info(&h->pdev->dev, "TX(%u) RING FBDNUM: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_OFFSET_REG);
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dev_info(&h->pdev->dev, "TX(%u) RING OFFSET: %u\n", i, value);
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value = readl_relaxed(ring->tqp->io_base +
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HNS3_RING_TX_RING_PKTNUM_RECORD_REG);
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dev_info(&h->pdev->dev, "TX(%u) RING PKTNUM: %u\n\n", i,
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value);
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}
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return 0;
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}
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static int hns3_dbg_queue_map(struct hnae3_handle *h)
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{
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struct hns3_nic_priv *priv = h->priv;
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int i;
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if (!h->ae_algo->ops->get_global_queue_id)
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return -EOPNOTSUPP;
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dev_info(&h->pdev->dev, "map info for queue id and vector id\n");
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dev_info(&h->pdev->dev,
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"local queue id | global queue id | vector id\n");
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for (i = 0; i < h->kinfo.num_tqps; i++) {
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u16 global_qid;
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global_qid = h->ae_algo->ops->get_global_queue_id(h, i);
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if (!priv->ring || !priv->ring[i].tqp_vector)
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continue;
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dev_info(&h->pdev->dev,
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" %4d %4d %4d\n",
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i, global_qid, priv->ring[i].tqp_vector->vector_irq);
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}
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return 0;
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}
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static int hns3_dbg_bd_info(struct hnae3_handle *h, const char *cmd_buf)
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{
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struct hns3_nic_priv *priv = h->priv;
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struct hns3_desc *rx_desc, *tx_desc;
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struct device *dev = &h->pdev->dev;
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struct hns3_enet_ring *ring;
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u32 tx_index, rx_index;
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u32 q_num, value;
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dma_addr_t addr;
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int cnt;
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cnt = sscanf(&cmd_buf[8], "%u %u", &q_num, &tx_index);
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if (cnt == 2) {
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rx_index = tx_index;
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} else if (cnt != 1) {
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dev_err(dev, "bd info: bad command string, cnt=%d\n", cnt);
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return -EINVAL;
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}
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if (q_num >= h->kinfo.num_tqps) {
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dev_err(dev, "Queue number(%u) is out of range(0-%u)\n", q_num,
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h->kinfo.num_tqps - 1);
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return -EINVAL;
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}
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ring = &priv->ring[q_num];
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value = readl_relaxed(ring->tqp->io_base + HNS3_RING_TX_RING_TAIL_REG);
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tx_index = (cnt == 1) ? value : tx_index;
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if (tx_index >= ring->desc_num) {
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dev_err(dev, "bd index(%u) is out of range(0-%u)\n", tx_index,
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ring->desc_num - 1);
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return -EINVAL;
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}
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tx_desc = &ring->desc[tx_index];
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addr = le64_to_cpu(tx_desc->addr);
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dev_info(dev, "TX Queue Num: %u, BD Index: %u\n", q_num, tx_index);
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dev_info(dev, "(TX)addr: %pad\n", &addr);
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dev_info(dev, "(TX)vlan_tag: %u\n", le16_to_cpu(tx_desc->tx.vlan_tag));
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dev_info(dev, "(TX)send_size: %u\n",
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le16_to_cpu(tx_desc->tx.send_size));
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dev_info(dev, "(TX)vlan_tso: %u\n", tx_desc->tx.type_cs_vlan_tso);
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dev_info(dev, "(TX)l2_len: %u\n", tx_desc->tx.l2_len);
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dev_info(dev, "(TX)l3_len: %u\n", tx_desc->tx.l3_len);
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dev_info(dev, "(TX)l4_len: %u\n", tx_desc->tx.l4_len);
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dev_info(dev, "(TX)vlan_tag: %u\n",
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le16_to_cpu(tx_desc->tx.outer_vlan_tag));
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dev_info(dev, "(TX)tv: %u\n", le16_to_cpu(tx_desc->tx.tv));
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dev_info(dev, "(TX)vlan_msec: %u\n", tx_desc->tx.ol_type_vlan_msec);
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dev_info(dev, "(TX)ol2_len: %u\n", tx_desc->tx.ol2_len);
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dev_info(dev, "(TX)ol3_len: %u\n", tx_desc->tx.ol3_len);
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dev_info(dev, "(TX)ol4_len: %u\n", tx_desc->tx.ol4_len);
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dev_info(dev, "(TX)paylen: %u\n", le32_to_cpu(tx_desc->tx.paylen));
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dev_info(dev, "(TX)vld_ra_ri: %u\n",
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le16_to_cpu(tx_desc->tx.bdtp_fe_sc_vld_ra_ri));
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dev_info(dev, "(TX)mss: %u\n", le16_to_cpu(tx_desc->tx.mss));
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ring = &priv->ring[q_num + h->kinfo.num_tqps];
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value = readl_relaxed(ring->tqp->io_base + HNS3_RING_RX_RING_TAIL_REG);
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rx_index = (cnt == 1) ? value : tx_index;
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rx_desc = &ring->desc[rx_index];
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addr = le64_to_cpu(rx_desc->addr);
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dev_info(dev, "RX Queue Num: %u, BD Index: %u\n", q_num, rx_index);
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dev_info(dev, "(RX)addr: %pad\n", &addr);
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dev_info(dev, "(RX)l234_info: %u\n",
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le32_to_cpu(rx_desc->rx.l234_info));
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dev_info(dev, "(RX)pkt_len: %u\n", le16_to_cpu(rx_desc->rx.pkt_len));
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dev_info(dev, "(RX)size: %u\n", le16_to_cpu(rx_desc->rx.size));
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dev_info(dev, "(RX)rss_hash: %u\n", le32_to_cpu(rx_desc->rx.rss_hash));
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dev_info(dev, "(RX)fd_id: %u\n", le16_to_cpu(rx_desc->rx.fd_id));
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dev_info(dev, "(RX)vlan_tag: %u\n", le16_to_cpu(rx_desc->rx.vlan_tag));
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dev_info(dev, "(RX)o_dm_vlan_id_fb: %u\n",
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le16_to_cpu(rx_desc->rx.o_dm_vlan_id_fb));
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dev_info(dev, "(RX)ot_vlan_tag: %u\n",
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le16_to_cpu(rx_desc->rx.ot_vlan_tag));
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dev_info(dev, "(RX)bd_base_info: %u\n",
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le32_to_cpu(rx_desc->rx.bd_base_info));
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return 0;
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}
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static void hns3_dbg_help(struct hnae3_handle *h)
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{
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#define HNS3_DBG_BUF_LEN 256
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char printf_buf[HNS3_DBG_BUF_LEN];
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dev_info(&h->pdev->dev, "available commands\n");
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dev_info(&h->pdev->dev, "queue info <number>\n");
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dev_info(&h->pdev->dev, "queue map\n");
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dev_info(&h->pdev->dev, "bd info <q_num> <bd index>\n");
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if (!hns3_is_phys_func(h->pdev))
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return;
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dev_info(&h->pdev->dev, "dump fd tcam\n");
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dev_info(&h->pdev->dev, "dump tc\n");
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dev_info(&h->pdev->dev, "dump tm map <q_num>\n");
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dev_info(&h->pdev->dev, "dump tm\n");
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dev_info(&h->pdev->dev, "dump qos pause cfg\n");
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dev_info(&h->pdev->dev, "dump qos pri map\n");
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dev_info(&h->pdev->dev, "dump qos buf cfg\n");
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dev_info(&h->pdev->dev, "dump mng tbl\n");
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dev_info(&h->pdev->dev, "dump reset info\n");
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dev_info(&h->pdev->dev, "dump m7 info\n");
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dev_info(&h->pdev->dev, "dump ncl_config <offset> <length>(in hex)\n");
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dev_info(&h->pdev->dev, "dump mac tnl status\n");
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memset(printf_buf, 0, HNS3_DBG_BUF_LEN);
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strncat(printf_buf, "dump reg [[bios common] [ssu <port_id>]",
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HNS3_DBG_BUF_LEN - 1);
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strncat(printf_buf + strlen(printf_buf),
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" [igu egu <port_id>] [rpu <tc_queue_num>]",
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HNS3_DBG_BUF_LEN - strlen(printf_buf) - 1);
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strncat(printf_buf + strlen(printf_buf),
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" [rtc] [ppp] [rcb] [tqp <queue_num>]]\n",
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HNS3_DBG_BUF_LEN - strlen(printf_buf) - 1);
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dev_info(&h->pdev->dev, "%s", printf_buf);
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memset(printf_buf, 0, HNS3_DBG_BUF_LEN);
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strncat(printf_buf, "dump reg dcb <port_id> <pri_id> <pg_id>",
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HNS3_DBG_BUF_LEN - 1);
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strncat(printf_buf + strlen(printf_buf), " <rq_id> <nq_id> <qset_id>\n",
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HNS3_DBG_BUF_LEN - strlen(printf_buf) - 1);
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dev_info(&h->pdev->dev, "%s", printf_buf);
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}
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static ssize_t hns3_dbg_cmd_read(struct file *filp, char __user *buffer,
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size_t count, loff_t *ppos)
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{
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int uncopy_bytes;
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char *buf;
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int len;
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if (*ppos != 0)
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return 0;
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if (count < HNS3_DBG_READ_LEN)
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return -ENOSPC;
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buf = kzalloc(HNS3_DBG_READ_LEN, GFP_KERNEL);
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if (!buf)
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return -ENOMEM;
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len = snprintf(buf, HNS3_DBG_READ_LEN, "%s\n",
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"Please echo help to cmd to get help information");
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uncopy_bytes = copy_to_user(buffer, buf, len);
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kfree(buf);
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if (uncopy_bytes)
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return -EFAULT;
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return (*ppos = len);
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}
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static ssize_t hns3_dbg_cmd_write(struct file *filp, const char __user *buffer,
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size_t count, loff_t *ppos)
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{
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struct hnae3_handle *handle = filp->private_data;
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struct hns3_nic_priv *priv = handle->priv;
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char *cmd_buf, *cmd_buf_tmp;
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int uncopied_bytes;
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int ret = 0;
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if (*ppos != 0)
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return 0;
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/* Judge if the instance is being reset. */
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if (!test_bit(HNS3_NIC_STATE_INITED, &priv->state) ||
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test_bit(HNS3_NIC_STATE_RESETTING, &priv->state))
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return 0;
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if (count > HNS3_DBG_WRITE_LEN)
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return -ENOSPC;
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cmd_buf = kzalloc(count + 1, GFP_KERNEL);
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if (!cmd_buf)
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return count;
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uncopied_bytes = copy_from_user(cmd_buf, buffer, count);
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if (uncopied_bytes) {
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kfree(cmd_buf);
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return -EFAULT;
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}
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cmd_buf[count] = '\0';
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cmd_buf_tmp = strchr(cmd_buf, '\n');
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if (cmd_buf_tmp) {
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*cmd_buf_tmp = '\0';
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count = cmd_buf_tmp - cmd_buf + 1;
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}
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if (strncmp(cmd_buf, "help", 4) == 0)
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hns3_dbg_help(handle);
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else if (strncmp(cmd_buf, "queue info", 10) == 0)
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ret = hns3_dbg_queue_info(handle, cmd_buf);
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else if (strncmp(cmd_buf, "queue map", 9) == 0)
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ret = hns3_dbg_queue_map(handle);
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else if (strncmp(cmd_buf, "bd info", 7) == 0)
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ret = hns3_dbg_bd_info(handle, cmd_buf);
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else if (handle->ae_algo->ops->dbg_run_cmd)
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ret = handle->ae_algo->ops->dbg_run_cmd(handle, cmd_buf);
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else
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ret = -EOPNOTSUPP;
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if (ret)
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hns3_dbg_help(handle);
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kfree(cmd_buf);
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cmd_buf = NULL;
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return count;
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}
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static const struct file_operations hns3_dbg_cmd_fops = {
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.owner = THIS_MODULE,
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.open = simple_open,
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.read = hns3_dbg_cmd_read,
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.write = hns3_dbg_cmd_write,
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};
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void hns3_dbg_init(struct hnae3_handle *handle)
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{
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const char *name = pci_name(handle->pdev);
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handle->hnae3_dbgfs = debugfs_create_dir(name, hns3_dbgfs_root);
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debugfs_create_file("cmd", 0600, handle->hnae3_dbgfs, handle,
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&hns3_dbg_cmd_fops);
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}
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void hns3_dbg_uninit(struct hnae3_handle *handle)
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{
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debugfs_remove_recursive(handle->hnae3_dbgfs);
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handle->hnae3_dbgfs = NULL;
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}
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void hns3_dbg_register_debugfs(const char *debugfs_dir_name)
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{
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hns3_dbgfs_root = debugfs_create_dir(debugfs_dir_name, NULL);
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}
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void hns3_dbg_unregister_debugfs(void)
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{
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debugfs_remove_recursive(hns3_dbgfs_root);
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hns3_dbgfs_root = NULL;
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}
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