net/hns3: fix input parameters of MAC functions

When adding multicast and unicast MAC addresses, three descriptors and
one descriptor are required for querying or adding MAC VLAN table,
respectively. This patch uses the number of descriptors as input
parameter to complete this task to make the function more secure.

Fixes: 7d7f9f80bb ("net/hns3: support MAC address related operations")
Cc: stable@dpdk.org

Signed-off-by: Huisong Li <lihuisong@huawei.com>
Signed-off-by: Min Hu (Connor) <humin29@huawei.com>
This commit is contained in:
Huisong Li 2021-09-22 11:41:52 +08:00 committed by Ferruh Yigit
parent 19e67d8ebc
commit 60a6b4a574
2 changed files with 51 additions and 40 deletions

View File

@ -923,7 +923,8 @@ enum hns3_mac_vlan_add_resp_code {
HNS3_ADD_MC_OVERFLOW, /* ADD failed for MC overflow */
};
#define HNS3_MC_MAC_VLAN_ADD_DESC_NUM 3
#define HNS3_MC_MAC_VLAN_OPS_DESC_NUM 3
#define HNS3_UC_MAC_VLAN_OPS_DESC_NUM 1
#define HNS3_MAC_VLAN_BIT0_EN_B 0
#define HNS3_MAC_VLAN_BIT1_EN_B 1

View File

@ -1427,28 +1427,31 @@ hns3_get_mac_vlan_cmd_status(struct hns3_hw *hw, uint16_t cmdq_resp,
static int
hns3_lookup_mac_vlan_tbl(struct hns3_hw *hw,
struct hns3_mac_vlan_tbl_entry_cmd *req,
struct hns3_cmd_desc *desc, bool is_mc)
struct hns3_cmd_desc *desc, uint8_t desc_num)
{
uint8_t resp_code;
uint16_t retval;
int ret;
int i;
hns3_cmd_setup_basic_desc(&desc[0], HNS3_OPC_MAC_VLAN_ADD, true);
if (is_mc) {
desc[0].flag |= rte_cpu_to_le_16(HNS3_CMD_FLAG_NEXT);
memcpy(desc[0].data, req,
sizeof(struct hns3_mac_vlan_tbl_entry_cmd));
hns3_cmd_setup_basic_desc(&desc[1], HNS3_OPC_MAC_VLAN_ADD,
if (desc_num == HNS3_MC_MAC_VLAN_OPS_DESC_NUM) {
for (i = 0; i < desc_num - 1; i++) {
hns3_cmd_setup_basic_desc(&desc[i],
HNS3_OPC_MAC_VLAN_ADD, true);
desc[i].flag |= rte_cpu_to_le_16(HNS3_CMD_FLAG_NEXT);
if (i == 0)
memcpy(desc[i].data, req,
sizeof(struct hns3_mac_vlan_tbl_entry_cmd));
}
hns3_cmd_setup_basic_desc(&desc[i], HNS3_OPC_MAC_VLAN_ADD,
true);
desc[1].flag |= rte_cpu_to_le_16(HNS3_CMD_FLAG_NEXT);
hns3_cmd_setup_basic_desc(&desc[2], HNS3_OPC_MAC_VLAN_ADD,
true);
ret = hns3_cmd_send(hw, desc, HNS3_MC_MAC_VLAN_ADD_DESC_NUM);
} else {
hns3_cmd_setup_basic_desc(&desc[0], HNS3_OPC_MAC_VLAN_ADD,
true);
memcpy(desc[0].data, req,
sizeof(struct hns3_mac_vlan_tbl_entry_cmd));
ret = hns3_cmd_send(hw, desc, 1);
}
ret = hns3_cmd_send(hw, desc, desc_num);
if (ret) {
hns3_err(hw, "lookup mac addr failed for cmd_send, ret =%d.",
ret);
@ -1464,38 +1467,40 @@ hns3_lookup_mac_vlan_tbl(struct hns3_hw *hw,
static int
hns3_add_mac_vlan_tbl(struct hns3_hw *hw,
struct hns3_mac_vlan_tbl_entry_cmd *req,
struct hns3_cmd_desc *mc_desc)
struct hns3_cmd_desc *desc, uint8_t desc_num)
{
uint8_t resp_code;
uint16_t retval;
int cfg_status;
int ret;
int i;
if (mc_desc == NULL) {
struct hns3_cmd_desc desc;
hns3_cmd_setup_basic_desc(&desc, HNS3_OPC_MAC_VLAN_ADD, false);
memcpy(desc.data, req,
if (desc_num == HNS3_UC_MAC_VLAN_OPS_DESC_NUM) {
hns3_cmd_setup_basic_desc(desc, HNS3_OPC_MAC_VLAN_ADD, false);
memcpy(desc->data, req,
sizeof(struct hns3_mac_vlan_tbl_entry_cmd));
ret = hns3_cmd_send(hw, &desc, 1);
resp_code = (rte_le_to_cpu_32(desc.data[0]) >> 8) & 0xff;
retval = rte_le_to_cpu_16(desc.retval);
ret = hns3_cmd_send(hw, desc, desc_num);
resp_code = (rte_le_to_cpu_32(desc->data[0]) >> 8) & 0xff;
retval = rte_le_to_cpu_16(desc->retval);
cfg_status = hns3_get_mac_vlan_cmd_status(hw, retval, resp_code,
HNS3_MAC_VLAN_ADD);
} else {
hns3_cmd_reuse_desc(&mc_desc[0], false);
mc_desc[0].flag |= rte_cpu_to_le_16(HNS3_CMD_FLAG_NEXT);
hns3_cmd_reuse_desc(&mc_desc[1], false);
mc_desc[1].flag |= rte_cpu_to_le_16(HNS3_CMD_FLAG_NEXT);
hns3_cmd_reuse_desc(&mc_desc[2], false);
mc_desc[2].flag &= rte_cpu_to_le_16(~HNS3_CMD_FLAG_NEXT);
memcpy(mc_desc[0].data, req,
for (i = 0; i < desc_num; i++) {
hns3_cmd_reuse_desc(&desc[i], false);
if (i == desc_num - 1)
desc[i].flag &=
rte_cpu_to_le_16(~HNS3_CMD_FLAG_NEXT);
else
desc[i].flag |=
rte_cpu_to_le_16(HNS3_CMD_FLAG_NEXT);
}
memcpy(desc[0].data, req,
sizeof(struct hns3_mac_vlan_tbl_entry_cmd));
mc_desc[0].retval = 0;
ret = hns3_cmd_send(hw, mc_desc, HNS3_MC_MAC_VLAN_ADD_DESC_NUM);
resp_code = (rte_le_to_cpu_32(mc_desc[0].data[0]) >> 8) & 0xff;
retval = rte_le_to_cpu_16(mc_desc[0].retval);
desc[0].retval = 0;
ret = hns3_cmd_send(hw, desc, desc_num);
resp_code = (rte_le_to_cpu_32(desc[0].data[0]) >> 8) & 0xff;
retval = rte_le_to_cpu_16(desc[0].retval);
cfg_status = hns3_get_mac_vlan_cmd_status(hw, retval, resp_code,
HNS3_MAC_VLAN_ADD);
@ -1540,7 +1545,7 @@ hns3_add_uc_addr_common(struct hns3_hw *hw, struct rte_ether_addr *mac_addr)
struct hns3_adapter *hns = HNS3_DEV_HW_TO_ADAPTER(hw);
struct hns3_mac_vlan_tbl_entry_cmd req;
struct hns3_pf *pf = &hns->pf;
struct hns3_cmd_desc desc[3];
struct hns3_cmd_desc desc;
char mac_str[RTE_ETHER_ADDR_FMT_SIZE];
uint16_t egress_port = 0;
uint8_t vf_id;
@ -1574,10 +1579,12 @@ hns3_add_uc_addr_common(struct hns3_hw *hw, struct rte_ether_addr *mac_addr)
* it if the entry is inexistent. Repeated unicast entry
* is not allowed in the mac vlan table.
*/
ret = hns3_lookup_mac_vlan_tbl(hw, &req, desc, false);
ret = hns3_lookup_mac_vlan_tbl(hw, &req, &desc,
HNS3_UC_MAC_VLAN_OPS_DESC_NUM);
if (ret == -ENOENT) {
if (!hns3_is_umv_space_full(hw)) {
ret = hns3_add_mac_vlan_tbl(hw, &req, NULL);
ret = hns3_add_mac_vlan_tbl(hw, &req, &desc,
HNS3_UC_MAC_VLAN_OPS_DESC_NUM);
if (!ret)
hns3_update_umv_space(hw, false);
return ret;
@ -1867,8 +1874,8 @@ hns3_update_desc_vfid(struct hns3_cmd_desc *desc, uint8_t vfid, bool clr)
static int
hns3_add_mc_addr(struct hns3_hw *hw, struct rte_ether_addr *mac_addr)
{
struct hns3_cmd_desc desc[HNS3_MC_MAC_VLAN_OPS_DESC_NUM];
struct hns3_mac_vlan_tbl_entry_cmd req;
struct hns3_cmd_desc desc[3];
char mac_str[RTE_ETHER_ADDR_FMT_SIZE];
uint8_t vf_id;
int ret;
@ -1885,7 +1892,8 @@ hns3_add_mc_addr(struct hns3_hw *hw, struct rte_ether_addr *mac_addr)
memset(&req, 0, sizeof(req));
hns3_set_bit(req.entry_type, HNS3_MAC_VLAN_BIT0_EN_B, 0);
hns3_prepare_mac_addr(&req, mac_addr->addr_bytes, true);
ret = hns3_lookup_mac_vlan_tbl(hw, &req, desc, true);
ret = hns3_lookup_mac_vlan_tbl(hw, &req, desc,
HNS3_MC_MAC_VLAN_OPS_DESC_NUM);
if (ret) {
/* This mac addr do not exist, add new entry for it */
memset(desc[0].data, 0, sizeof(desc[0].data));
@ -1899,7 +1907,8 @@ hns3_add_mc_addr(struct hns3_hw *hw, struct rte_ether_addr *mac_addr)
*/
vf_id = HNS3_PF_FUNC_ID;
hns3_update_desc_vfid(desc, vf_id, false);
ret = hns3_add_mac_vlan_tbl(hw, &req, desc);
ret = hns3_add_mac_vlan_tbl(hw, &req, desc,
HNS3_MC_MAC_VLAN_OPS_DESC_NUM);
if (ret) {
if (ret == -ENOSPC)
hns3_err(hw, "mc mac vlan table is full");
@ -1932,7 +1941,8 @@ hns3_remove_mc_addr(struct hns3_hw *hw, struct rte_ether_addr *mac_addr)
memset(&req, 0, sizeof(req));
hns3_set_bit(req.entry_type, HNS3_MAC_VLAN_BIT0_EN_B, 0);
hns3_prepare_mac_addr(&req, mac_addr->addr_bytes, true);
ret = hns3_lookup_mac_vlan_tbl(hw, &req, desc, true);
ret = hns3_lookup_mac_vlan_tbl(hw, &req, desc,
HNS3_MC_MAC_VLAN_OPS_DESC_NUM);
if (ret == 0) {
/*
* This mac addr exist, remove this handle's VFID for it.