mirror of
https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-12-28 11:18:45 +07:00
ec7c7f5caf
This patch fixes the coding error in determining the enable flag for the application/protocol. The enable flag should be set for all protocols but the eth. Signed-off-by: Sudarsana Reddy Kalluru <sudarsana.kalluru@qlogic.com> Signed-off-by: Yuval Mintz <Yuval.Mintz@qlogic.com> Signed-off-by: David S. Miller <davem@davemloft.net>
564 lines
16 KiB
C
564 lines
16 KiB
C
/* QLogic qed NIC Driver
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* Copyright (c) 2015 QLogic Corporation
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*
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* This software is available under the terms of the GNU General Public License
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* (GPL) Version 2, available from the file COPYING in the main directory of
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* this source tree.
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*/
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#include <linux/types.h>
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#include <asm/byteorder.h>
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#include <linux/bitops.h>
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#include <linux/errno.h>
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#include <linux/kernel.h>
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#include <linux/slab.h>
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#include <linux/string.h>
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#include "qed.h"
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#include "qed_cxt.h"
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#include "qed_dcbx.h"
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#include "qed_hsi.h"
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#include "qed_sp.h"
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#define QED_DCBX_MAX_MIB_READ_TRY (100)
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#define QED_ETH_TYPE_DEFAULT (0)
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#define QED_ETH_TYPE_ROCE (0x8915)
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#define QED_UDP_PORT_TYPE_ROCE_V2 (0x12B7)
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#define QED_ETH_TYPE_FCOE (0x8906)
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#define QED_TCP_PORT_ISCSI (0xCBC)
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#define QED_DCBX_INVALID_PRIORITY 0xFF
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/* Get Traffic Class from priority traffic class table, 4 bits represent
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* the traffic class corresponding to the priority.
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*/
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#define QED_DCBX_PRIO2TC(prio_tc_tbl, prio) \
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((u32)(prio_tc_tbl >> ((7 - prio) * 4)) & 0x7)
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static const struct qed_dcbx_app_metadata qed_dcbx_app_update[] = {
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{DCBX_PROTOCOL_ISCSI, "ISCSI", QED_PCI_DEFAULT},
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{DCBX_PROTOCOL_FCOE, "FCOE", QED_PCI_DEFAULT},
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{DCBX_PROTOCOL_ROCE, "ROCE", QED_PCI_DEFAULT},
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{DCBX_PROTOCOL_ROCE_V2, "ROCE_V2", QED_PCI_DEFAULT},
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{DCBX_PROTOCOL_ETH, "ETH", QED_PCI_ETH}
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};
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static bool qed_dcbx_app_ethtype(u32 app_info_bitmap)
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{
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return !!(QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF) ==
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DCBX_APP_SF_ETHTYPE);
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}
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static bool qed_dcbx_app_port(u32 app_info_bitmap)
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{
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return !!(QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF) ==
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DCBX_APP_SF_PORT);
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}
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static bool qed_dcbx_default_tlv(u32 app_info_bitmap, u16 proto_id)
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{
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return !!(qed_dcbx_app_ethtype(app_info_bitmap) &&
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proto_id == QED_ETH_TYPE_DEFAULT);
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}
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static bool qed_dcbx_iscsi_tlv(u32 app_info_bitmap, u16 proto_id)
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{
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return !!(qed_dcbx_app_port(app_info_bitmap) &&
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proto_id == QED_TCP_PORT_ISCSI);
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}
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static bool qed_dcbx_fcoe_tlv(u32 app_info_bitmap, u16 proto_id)
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{
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return !!(qed_dcbx_app_ethtype(app_info_bitmap) &&
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proto_id == QED_ETH_TYPE_FCOE);
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}
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static bool qed_dcbx_roce_tlv(u32 app_info_bitmap, u16 proto_id)
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{
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return !!(qed_dcbx_app_ethtype(app_info_bitmap) &&
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proto_id == QED_ETH_TYPE_ROCE);
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}
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static bool qed_dcbx_roce_v2_tlv(u32 app_info_bitmap, u16 proto_id)
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{
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return !!(qed_dcbx_app_port(app_info_bitmap) &&
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proto_id == QED_UDP_PORT_TYPE_ROCE_V2);
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}
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static void
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qed_dcbx_dp_protocol(struct qed_hwfn *p_hwfn, struct qed_dcbx_results *p_data)
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{
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enum dcbx_protocol_type id;
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int i;
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DP_VERBOSE(p_hwfn, QED_MSG_DCB, "DCBX negotiated: %d\n",
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p_data->dcbx_enabled);
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for (i = 0; i < ARRAY_SIZE(qed_dcbx_app_update); i++) {
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id = qed_dcbx_app_update[i].id;
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DP_VERBOSE(p_hwfn, QED_MSG_DCB,
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"%s info: update %d, enable %d, prio %d, tc %d, num_tc %d\n",
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qed_dcbx_app_update[i].name, p_data->arr[id].update,
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p_data->arr[id].enable, p_data->arr[id].priority,
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p_data->arr[id].tc, p_hwfn->hw_info.num_tc);
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}
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}
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static void
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qed_dcbx_set_params(struct qed_dcbx_results *p_data,
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struct qed_hw_info *p_info,
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bool enable,
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bool update,
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u8 prio,
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u8 tc,
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enum dcbx_protocol_type type,
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enum qed_pci_personality personality)
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{
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/* PF update ramrod data */
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p_data->arr[type].update = update;
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p_data->arr[type].enable = enable;
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p_data->arr[type].priority = prio;
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p_data->arr[type].tc = tc;
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/* QM reconf data */
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if (p_info->personality == personality) {
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if (personality == QED_PCI_ETH)
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p_info->non_offload_tc = tc;
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else
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p_info->offload_tc = tc;
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}
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}
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/* Update app protocol data and hw_info fields with the TLV info */
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static void
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qed_dcbx_update_app_info(struct qed_dcbx_results *p_data,
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struct qed_hwfn *p_hwfn,
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bool enable,
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bool update,
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u8 prio, u8 tc, enum dcbx_protocol_type type)
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{
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struct qed_hw_info *p_info = &p_hwfn->hw_info;
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enum qed_pci_personality personality;
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enum dcbx_protocol_type id;
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char *name;
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int i;
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for (i = 0; i < ARRAY_SIZE(qed_dcbx_app_update); i++) {
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id = qed_dcbx_app_update[i].id;
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if (type != id)
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continue;
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personality = qed_dcbx_app_update[i].personality;
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name = qed_dcbx_app_update[i].name;
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qed_dcbx_set_params(p_data, p_info, enable, update,
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prio, tc, type, personality);
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}
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}
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static bool
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qed_dcbx_get_app_protocol_type(struct qed_hwfn *p_hwfn,
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u32 app_prio_bitmap,
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u16 id, enum dcbx_protocol_type *type)
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{
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if (qed_dcbx_fcoe_tlv(app_prio_bitmap, id)) {
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*type = DCBX_PROTOCOL_FCOE;
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} else if (qed_dcbx_roce_tlv(app_prio_bitmap, id)) {
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*type = DCBX_PROTOCOL_ROCE;
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} else if (qed_dcbx_iscsi_tlv(app_prio_bitmap, id)) {
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*type = DCBX_PROTOCOL_ISCSI;
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} else if (qed_dcbx_default_tlv(app_prio_bitmap, id)) {
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*type = DCBX_PROTOCOL_ETH;
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} else if (qed_dcbx_roce_v2_tlv(app_prio_bitmap, id)) {
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*type = DCBX_PROTOCOL_ROCE_V2;
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} else {
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*type = DCBX_MAX_PROTOCOL_TYPE;
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DP_ERR(p_hwfn,
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"No action required, App TLV id = 0x%x app_prio_bitmap = 0x%x\n",
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id, app_prio_bitmap);
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return false;
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}
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return true;
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}
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/* Parse app TLV's to update TC information in hw_info structure for
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* reconfiguring QM. Get protocol specific data for PF update ramrod command.
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*/
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static int
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qed_dcbx_process_tlv(struct qed_hwfn *p_hwfn,
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struct qed_dcbx_results *p_data,
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struct dcbx_app_priority_entry *p_tbl,
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u32 pri_tc_tbl, int count, bool dcbx_enabled)
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{
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u8 tc, priority_map;
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enum dcbx_protocol_type type;
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u16 protocol_id;
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int priority;
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bool enable;
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int i;
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DP_VERBOSE(p_hwfn, QED_MSG_DCB, "Num APP entries = %d\n", count);
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/* Parse APP TLV */
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for (i = 0; i < count; i++) {
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protocol_id = QED_MFW_GET_FIELD(p_tbl[i].entry,
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DCBX_APP_PROTOCOL_ID);
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priority_map = QED_MFW_GET_FIELD(p_tbl[i].entry,
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DCBX_APP_PRI_MAP);
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priority = ffs(priority_map) - 1;
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if (priority < 0) {
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DP_ERR(p_hwfn, "Invalid priority\n");
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return -EINVAL;
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}
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tc = QED_DCBX_PRIO2TC(pri_tc_tbl, priority);
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if (qed_dcbx_get_app_protocol_type(p_hwfn, p_tbl[i].entry,
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protocol_id, &type)) {
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/* ETH always have the enable bit reset, as it gets
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* vlan information per packet. For other protocols,
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* should be set according to the dcbx_enabled
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* indication, but we only got here if there was an
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* app tlv for the protocol, so dcbx must be enabled.
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*/
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enable = !(type == DCBX_PROTOCOL_ETH);
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qed_dcbx_update_app_info(p_data, p_hwfn, enable, true,
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priority, tc, type);
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}
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}
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/* If RoCE-V2 TLV is not detected, driver need to use RoCE app
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* data for RoCE-v2 not the default app data.
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*/
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if (!p_data->arr[DCBX_PROTOCOL_ROCE_V2].update &&
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p_data->arr[DCBX_PROTOCOL_ROCE].update) {
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tc = p_data->arr[DCBX_PROTOCOL_ROCE].tc;
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priority = p_data->arr[DCBX_PROTOCOL_ROCE].priority;
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qed_dcbx_update_app_info(p_data, p_hwfn, true, true,
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priority, tc, DCBX_PROTOCOL_ROCE_V2);
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}
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/* Update ramrod protocol data and hw_info fields
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* with default info when corresponding APP TLV's are not detected.
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* The enabled field has a different logic for ethernet as only for
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* ethernet dcb should disabled by default, as the information arrives
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* from the OS (unless an explicit app tlv was present).
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*/
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tc = p_data->arr[DCBX_PROTOCOL_ETH].tc;
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priority = p_data->arr[DCBX_PROTOCOL_ETH].priority;
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for (type = 0; type < DCBX_MAX_PROTOCOL_TYPE; type++) {
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if (p_data->arr[type].update)
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continue;
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enable = (type == DCBX_PROTOCOL_ETH) ? false : dcbx_enabled;
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qed_dcbx_update_app_info(p_data, p_hwfn, enable, true,
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priority, tc, type);
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}
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return 0;
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}
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/* Parse app TLV's to update TC information in hw_info structure for
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* reconfiguring QM. Get protocol specific data for PF update ramrod command.
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*/
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static int qed_dcbx_process_mib_info(struct qed_hwfn *p_hwfn)
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{
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struct dcbx_app_priority_feature *p_app;
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struct dcbx_app_priority_entry *p_tbl;
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struct qed_dcbx_results data = { 0 };
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struct dcbx_ets_feature *p_ets;
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struct qed_hw_info *p_info;
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u32 pri_tc_tbl, flags;
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bool dcbx_enabled;
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int num_entries;
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int rc = 0;
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/* If DCBx version is non zero, then negotiation was
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* successfuly performed
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*/
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flags = p_hwfn->p_dcbx_info->operational.flags;
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dcbx_enabled = !!QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION);
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p_app = &p_hwfn->p_dcbx_info->operational.features.app;
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p_tbl = p_app->app_pri_tbl;
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p_ets = &p_hwfn->p_dcbx_info->operational.features.ets;
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pri_tc_tbl = p_ets->pri_tc_tbl[0];
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p_info = &p_hwfn->hw_info;
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num_entries = QED_MFW_GET_FIELD(p_app->flags, DCBX_APP_NUM_ENTRIES);
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rc = qed_dcbx_process_tlv(p_hwfn, &data, p_tbl, pri_tc_tbl,
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num_entries, dcbx_enabled);
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if (rc)
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return rc;
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p_info->num_tc = QED_MFW_GET_FIELD(p_ets->flags, DCBX_ETS_MAX_TCS);
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data.pf_id = p_hwfn->rel_pf_id;
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data.dcbx_enabled = dcbx_enabled;
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qed_dcbx_dp_protocol(p_hwfn, &data);
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memcpy(&p_hwfn->p_dcbx_info->results, &data,
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sizeof(struct qed_dcbx_results));
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return 0;
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}
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static int
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qed_dcbx_copy_mib(struct qed_hwfn *p_hwfn,
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struct qed_ptt *p_ptt,
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struct qed_dcbx_mib_meta_data *p_data,
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enum qed_mib_read_type type)
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{
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u32 prefix_seq_num, suffix_seq_num;
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int read_count = 0;
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int rc = 0;
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/* The data is considered to be valid only if both sequence numbers are
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* the same.
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*/
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do {
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if (type == QED_DCBX_REMOTE_LLDP_MIB) {
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qed_memcpy_from(p_hwfn, p_ptt, p_data->lldp_remote,
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p_data->addr, p_data->size);
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prefix_seq_num = p_data->lldp_remote->prefix_seq_num;
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suffix_seq_num = p_data->lldp_remote->suffix_seq_num;
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} else {
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qed_memcpy_from(p_hwfn, p_ptt, p_data->mib,
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p_data->addr, p_data->size);
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prefix_seq_num = p_data->mib->prefix_seq_num;
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suffix_seq_num = p_data->mib->suffix_seq_num;
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}
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read_count++;
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DP_VERBOSE(p_hwfn,
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QED_MSG_DCB,
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"mib type = %d, try count = %d prefix seq num = %d suffix seq num = %d\n",
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type, read_count, prefix_seq_num, suffix_seq_num);
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} while ((prefix_seq_num != suffix_seq_num) &&
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(read_count < QED_DCBX_MAX_MIB_READ_TRY));
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if (read_count >= QED_DCBX_MAX_MIB_READ_TRY) {
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DP_ERR(p_hwfn,
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"MIB read err, mib type = %d, try count = %d prefix seq num = %d suffix seq num = %d\n",
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type, read_count, prefix_seq_num, suffix_seq_num);
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rc = -EIO;
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}
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return rc;
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}
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static int
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qed_dcbx_read_local_lldp_mib(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
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{
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struct qed_dcbx_mib_meta_data data;
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int rc = 0;
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memset(&data, 0, sizeof(data));
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data.addr = p_hwfn->mcp_info->port_addr + offsetof(struct public_port,
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lldp_config_params);
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data.lldp_local = p_hwfn->p_dcbx_info->lldp_local;
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data.size = sizeof(struct lldp_config_params_s);
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qed_memcpy_from(p_hwfn, p_ptt, data.lldp_local, data.addr, data.size);
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return rc;
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}
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static int
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qed_dcbx_read_remote_lldp_mib(struct qed_hwfn *p_hwfn,
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struct qed_ptt *p_ptt,
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enum qed_mib_read_type type)
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{
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struct qed_dcbx_mib_meta_data data;
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int rc = 0;
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memset(&data, 0, sizeof(data));
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data.addr = p_hwfn->mcp_info->port_addr + offsetof(struct public_port,
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lldp_status_params);
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data.lldp_remote = p_hwfn->p_dcbx_info->lldp_remote;
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data.size = sizeof(struct lldp_status_params_s);
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rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type);
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return rc;
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}
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static int
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qed_dcbx_read_operational_mib(struct qed_hwfn *p_hwfn,
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struct qed_ptt *p_ptt,
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enum qed_mib_read_type type)
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{
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struct qed_dcbx_mib_meta_data data;
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int rc = 0;
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memset(&data, 0, sizeof(data));
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data.addr = p_hwfn->mcp_info->port_addr +
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offsetof(struct public_port, operational_dcbx_mib);
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data.mib = &p_hwfn->p_dcbx_info->operational;
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data.size = sizeof(struct dcbx_mib);
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rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type);
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return rc;
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}
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static int
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qed_dcbx_read_remote_mib(struct qed_hwfn *p_hwfn,
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struct qed_ptt *p_ptt, enum qed_mib_read_type type)
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{
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struct qed_dcbx_mib_meta_data data;
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int rc = 0;
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memset(&data, 0, sizeof(data));
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data.addr = p_hwfn->mcp_info->port_addr +
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offsetof(struct public_port, remote_dcbx_mib);
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data.mib = &p_hwfn->p_dcbx_info->remote;
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data.size = sizeof(struct dcbx_mib);
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rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type);
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return rc;
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}
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static int
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qed_dcbx_read_local_mib(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
|
|
{
|
|
struct qed_dcbx_mib_meta_data data;
|
|
int rc = 0;
|
|
|
|
memset(&data, 0, sizeof(data));
|
|
data.addr = p_hwfn->mcp_info->port_addr +
|
|
offsetof(struct public_port, local_admin_dcbx_mib);
|
|
data.local_admin = &p_hwfn->p_dcbx_info->local_admin;
|
|
data.size = sizeof(struct dcbx_local_params);
|
|
qed_memcpy_from(p_hwfn, p_ptt, data.local_admin, data.addr, data.size);
|
|
|
|
return rc;
|
|
}
|
|
|
|
static int qed_dcbx_read_mib(struct qed_hwfn *p_hwfn,
|
|
struct qed_ptt *p_ptt, enum qed_mib_read_type type)
|
|
{
|
|
int rc = -EINVAL;
|
|
|
|
switch (type) {
|
|
case QED_DCBX_OPERATIONAL_MIB:
|
|
rc = qed_dcbx_read_operational_mib(p_hwfn, p_ptt, type);
|
|
break;
|
|
case QED_DCBX_REMOTE_MIB:
|
|
rc = qed_dcbx_read_remote_mib(p_hwfn, p_ptt, type);
|
|
break;
|
|
case QED_DCBX_LOCAL_MIB:
|
|
rc = qed_dcbx_read_local_mib(p_hwfn, p_ptt);
|
|
break;
|
|
case QED_DCBX_REMOTE_LLDP_MIB:
|
|
rc = qed_dcbx_read_remote_lldp_mib(p_hwfn, p_ptt, type);
|
|
break;
|
|
case QED_DCBX_LOCAL_LLDP_MIB:
|
|
rc = qed_dcbx_read_local_lldp_mib(p_hwfn, p_ptt);
|
|
break;
|
|
default:
|
|
DP_ERR(p_hwfn, "MIB read err, unknown mib type %d\n", type);
|
|
}
|
|
|
|
return rc;
|
|
}
|
|
|
|
/* Read updated MIB.
|
|
* Reconfigure QM and invoke PF update ramrod command if operational MIB
|
|
* change is detected.
|
|
*/
|
|
int
|
|
qed_dcbx_mib_update_event(struct qed_hwfn *p_hwfn,
|
|
struct qed_ptt *p_ptt, enum qed_mib_read_type type)
|
|
{
|
|
int rc = 0;
|
|
|
|
rc = qed_dcbx_read_mib(p_hwfn, p_ptt, type);
|
|
if (rc)
|
|
return rc;
|
|
|
|
if (type == QED_DCBX_OPERATIONAL_MIB) {
|
|
rc = qed_dcbx_process_mib_info(p_hwfn);
|
|
if (!rc) {
|
|
/* reconfigure tcs of QM queues according
|
|
* to negotiation results
|
|
*/
|
|
qed_qm_reconf(p_hwfn, p_ptt);
|
|
|
|
/* update storm FW with negotiation results */
|
|
qed_sp_pf_update(p_hwfn);
|
|
}
|
|
}
|
|
|
|
return rc;
|
|
}
|
|
|
|
int qed_dcbx_info_alloc(struct qed_hwfn *p_hwfn)
|
|
{
|
|
int rc = 0;
|
|
|
|
p_hwfn->p_dcbx_info = kzalloc(sizeof(*p_hwfn->p_dcbx_info), GFP_KERNEL);
|
|
if (!p_hwfn->p_dcbx_info) {
|
|
DP_NOTICE(p_hwfn,
|
|
"Failed to allocate 'struct qed_dcbx_info'\n");
|
|
rc = -ENOMEM;
|
|
}
|
|
|
|
return rc;
|
|
}
|
|
|
|
void qed_dcbx_info_free(struct qed_hwfn *p_hwfn,
|
|
struct qed_dcbx_info *p_dcbx_info)
|
|
{
|
|
kfree(p_hwfn->p_dcbx_info);
|
|
}
|
|
|
|
static void qed_dcbx_update_protocol_data(struct protocol_dcb_data *p_data,
|
|
struct qed_dcbx_results *p_src,
|
|
enum dcbx_protocol_type type)
|
|
{
|
|
p_data->dcb_enable_flag = p_src->arr[type].enable;
|
|
p_data->dcb_priority = p_src->arr[type].priority;
|
|
p_data->dcb_tc = p_src->arr[type].tc;
|
|
}
|
|
|
|
/* Set pf update ramrod command params */
|
|
void qed_dcbx_set_pf_update_params(struct qed_dcbx_results *p_src,
|
|
struct pf_update_ramrod_data *p_dest)
|
|
{
|
|
struct protocol_dcb_data *p_dcb_data;
|
|
bool update_flag = false;
|
|
|
|
p_dest->pf_id = p_src->pf_id;
|
|
|
|
update_flag = p_src->arr[DCBX_PROTOCOL_FCOE].update;
|
|
p_dest->update_fcoe_dcb_data_flag = update_flag;
|
|
|
|
update_flag = p_src->arr[DCBX_PROTOCOL_ROCE].update;
|
|
p_dest->update_roce_dcb_data_flag = update_flag;
|
|
update_flag = p_src->arr[DCBX_PROTOCOL_ROCE_V2].update;
|
|
p_dest->update_roce_dcb_data_flag = update_flag;
|
|
|
|
update_flag = p_src->arr[DCBX_PROTOCOL_ISCSI].update;
|
|
p_dest->update_iscsi_dcb_data_flag = update_flag;
|
|
update_flag = p_src->arr[DCBX_PROTOCOL_ETH].update;
|
|
p_dest->update_eth_dcb_data_flag = update_flag;
|
|
|
|
p_dcb_data = &p_dest->fcoe_dcb_data;
|
|
qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_FCOE);
|
|
p_dcb_data = &p_dest->roce_dcb_data;
|
|
|
|
if (p_src->arr[DCBX_PROTOCOL_ROCE].update)
|
|
qed_dcbx_update_protocol_data(p_dcb_data, p_src,
|
|
DCBX_PROTOCOL_ROCE);
|
|
if (p_src->arr[DCBX_PROTOCOL_ROCE_V2].update)
|
|
qed_dcbx_update_protocol_data(p_dcb_data, p_src,
|
|
DCBX_PROTOCOL_ROCE_V2);
|
|
|
|
p_dcb_data = &p_dest->iscsi_dcb_data;
|
|
qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_ISCSI);
|
|
p_dcb_data = &p_dest->eth_dcb_data;
|
|
qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_ETH);
|
|
}
|