hclge_mbx.c 22.7 KB
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// SPDX-License-Identifier: GPL-2.0+
// Copyright (c) 2016-2017 Hisilicon Limited.

#include "hclge_main.h"
#include "hclge_mbx.h"
#include "hnae3.h"

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#define CREATE_TRACE_POINTS
#include "hclge_trace.h"

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static u16 hclge_errno_to_resp(int errno)
{
	return abs(errno);
}

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/* hclge_gen_resp_to_vf: used to generate a synchronous response to VF when PF
 * receives a mailbox message from VF.
 * @vport: pointer to struct hclge_vport
 * @vf_to_pf_req: pointer to hclge_mbx_vf_to_pf_cmd of the original mailbox
 *		  message
 * @resp_status: indicate to VF whether its request success(0) or failed.
 */
static int hclge_gen_resp_to_vf(struct hclge_vport *vport,
				struct hclge_mbx_vf_to_pf_cmd *vf_to_pf_req,
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				struct hclge_respond_to_vf_msg *resp_msg)
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{
	struct hclge_mbx_pf_to_vf_cmd *resp_pf_to_vf;
	struct hclge_dev *hdev = vport->back;
	enum hclge_cmd_status status;
	struct hclge_desc desc;
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	u16 resp;
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	resp_pf_to_vf = (struct hclge_mbx_pf_to_vf_cmd *)desc.data;

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	if (resp_msg->len > HCLGE_MBX_MAX_RESP_DATA_SIZE) {
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		dev_err(&hdev->pdev->dev,
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			"PF fail to gen resp to VF len %u exceeds max len %u\n",
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			resp_msg->len,
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			HCLGE_MBX_MAX_RESP_DATA_SIZE);
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		/* If resp_msg->len is too long, set the value to max length
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		 * and return the msg to VF
		 */
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		resp_msg->len = HCLGE_MBX_MAX_RESP_DATA_SIZE;
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	}

	hclge_cmd_setup_basic_desc(&desc, HCLGEVF_OPC_MBX_PF_TO_VF, false);

	resp_pf_to_vf->dest_vfid = vf_to_pf_req->mbx_src_vfid;
	resp_pf_to_vf->msg_len = vf_to_pf_req->msg_len;

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	resp_pf_to_vf->msg.code = HCLGE_MBX_PF_VF_RESP;
	resp_pf_to_vf->msg.vf_mbx_msg_code = vf_to_pf_req->msg.code;
	resp_pf_to_vf->msg.vf_mbx_msg_subcode = vf_to_pf_req->msg.subcode;
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	resp = hclge_errno_to_resp(resp_msg->status);
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	if (resp < SHRT_MAX) {
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		resp_pf_to_vf->msg.resp_status = resp;
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	} else {
		dev_warn(&hdev->pdev->dev,
			 "failed to send response to VF, response status %d is out-of-bound\n",
			 resp);
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		resp_pf_to_vf->msg.resp_status = EIO;
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	}
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	if (resp_msg->len > 0)
		memcpy(resp_pf_to_vf->msg.resp_data, resp_msg->data,
		       resp_msg->len);
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	status = hclge_cmd_send(&hdev->hw, &desc, 1);
	if (status)
		dev_err(&hdev->pdev->dev,
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			"failed to send response to VF, status: %d, vfid: %u, code: %u, subcode: %u.\n",
			status, vf_to_pf_req->mbx_src_vfid,
			vf_to_pf_req->msg.code, vf_to_pf_req->msg.subcode);
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	return status;
}

static int hclge_send_mbx_msg(struct hclge_vport *vport, u8 *msg, u16 msg_len,
			      u16 mbx_opcode, u8 dest_vfid)
{
	struct hclge_mbx_pf_to_vf_cmd *resp_pf_to_vf;
	struct hclge_dev *hdev = vport->back;
	enum hclge_cmd_status status;
	struct hclge_desc desc;

	resp_pf_to_vf = (struct hclge_mbx_pf_to_vf_cmd *)desc.data;

	hclge_cmd_setup_basic_desc(&desc, HCLGEVF_OPC_MBX_PF_TO_VF, false);

	resp_pf_to_vf->dest_vfid = dest_vfid;
	resp_pf_to_vf->msg_len = msg_len;
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	resp_pf_to_vf->msg.code = mbx_opcode;
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	memcpy(&resp_pf_to_vf->msg.vf_mbx_msg_code, msg, msg_len);
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	trace_hclge_pf_mbx_send(hdev, resp_pf_to_vf);

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	status = hclge_cmd_send(&hdev->hw, &desc, 1);
	if (status)
		dev_err(&hdev->pdev->dev,
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			"failed to send mailbox to VF, status: %d, vfid: %u, opcode: %u\n",
			status, dest_vfid, mbx_opcode);
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	return status;
}

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int hclge_inform_reset_assert_to_vf(struct hclge_vport *vport)
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{
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	struct hclge_dev *hdev = vport->back;
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	u16 reset_type;
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	u8 msg_data[2];
	u8 dest_vfid;

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	BUILD_BUG_ON(HNAE3_MAX_RESET > U16_MAX);

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	dest_vfid = (u8)vport->vport_id;

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	if (hdev->reset_type == HNAE3_FUNC_RESET)
		reset_type = HNAE3_VF_PF_FUNC_RESET;
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	else if (hdev->reset_type == HNAE3_FLR_RESET)
		reset_type = HNAE3_VF_FULL_RESET;
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	else
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		reset_type = HNAE3_VF_FUNC_RESET;
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	memcpy(&msg_data[0], &reset_type, sizeof(u16));

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	/* send this requested info to VF */
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	return hclge_send_mbx_msg(vport, msg_data, sizeof(msg_data),
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				  HCLGE_MBX_ASSERTING_RESET, dest_vfid);
}

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static void hclge_free_vector_ring_chain(struct hnae3_ring_chain_node *head)
{
	struct hnae3_ring_chain_node *chain_tmp, *chain;

	chain = head->next;

	while (chain) {
		chain_tmp = chain->next;
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		kfree_sensitive(chain);
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		chain = chain_tmp;
	}
}

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/* hclge_get_ring_chain_from_mbx: get ring type & tqp id & int_gl idx
 * from mailbox message
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 * msg[0]: opcode
 * msg[1]: <not relevant to this function>
 * msg[2]: ring_num
 * msg[3]: first ring type (TX|RX)
 * msg[4]: first tqp id
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 * msg[5]: first int_gl idx
 * msg[6] ~ msg[14]: other ring type, tqp id and int_gl idx
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 */
static int hclge_get_ring_chain_from_mbx(
			struct hclge_mbx_vf_to_pf_cmd *req,
			struct hnae3_ring_chain_node *ring_chain,
			struct hclge_vport *vport)
{
	struct hnae3_ring_chain_node *cur_chain, *new_chain;
	int ring_num;
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	int i = 0;
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	ring_num = req->msg.ring_num;
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	if (ring_num > HCLGE_MBX_MAX_RING_CHAIN_PARAM_NUM)
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		return -ENOMEM;

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	hnae3_set_bit(ring_chain->flag, HNAE3_RING_TYPE_B,
		      req->msg.param[i].ring_type);
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	ring_chain->tqp_index =
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		hclge_get_queue_id(vport->nic.kinfo.tqp
				   [req->msg.param[i].tqp_index]);
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	hnae3_set_field(ring_chain->int_gl_idx, HNAE3_RING_GL_IDX_M,
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			HNAE3_RING_GL_IDX_S, req->msg.param[i].int_gl_index);
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	cur_chain = ring_chain;

	for (i = 1; i < ring_num; i++) {
		new_chain = kzalloc(sizeof(*new_chain), GFP_KERNEL);
		if (!new_chain)
			goto err;

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Peng Li 已提交
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		hnae3_set_bit(new_chain->flag, HNAE3_RING_TYPE_B,
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			      req->msg.param[i].ring_type);
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		new_chain->tqp_index =
		hclge_get_queue_id(vport->nic.kinfo.tqp
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			[req->msg.param[i].tqp_index]);
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		hnae3_set_field(new_chain->int_gl_idx, HNAE3_RING_GL_IDX_M,
				HNAE3_RING_GL_IDX_S,
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				req->msg.param[i].int_gl_index);
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		cur_chain->next = new_chain;
		cur_chain = new_chain;
	}

	return 0;
err:
	hclge_free_vector_ring_chain(ring_chain);
	return -ENOMEM;
}

static int hclge_map_unmap_ring_to_vf_vector(struct hclge_vport *vport, bool en,
					     struct hclge_mbx_vf_to_pf_cmd *req)
{
	struct hnae3_ring_chain_node ring_chain;
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	int vector_id = req->msg.vector_id;
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	int ret;

	memset(&ring_chain, 0, sizeof(ring_chain));
	ret = hclge_get_ring_chain_from_mbx(req, &ring_chain, vport);
	if (ret)
		return ret;

	ret = hclge_bind_ring_with_vector(vport, vector_id, en, &ring_chain);

	hclge_free_vector_ring_chain(&ring_chain);

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	return ret;
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}

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static int hclge_set_vf_promisc_mode(struct hclge_vport *vport,
				     struct hclge_mbx_vf_to_pf_cmd *req)
{
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	bool en_bc = req->msg.en_bc ? true : false;
	bool en_uc = req->msg.en_uc ? true : false;
	bool en_mc = req->msg.en_mc ? true : false;
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	struct hnae3_handle *handle = &vport->nic;
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	int ret;

	if (!vport->vf_info.trusted) {
		en_uc = false;
		en_mc = false;
	}

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	if (req->msg.en_limit_promisc)
		set_bit(HNAE3_PFLAG_LIMIT_PROMISC, &handle->priv_flags);
	else
		clear_bit(HNAE3_PFLAG_LIMIT_PROMISC,
			  &handle->priv_flags);

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	ret = hclge_set_vport_promisc_mode(vport, en_uc, en_mc, en_bc);

	vport->vf_info.promisc_enable = (en_uc || en_mc) ? 1 : 0;

	return ret;
}

void hclge_inform_vf_promisc_info(struct hclge_vport *vport)
{
	u8 dest_vfid = (u8)vport->vport_id;
	u8 msg_data[2];

	memcpy(&msg_data[0], &vport->vf_info.promisc_enable, sizeof(u16));

	hclge_send_mbx_msg(vport, msg_data, sizeof(msg_data),
			   HCLGE_MBX_PUSH_PROMISC_INFO, dest_vfid);
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}

static int hclge_set_vf_uc_mac_addr(struct hclge_vport *vport,
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				    struct hclge_mbx_vf_to_pf_cmd *mbx_req)
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{
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#define HCLGE_MBX_VF_OLD_MAC_ADDR_OFFSET	6

	const u8 *mac_addr = (const u8 *)(mbx_req->msg.data);
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	struct hclge_dev *hdev = vport->back;
	int status;

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	if (mbx_req->msg.subcode == HCLGE_MBX_MAC_VLAN_UC_MODIFY) {
		const u8 *old_addr = (const u8 *)
		(&mbx_req->msg.data[HCLGE_MBX_VF_OLD_MAC_ADDR_OFFSET]);
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		/* If VF MAC has been configured by the host then it
		 * cannot be overridden by the MAC specified by the VM.
		 */
		if (!is_zero_ether_addr(vport->vf_info.mac) &&
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		    !ether_addr_equal(mac_addr, vport->vf_info.mac))
			return -EPERM;
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		if (!is_valid_ether_addr(mac_addr))
			return -EINVAL;
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		spin_lock_bh(&vport->mac_list_lock);
		status = hclge_update_mac_node_for_dev_addr(vport, old_addr,
							    mac_addr);
		spin_unlock_bh(&vport->mac_list_lock);
		hclge_task_schedule(hdev, 0);
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	} else if (mbx_req->msg.subcode == HCLGE_MBX_MAC_VLAN_UC_ADD) {
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		status = hclge_update_mac_list(vport, HCLGE_MAC_TO_ADD,
					       HCLGE_MAC_ADDR_UC, mac_addr);
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	} else if (mbx_req->msg.subcode == HCLGE_MBX_MAC_VLAN_UC_REMOVE) {
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		status = hclge_update_mac_list(vport, HCLGE_MAC_TO_DEL,
					       HCLGE_MAC_ADDR_UC, mac_addr);
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	} else {
		dev_err(&hdev->pdev->dev,
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			"failed to set unicast mac addr, unknown subcode %u\n",
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			mbx_req->msg.subcode);
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		return -EIO;
	}

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	return status;
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}

static int hclge_set_vf_mc_mac_addr(struct hclge_vport *vport,
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				    struct hclge_mbx_vf_to_pf_cmd *mbx_req)
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{
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	const u8 *mac_addr = (const u8 *)(mbx_req->msg.data);
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	struct hclge_dev *hdev = vport->back;

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	if (mbx_req->msg.subcode == HCLGE_MBX_MAC_VLAN_MC_ADD) {
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		hclge_update_mac_list(vport, HCLGE_MAC_TO_ADD,
				      HCLGE_MAC_ADDR_MC, mac_addr);
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	} else if (mbx_req->msg.subcode == HCLGE_MBX_MAC_VLAN_MC_REMOVE) {
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		hclge_update_mac_list(vport, HCLGE_MAC_TO_DEL,
				      HCLGE_MAC_ADDR_MC, mac_addr);
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	} else {
		dev_err(&hdev->pdev->dev,
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			"failed to set mcast mac addr, unknown subcode %u\n",
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			mbx_req->msg.subcode);
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		return -EIO;
	}

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	return 0;
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}

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int hclge_push_vf_port_base_vlan_info(struct hclge_vport *vport, u8 vfid,
				      u16 state, u16 vlan_tag, u16 qos,
				      u16 vlan_proto)
{
#define MSG_DATA_SIZE	8

	u8 msg_data[MSG_DATA_SIZE];

	memcpy(&msg_data[0], &state, sizeof(u16));
	memcpy(&msg_data[2], &vlan_proto, sizeof(u16));
	memcpy(&msg_data[4], &qos, sizeof(u16));
	memcpy(&msg_data[6], &vlan_tag, sizeof(u16));

	return hclge_send_mbx_msg(vport, msg_data, sizeof(msg_data),
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				  HCLGE_MBX_PUSH_VLAN_INFO, vfid);
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}

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static int hclge_set_vf_vlan_cfg(struct hclge_vport *vport,
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				 struct hclge_mbx_vf_to_pf_cmd *mbx_req,
				 struct hclge_respond_to_vf_msg *resp_msg)
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{
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#define HCLGE_MBX_VLAN_STATE_OFFSET	0
#define HCLGE_MBX_VLAN_INFO_OFFSET	2

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	struct hclge_vf_vlan_cfg *msg_cmd;
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	int status = 0;

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	msg_cmd = (struct hclge_vf_vlan_cfg *)&mbx_req->msg;
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	if (msg_cmd->subcode == HCLGE_MBX_VLAN_FILTER) {
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		struct hnae3_handle *handle = &vport->nic;
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		u16 vlan, proto;
		bool is_kill;

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		is_kill = !!msg_cmd->is_kill;
		vlan =  msg_cmd->vlan;
		proto =  msg_cmd->proto;
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		status = hclge_set_vlan_filter(handle, cpu_to_be16(proto),
					       vlan, is_kill);
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	} else if (msg_cmd->subcode == HCLGE_MBX_VLAN_RX_OFF_CFG) {
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		struct hnae3_handle *handle = &vport->nic;
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		bool en = msg_cmd->is_kill ? true : false;
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		status = hclge_en_hw_strip_rxvtag(handle, en);
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	} else if (msg_cmd->subcode == HCLGE_MBX_PORT_BASE_VLAN_CFG) {
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		struct hclge_vlan_info *vlan_info;
		u16 *state;

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		state = (u16 *)&mbx_req->msg.data[HCLGE_MBX_VLAN_STATE_OFFSET];
		vlan_info = (struct hclge_vlan_info *)
			&mbx_req->msg.data[HCLGE_MBX_VLAN_INFO_OFFSET];
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		status = hclge_update_port_base_vlan_cfg(vport, *state,
							 vlan_info);
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	} else if (msg_cmd->subcode == HCLGE_MBX_GET_PORT_BASE_VLAN_STATE) {
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		resp_msg->data[0] = vport->port_base_vlan_cfg.state;
		resp_msg->len = sizeof(u8);
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	}

	return status;
}

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static int hclge_set_vf_alive(struct hclge_vport *vport,
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			      struct hclge_mbx_vf_to_pf_cmd *mbx_req)
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{
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	bool alive = !!mbx_req->msg.data[0];
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	int ret = 0;

	if (alive)
		ret = hclge_vport_start(vport);
	else
		hclge_vport_stop(vport);

	return ret;
}

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static void hclge_get_vf_tcinfo(struct hclge_vport *vport,
				struct hclge_respond_to_vf_msg *resp_msg)
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{
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	struct hnae3_knic_private_info *kinfo = &vport->nic.kinfo;
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	unsigned int i;
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	for (i = 0; i < kinfo->num_tc; i++)
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		resp_msg->data[0] |= BIT(i);
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	resp_msg->len = sizeof(u8);
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}

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static void hclge_get_vf_queue_info(struct hclge_vport *vport,
				    struct hclge_respond_to_vf_msg *resp_msg)
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{
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#define HCLGE_TQPS_RSS_INFO_LEN		6
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#define HCLGE_TQPS_ALLOC_OFFSET		0
#define HCLGE_TQPS_RSS_SIZE_OFFSET	2
#define HCLGE_TQPS_RX_BUFFER_LEN_OFFSET	4

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	struct hclge_dev *hdev = vport->back;

	/* get the queue related info */
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	memcpy(&resp_msg->data[HCLGE_TQPS_ALLOC_OFFSET],
	       &vport->alloc_tqps, sizeof(u16));
	memcpy(&resp_msg->data[HCLGE_TQPS_RSS_SIZE_OFFSET],
	       &vport->nic.kinfo.rss_size, sizeof(u16));
	memcpy(&resp_msg->data[HCLGE_TQPS_RX_BUFFER_LEN_OFFSET],
	       &hdev->rx_buf_len, sizeof(u16));
	resp_msg->len = HCLGE_TQPS_RSS_INFO_LEN;
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}

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static void hclge_get_vf_mac_addr(struct hclge_vport *vport,
				  struct hclge_respond_to_vf_msg *resp_msg)
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{
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	ether_addr_copy(resp_msg->data, vport->vf_info.mac);
	resp_msg->len = ETH_ALEN;
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}

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static void hclge_get_vf_queue_depth(struct hclge_vport *vport,
				     struct hclge_respond_to_vf_msg *resp_msg)
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{
#define HCLGE_TQPS_DEPTH_INFO_LEN	4
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#define HCLGE_TQPS_NUM_TX_DESC_OFFSET	0
#define HCLGE_TQPS_NUM_RX_DESC_OFFSET	2

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	struct hclge_dev *hdev = vport->back;

	/* get the queue depth info */
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	memcpy(&resp_msg->data[HCLGE_TQPS_NUM_TX_DESC_OFFSET],
	       &hdev->num_tx_desc, sizeof(u16));
	memcpy(&resp_msg->data[HCLGE_TQPS_NUM_RX_DESC_OFFSET],
	       &hdev->num_rx_desc, sizeof(u16));
	resp_msg->len = HCLGE_TQPS_DEPTH_INFO_LEN;
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}

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static void hclge_get_vf_media_type(struct hclge_vport *vport,
				    struct hclge_respond_to_vf_msg *resp_msg)
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{
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#define HCLGE_VF_MEDIA_TYPE_OFFSET	0
#define HCLGE_VF_MODULE_TYPE_OFFSET	1
#define HCLGE_VF_MEDIA_TYPE_LENGTH	2

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	struct hclge_dev *hdev = vport->back;

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	resp_msg->data[HCLGE_VF_MEDIA_TYPE_OFFSET] =
		hdev->hw.mac.media_type;
	resp_msg->data[HCLGE_VF_MODULE_TYPE_OFFSET] =
		hdev->hw.mac.module_type;
	resp_msg->len = HCLGE_VF_MEDIA_TYPE_LENGTH;
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}

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static int hclge_get_link_info(struct hclge_vport *vport,
			       struct hclge_mbx_vf_to_pf_cmd *mbx_req)
{
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#define HCLGE_VF_LINK_STATE_UP		1U
#define HCLGE_VF_LINK_STATE_DOWN	0U

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	struct hclge_dev *hdev = vport->back;
	u16 link_status;
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	u8 msg_data[8];
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	u8 dest_vfid;
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	u16 duplex;
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	/* mac.link can only be 0 or 1 */
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	switch (vport->vf_info.link_state) {
	case IFLA_VF_LINK_STATE_ENABLE:
		link_status = HCLGE_VF_LINK_STATE_UP;
		break;
	case IFLA_VF_LINK_STATE_DISABLE:
		link_status = HCLGE_VF_LINK_STATE_DOWN;
		break;
	case IFLA_VF_LINK_STATE_AUTO:
	default:
		link_status = (u16)hdev->hw.mac.link;
		break;
	}

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	duplex = hdev->hw.mac.duplex;
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	memcpy(&msg_data[0], &link_status, sizeof(u16));
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	memcpy(&msg_data[2], &hdev->hw.mac.speed, sizeof(u32));
	memcpy(&msg_data[6], &duplex, sizeof(u16));
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	dest_vfid = mbx_req->mbx_src_vfid;

	/* send this requested info to VF */
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	return hclge_send_mbx_msg(vport, msg_data, sizeof(msg_data),
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				  HCLGE_MBX_LINK_STAT_CHANGE, dest_vfid);
}

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static void hclge_get_link_mode(struct hclge_vport *vport,
				struct hclge_mbx_vf_to_pf_cmd *mbx_req)
{
#define HCLGE_SUPPORTED   1
	struct hclge_dev *hdev = vport->back;
	unsigned long advertising;
	unsigned long supported;
	unsigned long send_data;
	u8 msg_data[10];
	u8 dest_vfid;

	advertising = hdev->hw.mac.advertising[0];
	supported = hdev->hw.mac.supported[0];
	dest_vfid = mbx_req->mbx_src_vfid;
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	msg_data[0] = mbx_req->msg.data[0];
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	send_data = msg_data[0] == HCLGE_SUPPORTED ? supported : advertising;

	memcpy(&msg_data[2], &send_data, sizeof(unsigned long));
	hclge_send_mbx_msg(vport, msg_data, sizeof(msg_data),
			   HCLGE_MBX_LINK_STAT_MODE, dest_vfid);
}

534 535
static void hclge_mbx_reset_vf_queue(struct hclge_vport *vport,
				     struct hclge_mbx_vf_to_pf_cmd *mbx_req)
536 537 538
{
	u16 queue_id;

539
	memcpy(&queue_id, mbx_req->msg.data, sizeof(queue_id));
540

541
	hclge_reset_vf_queue(vport, queue_id);
542 543
}

544
static int hclge_reset_vf(struct hclge_vport *vport)
545 546 547
{
	struct hclge_dev *hdev = vport->back;

548
	dev_warn(&hdev->pdev->dev, "PF received VF reset request from VF %u!",
549
		 vport->vport_id);
550

551
	return hclge_func_reset_cmd(hdev, vport->vport_id);
552 553
}

554
static void hclge_vf_keep_alive(struct hclge_vport *vport)
555 556 557 558
{
	vport->last_active_jiffies = jiffies;
}

559 560 561 562 563
static int hclge_set_vf_mtu(struct hclge_vport *vport,
			    struct hclge_mbx_vf_to_pf_cmd *mbx_req)
{
	u32 mtu;

564
	memcpy(&mtu, mbx_req->msg.data, sizeof(mtu));
565

566
	return hclge_set_vport_mtu(vport, mtu);
567 568
}

569 570 571
static void hclge_get_queue_id_in_pf(struct hclge_vport *vport,
				     struct hclge_mbx_vf_to_pf_cmd *mbx_req,
				     struct hclge_respond_to_vf_msg *resp_msg)
572 573 574
{
	u16 queue_id, qid_in_pf;

575
	memcpy(&queue_id, mbx_req->msg.data, sizeof(queue_id));
576
	qid_in_pf = hclge_covert_handle_qid_global(&vport->nic, queue_id);
577 578
	memcpy(resp_msg->data, &qid_in_pf, sizeof(qid_in_pf));
	resp_msg->len = sizeof(qid_in_pf);
579 580
}

581 582 583
static void hclge_get_rss_key(struct hclge_vport *vport,
			      struct hclge_mbx_vf_to_pf_cmd *mbx_req,
			      struct hclge_respond_to_vf_msg *resp_msg)
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{
#define HCLGE_RSS_MBX_RESP_LEN	8
	struct hclge_dev *hdev = vport->back;
	u8 index;

589
	index = mbx_req->msg.data[0];
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590

591
	memcpy(resp_msg->data,
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	       &hdev->vport[0].rss_hash_key[index * HCLGE_RSS_MBX_RESP_LEN],
	       HCLGE_RSS_MBX_RESP_LEN);
594
	resp_msg->len = HCLGE_RSS_MBX_RESP_LEN;
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}

597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618
static void hclge_link_fail_parse(struct hclge_dev *hdev, u8 link_fail_code)
{
	switch (link_fail_code) {
	case HCLGE_LF_REF_CLOCK_LOST:
		dev_warn(&hdev->pdev->dev, "Reference clock lost!\n");
		break;
	case HCLGE_LF_XSFP_TX_DISABLE:
		dev_warn(&hdev->pdev->dev, "SFP tx is disabled!\n");
		break;
	case HCLGE_LF_XSFP_ABSENT:
		dev_warn(&hdev->pdev->dev, "SFP is absent!\n");
		break;
	default:
		break;
	}
}

static void hclge_handle_link_change_event(struct hclge_dev *hdev,
					   struct hclge_mbx_vf_to_pf_cmd *req)
{
	hclge_task_schedule(hdev, 0);

619 620
	if (!req->msg.subcode)
		hclge_link_fail_parse(hdev, req->msg.data[0]);
621 622
}

623 624 625 626 627 628 629
static bool hclge_cmd_crq_empty(struct hclge_hw *hw)
{
	u32 tail = hclge_read_dev(hw, HCLGE_NIC_CRQ_TAIL_REG);

	return tail == hw->cmq.crq.next_to_use;
}

630 631 632 633 634 635 636 637 638
static void hclge_handle_ncsi_error(struct hclge_dev *hdev)
{
	struct hnae3_ae_dev *ae_dev = hdev->ae_dev;

	ae_dev->ops->set_default_reset_request(ae_dev, HNAE3_GLOBAL_RESET);
	dev_warn(&hdev->pdev->dev, "requesting reset due to NCSI error\n");
	ae_dev->ops->reset_event(hdev->pdev, NULL);
}

639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655
static void hclge_handle_vf_tbl(struct hclge_vport *vport,
				struct hclge_mbx_vf_to_pf_cmd *mbx_req)
{
	struct hclge_dev *hdev = vport->back;
	struct hclge_vf_vlan_cfg *msg_cmd;

	msg_cmd = (struct hclge_vf_vlan_cfg *)&mbx_req->msg;
	if (msg_cmd->subcode == HCLGE_MBX_VPORT_LIST_CLEAR) {
		hclge_rm_vport_all_mac_table(vport, true, HCLGE_MAC_ADDR_UC);
		hclge_rm_vport_all_mac_table(vport, true, HCLGE_MAC_ADDR_MC);
		hclge_rm_vport_all_vlan_table(vport, true);
	} else {
		dev_warn(&hdev->pdev->dev, "Invalid cmd(%u)\n",
			 msg_cmd->subcode);
	}
}

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void hclge_mbx_handler(struct hclge_dev *hdev)
{
	struct hclge_cmq_ring *crq = &hdev->hw.cmq.crq;
659
	struct hclge_respond_to_vf_msg resp_msg;
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	struct hclge_mbx_vf_to_pf_cmd *req;
	struct hclge_vport *vport;
	struct hclge_desc *desc;
663
	bool is_del = false;
664
	unsigned int flag;
665
	int ret = 0;
666

667
	memset(&resp_msg, 0, sizeof(resp_msg));
668
	/* handle all the mailbox requests in the queue */
669
	while (!hclge_cmd_crq_empty(&hdev->hw)) {
670 671 672 673 674 675
		if (test_bit(HCLGE_STATE_CMD_DISABLE, &hdev->state)) {
			dev_warn(&hdev->pdev->dev,
				 "command queue needs re-initializing\n");
			return;
		}

676 677 678
		desc = &crq->desc[crq->next_to_use];
		req = (struct hclge_mbx_vf_to_pf_cmd *)desc->data;

679
		flag = le16_to_cpu(crq->desc[crq->next_to_use].flag);
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		if (unlikely(!hnae3_get_bit(flag, HCLGE_CMDQ_RX_OUTVLD_B))) {
681
			dev_warn(&hdev->pdev->dev,
682
				 "dropped invalid mailbox message, code = %u\n",
683
				 req->msg.code);
684 685 686 687 688 689 690

			/* dropping/not processing this invalid message */
			crq->desc[crq->next_to_use].flag = 0;
			hclge_mbx_ring_ptr_move_crq(crq);
			continue;
		}

691 692
		vport = &hdev->vport[req->mbx_src_vfid];

693 694
		trace_hclge_pf_mbx_get(hdev, req);

695
		switch (req->msg.code) {
696 697 698 699 700 701 702 703
		case HCLGE_MBX_MAP_RING_TO_VECTOR:
			ret = hclge_map_unmap_ring_to_vf_vector(vport, true,
								req);
			break;
		case HCLGE_MBX_UNMAP_RING_TO_VECTOR:
			ret = hclge_map_unmap_ring_to_vf_vector(vport, false,
								req);
			break;
704 705 706 707 708 709 710 711
		case HCLGE_MBX_SET_PROMISC_MODE:
			ret = hclge_set_vf_promisc_mode(vport, req);
			if (ret)
				dev_err(&hdev->pdev->dev,
					"PF fail(%d) to set VF promisc mode\n",
					ret);
			break;
		case HCLGE_MBX_SET_UNICAST:
712
			ret = hclge_set_vf_uc_mac_addr(vport, req);
713 714 715 716 717 718
			if (ret)
				dev_err(&hdev->pdev->dev,
					"PF fail(%d) to set VF UC MAC Addr\n",
					ret);
			break;
		case HCLGE_MBX_SET_MULTICAST:
719
			ret = hclge_set_vf_mc_mac_addr(vport, req);
720 721 722 723 724 725
			if (ret)
				dev_err(&hdev->pdev->dev,
					"PF fail(%d) to set VF MC MAC Addr\n",
					ret);
			break;
		case HCLGE_MBX_SET_VLAN:
726
			ret = hclge_set_vf_vlan_cfg(vport, req, &resp_msg);
727 728 729 730 731
			if (ret)
				dev_err(&hdev->pdev->dev,
					"PF failed(%d) to config VF's VLAN\n",
					ret);
			break;
732
		case HCLGE_MBX_SET_ALIVE:
733
			ret = hclge_set_vf_alive(vport, req);
734 735 736 737 738
			if (ret)
				dev_err(&hdev->pdev->dev,
					"PF failed(%d) to set VF's ALIVE\n",
					ret);
			break;
739
		case HCLGE_MBX_GET_QINFO:
740
			hclge_get_vf_queue_info(vport, &resp_msg);
741
			break;
742
		case HCLGE_MBX_GET_QDEPTH:
743
			hclge_get_vf_queue_depth(vport, &resp_msg);
744
			break;
745
		case HCLGE_MBX_GET_TCINFO:
746
			hclge_get_vf_tcinfo(vport, &resp_msg);
747 748 749 750 751
			break;
		case HCLGE_MBX_GET_LINK_STATUS:
			ret = hclge_get_link_info(vport, req);
			if (ret)
				dev_err(&hdev->pdev->dev,
752
					"failed to inform link stat to VF, ret = %d\n",
753 754
					ret);
			break;
755
		case HCLGE_MBX_QUEUE_RESET:
756
			hclge_mbx_reset_vf_queue(vport, req);
757
			break;
758
		case HCLGE_MBX_RESET:
759
			ret = hclge_reset_vf(vport);
760
			break;
761
		case HCLGE_MBX_KEEP_ALIVE:
762
			hclge_vf_keep_alive(vport);
763
			break;
764 765 766 767 768 769
		case HCLGE_MBX_SET_MTU:
			ret = hclge_set_vf_mtu(vport, req);
			if (ret)
				dev_err(&hdev->pdev->dev,
					"VF fail(%d) to set mtu\n", ret);
			break;
770
		case HCLGE_MBX_GET_QID_IN_PF:
771
			hclge_get_queue_id_in_pf(vport, req, &resp_msg);
772
			break;
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		case HCLGE_MBX_GET_RSS_KEY:
774
			hclge_get_rss_key(vport, req, &resp_msg);
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			break;
776 777 778
		case HCLGE_MBX_GET_LINK_MODE:
			hclge_get_link_mode(vport, req);
			break;
779
		case HCLGE_MBX_GET_VF_FLR_STATUS:
780
		case HCLGE_MBX_VF_UNINIT:
781 782
			is_del = req->msg.code == HCLGE_MBX_VF_UNINIT;
			hclge_rm_vport_all_mac_table(vport, is_del,
783
						     HCLGE_MAC_ADDR_UC);
784
			hclge_rm_vport_all_mac_table(vport, is_del,
785
						     HCLGE_MAC_ADDR_MC);
786
			hclge_rm_vport_all_vlan_table(vport, is_del);
787
			break;
788
		case HCLGE_MBX_GET_MEDIA_TYPE:
789
			hclge_get_vf_media_type(vport, &resp_msg);
790
			break;
791 792 793
		case HCLGE_MBX_PUSH_LINK_STATUS:
			hclge_handle_link_change_event(hdev, req);
			break;
794
		case HCLGE_MBX_GET_MAC_ADDR:
795
			hclge_get_vf_mac_addr(vport, &resp_msg);
796
			break;
797 798 799
		case HCLGE_MBX_NCSI_ERROR:
			hclge_handle_ncsi_error(hdev);
			break;
800 801 802
		case HCLGE_MBX_HANDLE_VF_TBL:
			hclge_handle_vf_tbl(vport, req);
			break;
803 804
		default:
			dev_err(&hdev->pdev->dev,
805
				"un-supported mailbox message, code = %u\n",
806
				req->msg.code);
807 808
			break;
		}
809 810 811 812 813 814 815 816

		/* PF driver should not reply IMP */
		if (hnae3_get_bit(req->mbx_need_resp, HCLGE_MBX_NEED_RESP_B) &&
		    req->msg.code < HCLGE_MBX_GET_VF_FLR_STATUS) {
			resp_msg.status = ret;
			hclge_gen_resp_to_vf(vport, req, &resp_msg);
		}

817
		crq->desc[crq->next_to_use].flag = 0;
818
		hclge_mbx_ring_ptr_move_crq(crq);
819 820 821

		/* reinitialize ret after complete the mbx message processing */
		ret = 0;
822 823 824 825 826
	}

	/* Write back CMDQ_RQ header pointer, M7 need this pointer */
	hclge_write_dev(&hdev->hw, HCLGE_NIC_CRQ_HEAD_REG, crq->next_to_use);
}