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net/mlx5e: CT, Don't set flow flag CT for ct clear flow
ct clear action is a normal flow with a modify header for registers to 0. there is no need for any special handling in tc_ct.c. Parsing of ct clear action still allocates mod acts to set 0 on the registers and the driver continue to add a normal rule with modify hdr context. Signed-off-by: Roi Dayan <roid@nvidia.com> Reviewed-by: Oz Shlomo <ozsh@nvidia.com> Signed-off-by: Saeed Mahameed <saeedm@nvidia.com>
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@ -43,13 +43,14 @@ tc_act_parse_ct(struct mlx5e_tc_act_parse_state *parse_state,
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if (err)
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return err;
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flow_flag_set(parse_state->flow, CT);
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if (mlx5e_is_eswitch_flow(parse_state->flow))
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attr->esw_attr->split_count = attr->esw_attr->out_count;
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if (!clear_action)
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if (!clear_action) {
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flow_flag_set(parse_state->flow, CT);
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parse_state->ct = true;
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}
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return 0;
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}
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@ -1926,68 +1926,6 @@ err_ft:
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return ERR_PTR(err);
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}
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static struct mlx5_flow_handle *
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__mlx5_tc_ct_flow_offload_clear(struct mlx5_tc_ct_priv *ct_priv,
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struct mlx5_flow_spec *orig_spec,
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struct mlx5_flow_attr *attr,
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struct mlx5e_tc_mod_hdr_acts *mod_acts)
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{
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struct mlx5e_priv *priv = netdev_priv(ct_priv->netdev);
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u32 attr_sz = ns_to_attr_sz(ct_priv->ns_type);
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struct mlx5_flow_attr *pre_ct_attr;
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struct mlx5_modify_hdr *mod_hdr;
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struct mlx5_flow_handle *rule;
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struct mlx5_ct_flow *ct_flow;
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int err;
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ct_flow = kzalloc(sizeof(*ct_flow), GFP_KERNEL);
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if (!ct_flow)
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return ERR_PTR(-ENOMEM);
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/* Base esw attributes on original rule attribute */
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pre_ct_attr = mlx5_alloc_flow_attr(ct_priv->ns_type);
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if (!pre_ct_attr) {
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err = -ENOMEM;
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goto err_attr;
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}
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memcpy(pre_ct_attr, attr, attr_sz);
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mod_hdr = mlx5_modify_header_alloc(priv->mdev, ct_priv->ns_type,
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mod_acts->num_actions,
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mod_acts->actions);
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if (IS_ERR(mod_hdr)) {
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err = PTR_ERR(mod_hdr);
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ct_dbg("Failed to add create ct clear mod hdr");
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goto err_mod_hdr;
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}
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pre_ct_attr->modify_hdr = mod_hdr;
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rule = mlx5_tc_rule_insert(priv, orig_spec, pre_ct_attr);
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if (IS_ERR(rule)) {
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err = PTR_ERR(rule);
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ct_dbg("Failed to add ct clear rule");
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goto err_insert;
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}
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attr->ct_attr.ct_flow = ct_flow;
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ct_flow->pre_ct_attr = pre_ct_attr;
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ct_flow->pre_ct_rule = rule;
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return rule;
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err_insert:
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mlx5_modify_header_dealloc(priv->mdev, mod_hdr);
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err_mod_hdr:
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netdev_warn(priv->netdev,
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"Failed to offload ct clear flow, err %d\n", err);
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kfree(pre_ct_attr);
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err_attr:
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kfree(ct_flow);
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return ERR_PTR(err);
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}
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struct mlx5_flow_handle *
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mlx5_tc_ct_flow_offload(struct mlx5_tc_ct_priv *priv,
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struct mlx5e_tc_flow *flow,
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@ -1995,18 +1933,13 @@ mlx5_tc_ct_flow_offload(struct mlx5_tc_ct_priv *priv,
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struct mlx5_flow_attr *attr,
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struct mlx5e_tc_mod_hdr_acts *mod_hdr_acts)
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{
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bool clear_action = attr->ct_attr.ct_action & TCA_CT_ACT_CLEAR;
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struct mlx5_flow_handle *rule;
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if (!priv)
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return ERR_PTR(-EOPNOTSUPP);
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mutex_lock(&priv->control_lock);
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if (clear_action)
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rule = __mlx5_tc_ct_flow_offload_clear(priv, spec, attr, mod_hdr_acts);
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else
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rule = __mlx5_tc_ct_flow_offload(priv, flow, spec, attr);
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rule = __mlx5_tc_ct_flow_offload(priv, flow, spec, attr);
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mutex_unlock(&priv->control_lock);
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return rule;
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@ -2020,8 +1953,7 @@ __mlx5_tc_ct_delete_flow(struct mlx5_tc_ct_priv *ct_priv,
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struct mlx5_flow_attr *pre_ct_attr = ct_flow->pre_ct_attr;
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struct mlx5e_priv *priv = netdev_priv(ct_priv->netdev);
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mlx5_tc_rule_delete(priv, ct_flow->pre_ct_rule,
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pre_ct_attr);
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mlx5_tc_rule_delete(priv, ct_flow->pre_ct_rule, pre_ct_attr);
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mlx5_modify_header_dealloc(priv->mdev, pre_ct_attr->modify_hdr);
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if (ct_flow->post_act_handle) {
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@ -1574,8 +1574,7 @@ mlx5e_tc_add_fdb_flow(struct mlx5e_priv *priv,
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if (err)
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goto err_out;
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if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR &&
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!(attr->ct_attr.ct_action & TCA_CT_ACT_CLEAR)) {
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if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR) {
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if (vf_tun) {
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err = mlx5e_tc_add_flow_mod_hdr(priv, flow, attr);
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if (err)
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