5b4efcc6b9
rte_flow_error_set() is a convenient helper to initialize error objects. Since there is no fundamental reason to prevent applications from using it, expose it through the public interface after modifying its return value from positive to negative. This is done for consistency with the rest of the public interface. Documentation is updated accordingly. Signed-off-by: Adrien Mazarguil <adrien.mazarguil@6wind.com> Acked-by: Nelio Laranjeiro <nelio.laranjeiro@6wind.com>
428 lines
12 KiB
C
428 lines
12 KiB
C
/*-
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* BSD LICENSE
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*
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* Copyright 2016 6WIND S.A.
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* Copyright 2016 Mellanox.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* * Neither the name of 6WIND S.A. nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <errno.h>
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#include <stddef.h>
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#include <stdint.h>
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#include <string.h>
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#include <rte_common.h>
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#include <rte_errno.h>
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#include <rte_branch_prediction.h>
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#include "rte_ethdev.h"
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#include "rte_flow_driver.h"
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#include "rte_flow.h"
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/**
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* Flow elements description tables.
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*/
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struct rte_flow_desc_data {
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const char *name;
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size_t size;
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};
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/** Generate flow_item[] entry. */
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#define MK_FLOW_ITEM(t, s) \
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[RTE_FLOW_ITEM_TYPE_ ## t] = { \
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.name = # t, \
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.size = s, \
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}
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/** Information about known flow pattern items. */
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static const struct rte_flow_desc_data rte_flow_desc_item[] = {
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MK_FLOW_ITEM(END, 0),
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MK_FLOW_ITEM(VOID, 0),
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MK_FLOW_ITEM(INVERT, 0),
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MK_FLOW_ITEM(ANY, sizeof(struct rte_flow_item_any)),
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MK_FLOW_ITEM(PF, 0),
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MK_FLOW_ITEM(VF, sizeof(struct rte_flow_item_vf)),
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MK_FLOW_ITEM(PORT, sizeof(struct rte_flow_item_port)),
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MK_FLOW_ITEM(RAW, sizeof(struct rte_flow_item_raw)), /* +pattern[] */
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MK_FLOW_ITEM(ETH, sizeof(struct rte_flow_item_eth)),
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MK_FLOW_ITEM(VLAN, sizeof(struct rte_flow_item_vlan)),
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MK_FLOW_ITEM(IPV4, sizeof(struct rte_flow_item_ipv4)),
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MK_FLOW_ITEM(IPV6, sizeof(struct rte_flow_item_ipv6)),
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MK_FLOW_ITEM(ICMP, sizeof(struct rte_flow_item_icmp)),
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MK_FLOW_ITEM(UDP, sizeof(struct rte_flow_item_udp)),
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MK_FLOW_ITEM(TCP, sizeof(struct rte_flow_item_tcp)),
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MK_FLOW_ITEM(SCTP, sizeof(struct rte_flow_item_sctp)),
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MK_FLOW_ITEM(VXLAN, sizeof(struct rte_flow_item_vxlan)),
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MK_FLOW_ITEM(MPLS, sizeof(struct rte_flow_item_mpls)),
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MK_FLOW_ITEM(GRE, sizeof(struct rte_flow_item_gre)),
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MK_FLOW_ITEM(E_TAG, sizeof(struct rte_flow_item_e_tag)),
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MK_FLOW_ITEM(NVGRE, sizeof(struct rte_flow_item_nvgre)),
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};
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/** Generate flow_action[] entry. */
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#define MK_FLOW_ACTION(t, s) \
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[RTE_FLOW_ACTION_TYPE_ ## t] = { \
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.name = # t, \
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.size = s, \
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}
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/** Information about known flow actions. */
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static const struct rte_flow_desc_data rte_flow_desc_action[] = {
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MK_FLOW_ACTION(END, 0),
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MK_FLOW_ACTION(VOID, 0),
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MK_FLOW_ACTION(PASSTHRU, 0),
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MK_FLOW_ACTION(MARK, sizeof(struct rte_flow_action_mark)),
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MK_FLOW_ACTION(FLAG, 0),
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MK_FLOW_ACTION(QUEUE, sizeof(struct rte_flow_action_queue)),
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MK_FLOW_ACTION(DROP, 0),
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MK_FLOW_ACTION(COUNT, 0),
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MK_FLOW_ACTION(DUP, sizeof(struct rte_flow_action_dup)),
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MK_FLOW_ACTION(RSS, sizeof(struct rte_flow_action_rss)), /* +queue[] */
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MK_FLOW_ACTION(PF, 0),
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MK_FLOW_ACTION(VF, sizeof(struct rte_flow_action_vf)),
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};
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/* Get generic flow operations structure from a port. */
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const struct rte_flow_ops *
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rte_flow_ops_get(uint16_t port_id, struct rte_flow_error *error)
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{
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struct rte_eth_dev *dev = &rte_eth_devices[port_id];
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const struct rte_flow_ops *ops;
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int code;
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if (unlikely(!rte_eth_dev_is_valid_port(port_id)))
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code = ENODEV;
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else if (unlikely(!dev->dev_ops->filter_ctrl ||
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dev->dev_ops->filter_ctrl(dev,
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RTE_ETH_FILTER_GENERIC,
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RTE_ETH_FILTER_GET,
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&ops) ||
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!ops))
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code = ENOSYS;
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else
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return ops;
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rte_flow_error_set(error, code, RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
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NULL, rte_strerror(code));
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return NULL;
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}
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/* Check whether a flow rule can be created on a given port. */
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int
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rte_flow_validate(uint16_t port_id,
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const struct rte_flow_attr *attr,
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const struct rte_flow_item pattern[],
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const struct rte_flow_action actions[],
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struct rte_flow_error *error)
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{
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const struct rte_flow_ops *ops = rte_flow_ops_get(port_id, error);
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struct rte_eth_dev *dev = &rte_eth_devices[port_id];
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if (unlikely(!ops))
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return -rte_errno;
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if (likely(!!ops->validate))
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return ops->validate(dev, attr, pattern, actions, error);
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return rte_flow_error_set(error, ENOSYS,
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RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
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NULL, rte_strerror(ENOSYS));
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}
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/* Create a flow rule on a given port. */
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struct rte_flow *
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rte_flow_create(uint16_t port_id,
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const struct rte_flow_attr *attr,
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const struct rte_flow_item pattern[],
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const struct rte_flow_action actions[],
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struct rte_flow_error *error)
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{
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struct rte_eth_dev *dev = &rte_eth_devices[port_id];
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const struct rte_flow_ops *ops = rte_flow_ops_get(port_id, error);
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if (unlikely(!ops))
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return NULL;
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if (likely(!!ops->create))
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return ops->create(dev, attr, pattern, actions, error);
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rte_flow_error_set(error, ENOSYS, RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
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NULL, rte_strerror(ENOSYS));
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return NULL;
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}
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/* Destroy a flow rule on a given port. */
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int
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rte_flow_destroy(uint16_t port_id,
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struct rte_flow *flow,
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struct rte_flow_error *error)
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{
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struct rte_eth_dev *dev = &rte_eth_devices[port_id];
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const struct rte_flow_ops *ops = rte_flow_ops_get(port_id, error);
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if (unlikely(!ops))
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return -rte_errno;
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if (likely(!!ops->destroy))
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return ops->destroy(dev, flow, error);
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return rte_flow_error_set(error, ENOSYS,
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RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
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NULL, rte_strerror(ENOSYS));
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}
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/* Destroy all flow rules associated with a port. */
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int
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rte_flow_flush(uint16_t port_id,
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struct rte_flow_error *error)
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{
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struct rte_eth_dev *dev = &rte_eth_devices[port_id];
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const struct rte_flow_ops *ops = rte_flow_ops_get(port_id, error);
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if (unlikely(!ops))
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return -rte_errno;
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if (likely(!!ops->flush))
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return ops->flush(dev, error);
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return rte_flow_error_set(error, ENOSYS,
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RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
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NULL, rte_strerror(ENOSYS));
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}
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/* Query an existing flow rule. */
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int
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rte_flow_query(uint16_t port_id,
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struct rte_flow *flow,
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enum rte_flow_action_type action,
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void *data,
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struct rte_flow_error *error)
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{
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struct rte_eth_dev *dev = &rte_eth_devices[port_id];
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const struct rte_flow_ops *ops = rte_flow_ops_get(port_id, error);
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if (!ops)
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return -rte_errno;
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if (likely(!!ops->query))
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return ops->query(dev, flow, action, data, error);
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return rte_flow_error_set(error, ENOSYS,
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RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
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NULL, rte_strerror(ENOSYS));
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}
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/* Restrict ingress traffic to the defined flow rules. */
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int
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rte_flow_isolate(uint16_t port_id,
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int set,
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struct rte_flow_error *error)
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{
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struct rte_eth_dev *dev = &rte_eth_devices[port_id];
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const struct rte_flow_ops *ops = rte_flow_ops_get(port_id, error);
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if (!ops)
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return -rte_errno;
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if (likely(!!ops->isolate))
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return ops->isolate(dev, set, error);
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return rte_flow_error_set(error, ENOSYS,
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RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
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NULL, rte_strerror(ENOSYS));
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}
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/* Initialize flow error structure. */
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int
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rte_flow_error_set(struct rte_flow_error *error,
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int code,
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enum rte_flow_error_type type,
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const void *cause,
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const char *message)
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{
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if (error) {
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*error = (struct rte_flow_error){
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.type = type,
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.cause = cause,
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.message = message,
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};
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}
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rte_errno = code;
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return -code;
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}
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/** Compute storage space needed by item specification. */
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static void
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flow_item_spec_size(const struct rte_flow_item *item,
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size_t *size, size_t *pad)
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{
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if (!item->spec) {
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*size = 0;
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goto empty;
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}
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switch (item->type) {
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union {
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const struct rte_flow_item_raw *raw;
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} spec;
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/* Not a fall-through */
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case RTE_FLOW_ITEM_TYPE_RAW:
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spec.raw = item->spec;
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*size = offsetof(struct rte_flow_item_raw, pattern) +
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spec.raw->length * sizeof(*spec.raw->pattern);
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break;
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default:
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*size = rte_flow_desc_item[item->type].size;
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break;
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}
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empty:
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*pad = RTE_ALIGN_CEIL(*size, sizeof(double)) - *size;
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}
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/** Compute storage space needed by action configuration. */
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static void
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flow_action_conf_size(const struct rte_flow_action *action,
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size_t *size, size_t *pad)
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{
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if (!action->conf) {
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*size = 0;
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goto empty;
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}
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switch (action->type) {
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union {
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const struct rte_flow_action_rss *rss;
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} conf;
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/* Not a fall-through. */
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case RTE_FLOW_ACTION_TYPE_RSS:
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conf.rss = action->conf;
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*size = offsetof(struct rte_flow_action_rss, queue) +
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conf.rss->num * sizeof(*conf.rss->queue);
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break;
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default:
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*size = rte_flow_desc_action[action->type].size;
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break;
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}
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empty:
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*pad = RTE_ALIGN_CEIL(*size, sizeof(double)) - *size;
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}
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/** Store a full rte_flow description. */
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size_t
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rte_flow_copy(struct rte_flow_desc *desc, size_t len,
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const struct rte_flow_attr *attr,
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const struct rte_flow_item *items,
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const struct rte_flow_action *actions)
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{
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struct rte_flow_desc *fd = NULL;
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size_t tmp;
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size_t pad;
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size_t off1 = 0;
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size_t off2 = 0;
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size_t size = 0;
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store:
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if (items) {
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const struct rte_flow_item *item;
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item = items;
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if (fd)
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fd->items = (void *)&fd->data[off1];
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do {
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struct rte_flow_item *dst = NULL;
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if ((size_t)item->type >=
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RTE_DIM(rte_flow_desc_item) ||
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!rte_flow_desc_item[item->type].name) {
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rte_errno = ENOTSUP;
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return 0;
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}
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if (fd)
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dst = memcpy(fd->data + off1, item,
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sizeof(*item));
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off1 += sizeof(*item);
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flow_item_spec_size(item, &tmp, &pad);
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if (item->spec) {
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if (fd)
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dst->spec = memcpy(fd->data + off2,
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item->spec, tmp);
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off2 += tmp + pad;
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}
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if (item->last) {
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if (fd)
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dst->last = memcpy(fd->data + off2,
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item->last, tmp);
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off2 += tmp + pad;
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}
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if (item->mask) {
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if (fd)
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dst->mask = memcpy(fd->data + off2,
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item->mask, tmp);
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off2 += tmp + pad;
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}
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off2 = RTE_ALIGN_CEIL(off2, sizeof(double));
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} while ((item++)->type != RTE_FLOW_ITEM_TYPE_END);
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off1 = RTE_ALIGN_CEIL(off1, sizeof(double));
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}
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if (actions) {
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const struct rte_flow_action *action;
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action = actions;
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if (fd)
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fd->actions = (void *)&fd->data[off1];
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do {
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struct rte_flow_action *dst = NULL;
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if ((size_t)action->type >=
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RTE_DIM(rte_flow_desc_action) ||
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!rte_flow_desc_action[action->type].name) {
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rte_errno = ENOTSUP;
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return 0;
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}
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if (fd)
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dst = memcpy(fd->data + off1, action,
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sizeof(*action));
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off1 += sizeof(*action);
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flow_action_conf_size(action, &tmp, &pad);
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if (action->conf) {
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if (fd)
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dst->conf = memcpy(fd->data + off2,
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action->conf, tmp);
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off2 += tmp + pad;
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}
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off2 = RTE_ALIGN_CEIL(off2, sizeof(double));
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} while ((action++)->type != RTE_FLOW_ACTION_TYPE_END);
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}
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if (fd != NULL)
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return size;
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off1 = RTE_ALIGN_CEIL(off1, sizeof(double));
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tmp = RTE_ALIGN_CEIL(offsetof(struct rte_flow_desc, data),
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sizeof(double));
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size = tmp + off1 + off2;
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if (size > len)
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return size;
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fd = desc;
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if (fd != NULL) {
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*fd = (const struct rte_flow_desc) {
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.size = size,
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.attr = *attr,
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};
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tmp -= offsetof(struct rte_flow_desc, data);
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off2 = tmp + off1;
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off1 = tmp;
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goto store;
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}
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return 0;
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}
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