2427c27e03
In current driver print log function, some print format symbols does not match with the actual variable types. Signed-off-by: Hongbo Zheng <zhenghongbo3@huawei.com> Signed-off-by: Lijun Ou <oulijun@huawei.com>
443 lines
12 KiB
C
443 lines
12 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2018-2019 Hisilicon Limited.
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*/
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#include <rte_ethdev_driver.h>
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#include <rte_io.h>
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#include "hns3_ethdev.h"
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#include "hns3_regs.h"
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#include "hns3_logs.h"
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#include "hns3_intr.h"
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#include "hns3_rxtx.h"
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#define HNS3_CMD_CODE_OFFSET 2
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static const struct errno_respcode_map err_code_map[] = {
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{0, 0},
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{1, -EPERM},
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{2, -ENOENT},
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{5, -EIO},
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{11, -EAGAIN},
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{12, -ENOMEM},
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{16, -EBUSY},
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{22, -EINVAL},
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{28, -ENOSPC},
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{95, -EOPNOTSUPP},
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};
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static int
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hns3_resp_to_errno(uint16_t resp_code)
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{
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uint32_t i, num;
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num = sizeof(err_code_map) / sizeof(struct errno_respcode_map);
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for (i = 0; i < num; i++) {
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if (err_code_map[i].resp_code == resp_code)
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return err_code_map[i].err_no;
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}
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return -EIO;
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}
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static void
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hns3_poll_all_sync_msg(void)
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{
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struct rte_eth_dev *eth_dev;
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struct hns3_adapter *adapter;
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const char *name;
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uint16_t port_id;
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RTE_ETH_FOREACH_DEV(port_id) {
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eth_dev = &rte_eth_devices[port_id];
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name = eth_dev->device->driver->name;
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if (strcmp(name, "net_hns3") && strcmp(name, "net_hns3_vf"))
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continue;
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adapter = eth_dev->data->dev_private;
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if (!adapter || adapter->hw.adapter_state == HNS3_NIC_CLOSED)
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continue;
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/* Synchronous msg, the mbx_resp.req_msg_data is non-zero */
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if (adapter->hw.mbx_resp.req_msg_data)
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hns3_dev_handle_mbx_msg(&adapter->hw);
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}
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}
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static int
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hns3_get_mbx_resp(struct hns3_hw *hw, uint16_t code0, uint16_t code1,
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uint8_t *resp_data, uint16_t resp_len)
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{
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#define HNS3_MAX_RETRY_MS 500
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struct hns3_adapter *hns = HNS3_DEV_HW_TO_ADAPTER(hw);
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struct hns3_mbx_resp_status *mbx_resp;
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bool in_irq = false;
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uint64_t now;
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uint64_t end;
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if (resp_len > HNS3_MBX_MAX_RESP_DATA_SIZE) {
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hns3_err(hw, "VF mbx response len(=%u) exceeds maximum(=%d)",
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resp_len, HNS3_MBX_MAX_RESP_DATA_SIZE);
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return -EINVAL;
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}
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now = get_timeofday_ms();
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end = now + HNS3_MAX_RETRY_MS;
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while ((hw->mbx_resp.head != hw->mbx_resp.tail + hw->mbx_resp.lost) &&
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(now < end)) {
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if (rte_atomic16_read(&hw->reset.disable_cmd)) {
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hns3_err(hw, "Don't wait for mbx respone because of "
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"disable_cmd");
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return -EBUSY;
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}
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if (is_reset_pending(hns)) {
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hw->mbx_resp.req_msg_data = 0;
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hns3_err(hw, "Don't wait for mbx respone because of "
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"reset pending");
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return -EIO;
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}
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/*
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* The mbox response is running on the interrupt thread.
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* Sending mbox in the interrupt thread cannot wait for the
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* response, so polling the mbox response on the irq thread.
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*/
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if (pthread_equal(hw->irq_thread_id, pthread_self())) {
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in_irq = true;
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hns3_poll_all_sync_msg();
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} else {
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rte_delay_ms(HNS3_POLL_RESPONE_MS);
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}
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now = get_timeofday_ms();
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}
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hw->mbx_resp.req_msg_data = 0;
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if (now >= end) {
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hw->mbx_resp.lost++;
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hns3_err(hw,
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"VF could not get mbx(%u,%u) head(%u) tail(%u) lost(%u) from PF in_irq:%d",
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code0, code1, hw->mbx_resp.head, hw->mbx_resp.tail,
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hw->mbx_resp.lost, in_irq);
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return -ETIME;
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}
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rte_io_rmb();
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mbx_resp = &hw->mbx_resp;
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if (mbx_resp->resp_status)
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return mbx_resp->resp_status;
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if (resp_data)
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memcpy(resp_data, &mbx_resp->additional_info[0], resp_len);
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return 0;
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}
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int
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hns3_send_mbx_msg(struct hns3_hw *hw, uint16_t code, uint16_t subcode,
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const uint8_t *msg_data, uint8_t msg_len, bool need_resp,
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uint8_t *resp_data, uint16_t resp_len)
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{
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struct hns3_mbx_vf_to_pf_cmd *req;
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struct hns3_cmd_desc desc;
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bool is_ring_vector_msg;
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int offset;
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int ret;
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req = (struct hns3_mbx_vf_to_pf_cmd *)desc.data;
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/* first two bytes are reserved for code & subcode */
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if (msg_len > (HNS3_MBX_MAX_MSG_SIZE - HNS3_CMD_CODE_OFFSET)) {
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hns3_err(hw,
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"VF send mbx msg fail, msg len %u exceeds max payload len %d",
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msg_len, HNS3_MBX_MAX_MSG_SIZE - HNS3_CMD_CODE_OFFSET);
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return -EINVAL;
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}
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hns3_cmd_setup_basic_desc(&desc, HNS3_OPC_MBX_VF_TO_PF, false);
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req->msg[0] = code;
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is_ring_vector_msg = (code == HNS3_MBX_MAP_RING_TO_VECTOR) ||
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(code == HNS3_MBX_UNMAP_RING_TO_VECTOR) ||
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(code == HNS3_MBX_GET_RING_VECTOR_MAP);
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if (!is_ring_vector_msg)
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req->msg[1] = subcode;
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if (msg_data) {
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offset = is_ring_vector_msg ? 1 : HNS3_CMD_CODE_OFFSET;
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memcpy(&req->msg[offset], msg_data, msg_len);
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}
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/* synchronous send */
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if (need_resp) {
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req->mbx_need_resp |= HNS3_MBX_NEED_RESP_BIT;
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rte_spinlock_lock(&hw->mbx_resp.lock);
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hw->mbx_resp.req_msg_data = (uint32_t)code << 16 | subcode;
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hw->mbx_resp.head++;
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ret = hns3_cmd_send(hw, &desc, 1);
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if (ret) {
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rte_spinlock_unlock(&hw->mbx_resp.lock);
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hns3_err(hw, "VF failed(=%d) to send mbx message to PF",
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ret);
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return ret;
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}
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ret = hns3_get_mbx_resp(hw, code, subcode, resp_data, resp_len);
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rte_spinlock_unlock(&hw->mbx_resp.lock);
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} else {
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/* asynchronous send */
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ret = hns3_cmd_send(hw, &desc, 1);
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if (ret) {
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hns3_err(hw, "VF failed(=%d) to send mbx message to PF",
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ret);
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return ret;
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}
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}
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return ret;
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}
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static bool
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hns3_cmd_crq_empty(struct hns3_hw *hw)
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{
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uint32_t tail = hns3_read_dev(hw, HNS3_CMDQ_RX_TAIL_REG);
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return tail == hw->cmq.crq.next_to_use;
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}
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static void
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hns3_mbx_handler(struct hns3_hw *hw)
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{
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struct hns3_mac *mac = &hw->mac;
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enum hns3_reset_level reset_level;
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uint16_t *msg_q;
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uint8_t opcode;
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uint32_t tail;
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tail = hw->arq.tail;
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/* process all the async queue messages */
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while (tail != hw->arq.head) {
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msg_q = hw->arq.msg_q[hw->arq.head];
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opcode = msg_q[0] & 0xff;
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switch (opcode) {
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case HNS3_MBX_LINK_STAT_CHANGE:
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memcpy(&mac->link_speed, &msg_q[2],
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sizeof(mac->link_speed));
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mac->link_status = rte_le_to_cpu_16(msg_q[1]);
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mac->link_duplex = (uint8_t)rte_le_to_cpu_16(msg_q[4]);
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break;
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case HNS3_MBX_ASSERTING_RESET:
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/* PF has asserted reset hence VF should go in pending
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* state and poll for the hardware reset status till it
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* has been completely reset. After this stack should
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* eventually be re-initialized.
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*/
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reset_level = rte_le_to_cpu_16(msg_q[1]);
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hns3_atomic_set_bit(reset_level, &hw->reset.pending);
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hns3_warn(hw, "PF inform reset level %d", reset_level);
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hw->reset.stats.request_cnt++;
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hns3_schedule_reset(HNS3_DEV_HW_TO_ADAPTER(hw));
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break;
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default:
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hns3_err(hw, "Fetched unsupported(%u) message from arq",
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opcode);
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break;
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}
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hns3_mbx_head_ptr_move_arq(hw->arq);
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msg_q = hw->arq.msg_q[hw->arq.head];
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}
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}
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/*
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* Case1: receive response after timeout, req_msg_data
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* is 0, not equal resp_msg, do lost--
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* Case2: receive last response during new send_mbx_msg,
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* req_msg_data is different with resp_msg, let
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* lost--, continue to wait for response.
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*/
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static void
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hns3_update_resp_position(struct hns3_hw *hw, uint32_t resp_msg)
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{
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struct hns3_mbx_resp_status *resp = &hw->mbx_resp;
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uint32_t tail = resp->tail + 1;
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if (tail > resp->head)
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tail = resp->head;
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if (resp->req_msg_data != resp_msg) {
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if (resp->lost)
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resp->lost--;
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hns3_warn(hw, "Received a mismatched response req_msg(%x) "
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"resp_msg(%x) head(%u) tail(%u) lost(%u)",
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resp->req_msg_data, resp_msg, resp->head, tail,
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resp->lost);
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} else if (tail + resp->lost > resp->head) {
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resp->lost--;
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hns3_warn(hw, "Received a new response again resp_msg(%x) "
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"head(%u) tail(%u) lost(%u)", resp_msg,
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resp->head, tail, resp->lost);
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}
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rte_io_wmb();
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resp->tail = tail;
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}
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static void
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hns3_link_fail_parse(struct hns3_hw *hw, uint8_t link_fail_code)
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{
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switch (link_fail_code) {
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case HNS3_MBX_LF_NORMAL:
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break;
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case HNS3_MBX_LF_REF_CLOCK_LOST:
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hns3_warn(hw, "Reference clock lost!");
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break;
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case HNS3_MBX_LF_XSFP_TX_DISABLE:
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hns3_warn(hw, "SFP tx is disabled!");
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break;
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case HNS3_MBX_LF_XSFP_ABSENT:
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hns3_warn(hw, "SFP is absent!");
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break;
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default:
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hns3_warn(hw, "Unknown fail code:%u!", link_fail_code);
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break;
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}
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}
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static void
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hns3_handle_link_change_event(struct hns3_hw *hw,
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struct hns3_mbx_pf_to_vf_cmd *req)
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{
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#define LINK_STATUS_OFFSET 1
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#define LINK_FAIL_CODE_OFFSET 2
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if (!req->msg[LINK_STATUS_OFFSET])
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hns3_link_fail_parse(hw, req->msg[LINK_FAIL_CODE_OFFSET]);
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hns3_update_link_status(hw);
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}
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static void
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hns3_update_port_base_vlan_info(struct hns3_hw *hw,
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struct hns3_mbx_pf_to_vf_cmd *req)
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{
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#define PVID_STATE_OFFSET 1
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uint16_t new_pvid_state = req->msg[PVID_STATE_OFFSET] ?
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HNS3_PORT_BASE_VLAN_ENABLE : HNS3_PORT_BASE_VLAN_DISABLE;
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/*
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* Currently, hardware doesn't support more than two layers VLAN offload
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* based on hns3 network engine, which would cause packets loss or wrong
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* packets for these types of packets. If the hns3 PF kernel ethdev
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* driver sets the PVID for VF device after initialization of the
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* related VF device, the PF driver will notify VF driver to update the
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* PVID configuration state. The VF driver will update the PVID
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* configuration state immediately to ensure that the VLAN process in Tx
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* and Rx is correct. But in the window period of this state transition,
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* packets loss or packets with wrong VLAN may occur.
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*/
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if (hw->port_base_vlan_cfg.state != new_pvid_state) {
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hw->port_base_vlan_cfg.state = new_pvid_state;
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hns3_update_all_queues_pvid_proc_en(hw);
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}
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}
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static void
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hns3_handle_promisc_info(struct hns3_hw *hw, uint16_t promisc_en)
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{
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if (!promisc_en) {
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/*
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* When promisc/allmulti mode is closed by the hns3 PF kernel
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* ethdev driver for untrusted, modify VF's related status.
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*/
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hns3_warn(hw, "Promisc mode will be closed by host for being "
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"untrusted.");
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hw->data->promiscuous = 0;
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hw->data->all_multicast = 0;
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}
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}
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void
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hns3_dev_handle_mbx_msg(struct hns3_hw *hw)
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{
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struct hns3_mbx_resp_status *resp = &hw->mbx_resp;
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struct hns3_cmq_ring *crq = &hw->cmq.crq;
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struct hns3_mbx_pf_to_vf_cmd *req;
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struct hns3_cmd_desc *desc;
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uint32_t msg_data;
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uint16_t *msg_q;
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uint8_t opcode;
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uint16_t flag;
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uint8_t *temp;
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int i;
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while (!hns3_cmd_crq_empty(hw)) {
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if (rte_atomic16_read(&hw->reset.disable_cmd))
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return;
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desc = &crq->desc[crq->next_to_use];
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req = (struct hns3_mbx_pf_to_vf_cmd *)desc->data;
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opcode = req->msg[0] & 0xff;
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flag = rte_le_to_cpu_16(crq->desc[crq->next_to_use].flag);
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if (unlikely(!hns3_get_bit(flag, HNS3_CMDQ_RX_OUTVLD_B))) {
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hns3_warn(hw,
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"dropped invalid mailbox message, code = %u",
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opcode);
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/* dropping/not processing this invalid message */
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crq->desc[crq->next_to_use].flag = 0;
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hns3_mbx_ring_ptr_move_crq(crq);
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continue;
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}
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switch (opcode) {
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case HNS3_MBX_PF_VF_RESP:
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resp->resp_status = hns3_resp_to_errno(req->msg[3]);
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temp = (uint8_t *)&req->msg[4];
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for (i = 0; i < HNS3_MBX_MAX_RESP_DATA_SIZE; i++) {
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resp->additional_info[i] = *temp;
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temp++;
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}
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msg_data = (uint32_t)req->msg[1] << 16 | req->msg[2];
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hns3_update_resp_position(hw, msg_data);
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break;
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case HNS3_MBX_LINK_STAT_CHANGE:
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case HNS3_MBX_ASSERTING_RESET:
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msg_q = hw->arq.msg_q[hw->arq.tail];
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memcpy(&msg_q[0], req->msg,
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HNS3_MBX_MAX_ARQ_MSG_SIZE * sizeof(uint16_t));
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hns3_mbx_tail_ptr_move_arq(hw->arq);
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hns3_mbx_handler(hw);
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break;
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case HNS3_MBX_PUSH_LINK_STATUS:
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hns3_handle_link_change_event(hw, req);
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break;
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case HNS3_MBX_PUSH_VLAN_INFO:
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/*
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* When the PVID configuration status of VF device is
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* changed by the hns3 PF kernel driver, VF driver will
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* receive this mailbox message from PF driver.
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*/
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hns3_update_port_base_vlan_info(hw, req);
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break;
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case HNS3_MBX_PUSH_PROMISC_INFO:
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/*
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* When the trust status of VF device changed by the
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* hns3 PF kernel driver, VF driver will receive this
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* mailbox message from PF driver.
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*/
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hns3_handle_promisc_info(hw, req->msg[1]);
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break;
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default:
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hns3_err(hw,
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"VF received unsupported(%u) mbx msg from PF",
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req->msg[0]);
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break;
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}
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crq->desc[crq->next_to_use].flag = 0;
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hns3_mbx_ring_ptr_move_crq(crq);
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}
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/* Write back CMDQ_RQ header pointer, IMP need this pointer */
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hns3_write_dev(hw, HNS3_CMDQ_RX_HEAD_REG, crq->next_to_use);
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}
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