cb71192486
For get PHY abilities AQ, the specification defines "report modes" as "with media", "without media" and "active configuration". For clarity, rename macros to align with the specification. Signed-off-by: Anirudh Venkataramanan <anirudh.venkataramanan@intel.com> Signed-off-by: Qi Zhang <qi.z.zhang@intel.com> Acked-by: Qiming Yang <qiming.yang@intel.com>
439 lines
11 KiB
C
439 lines
11 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2020 Intel Corporation
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*/
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <pthread.h>
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#include <unistd.h>
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#include <rte_spinlock.h>
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#include "ice_dcf_ethdev.h"
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#include "ice_generic_flow.h"
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#define ICE_DCF_VSI_UPDATE_SERVICE_INTERVAL 100000 /* us */
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static rte_spinlock_t vsi_update_lock = RTE_SPINLOCK_INITIALIZER;
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static __rte_always_inline void
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ice_dcf_update_vsi_ctx(struct ice_hw *hw, uint16_t vsi_handle,
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uint16_t vsi_map)
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{
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struct ice_vsi_ctx *vsi_ctx;
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bool first_update = false;
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uint16_t new_vsi_num;
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if (unlikely(vsi_handle >= ICE_MAX_VSI)) {
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PMD_DRV_LOG(ERR, "Invalid vsi handle %u", vsi_handle);
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return;
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}
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vsi_ctx = hw->vsi_ctx[vsi_handle];
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if (vsi_map & VIRTCHNL_DCF_VF_VSI_VALID) {
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if (!vsi_ctx) {
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vsi_ctx = ice_malloc(hw, sizeof(*vsi_ctx));
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if (!vsi_ctx) {
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PMD_DRV_LOG(ERR, "No memory for vsi context %u",
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vsi_handle);
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return;
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}
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hw->vsi_ctx[vsi_handle] = vsi_ctx;
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first_update = true;
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}
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new_vsi_num = (vsi_map & VIRTCHNL_DCF_VF_VSI_ID_M) >>
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VIRTCHNL_DCF_VF_VSI_ID_S;
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/* Redirect rules if vsi mapping table changes. */
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if (!first_update) {
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struct ice_flow_redirect rd;
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memset(&rd, 0, sizeof(struct ice_flow_redirect));
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rd.type = ICE_FLOW_REDIRECT_VSI;
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rd.vsi_handle = vsi_handle;
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rd.new_vsi_num = new_vsi_num;
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ice_flow_redirect((struct ice_adapter *)hw->back, &rd);
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} else {
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vsi_ctx->vsi_num = new_vsi_num;
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}
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PMD_DRV_LOG(DEBUG, "VF%u is assigned with vsi number %u",
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vsi_handle, vsi_ctx->vsi_num);
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} else {
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hw->vsi_ctx[vsi_handle] = NULL;
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ice_free(hw, vsi_ctx);
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PMD_DRV_LOG(NOTICE, "VF%u is disabled", vsi_handle);
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}
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}
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static void
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ice_dcf_update_vf_vsi_map(struct ice_hw *hw, uint16_t num_vfs,
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uint16_t *vf_vsi_map)
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{
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uint16_t vf_id;
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for (vf_id = 0; vf_id < num_vfs; vf_id++)
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ice_dcf_update_vsi_ctx(hw, vf_id, vf_vsi_map[vf_id]);
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}
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static void
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ice_dcf_update_pf_vsi_map(struct ice_hw *hw, uint16_t pf_vsi_idx,
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uint16_t pf_vsi_num)
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{
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struct ice_vsi_ctx *vsi_ctx;
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if (unlikely(pf_vsi_idx >= ICE_MAX_VSI)) {
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PMD_DRV_LOG(ERR, "Invalid vsi handle %u", pf_vsi_idx);
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return;
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}
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vsi_ctx = hw->vsi_ctx[pf_vsi_idx];
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if (!vsi_ctx)
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vsi_ctx = ice_malloc(hw, sizeof(*vsi_ctx));
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if (!vsi_ctx) {
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PMD_DRV_LOG(ERR, "No memory for vsi context %u",
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pf_vsi_idx);
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return;
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}
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vsi_ctx->vsi_num = pf_vsi_num;
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hw->vsi_ctx[pf_vsi_idx] = vsi_ctx;
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PMD_DRV_LOG(DEBUG, "VF%u is assigned with vsi number %u",
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pf_vsi_idx, vsi_ctx->vsi_num);
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}
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static void*
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ice_dcf_vsi_update_service_handler(void *param)
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{
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struct ice_dcf_hw *hw = param;
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usleep(ICE_DCF_VSI_UPDATE_SERVICE_INTERVAL);
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rte_spinlock_lock(&vsi_update_lock);
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if (!ice_dcf_handle_vsi_update_event(hw)) {
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struct ice_dcf_adapter *dcf_ad =
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container_of(hw, struct ice_dcf_adapter, real_hw);
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ice_dcf_update_vf_vsi_map(&dcf_ad->parent.hw,
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hw->num_vfs, hw->vf_vsi_map);
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}
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rte_spinlock_unlock(&vsi_update_lock);
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return NULL;
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}
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void
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ice_dcf_handle_pf_event_msg(struct ice_dcf_hw *dcf_hw,
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uint8_t *msg, uint16_t msglen)
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{
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struct virtchnl_pf_event *pf_msg = (struct virtchnl_pf_event *)msg;
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pthread_t thread;
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if (msglen < sizeof(struct virtchnl_pf_event)) {
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PMD_DRV_LOG(DEBUG, "Invalid event message length : %u", msglen);
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return;
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}
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switch (pf_msg->event) {
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case VIRTCHNL_EVENT_RESET_IMPENDING:
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PMD_DRV_LOG(DEBUG, "VIRTCHNL_EVENT_RESET_IMPENDING event");
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pthread_create(&thread, NULL,
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ice_dcf_vsi_update_service_handler, dcf_hw);
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break;
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case VIRTCHNL_EVENT_LINK_CHANGE:
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PMD_DRV_LOG(DEBUG, "VIRTCHNL_EVENT_LINK_CHANGE event");
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break;
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case VIRTCHNL_EVENT_PF_DRIVER_CLOSE:
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PMD_DRV_LOG(DEBUG, "VIRTCHNL_EVENT_PF_DRIVER_CLOSE event");
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break;
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case VIRTCHNL_EVENT_DCF_VSI_MAP_UPDATE:
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PMD_DRV_LOG(DEBUG, "VIRTCHNL_EVENT_DCF_VSI_MAP_UPDATE event : VF%u with VSI num %u",
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pf_msg->event_data.vf_vsi_map.vf_id,
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pf_msg->event_data.vf_vsi_map.vsi_id);
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pthread_create(&thread, NULL,
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ice_dcf_vsi_update_service_handler, dcf_hw);
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break;
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default:
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PMD_DRV_LOG(ERR, "Unknown event received %u", pf_msg->event);
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break;
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}
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}
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static int
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ice_dcf_init_parent_hw(struct ice_hw *hw)
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{
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struct ice_aqc_get_phy_caps_data *pcaps;
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enum ice_status status;
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status = ice_aq_get_fw_ver(hw, NULL);
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if (status)
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return status;
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status = ice_get_caps(hw);
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if (status)
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return status;
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hw->port_info = (struct ice_port_info *)
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ice_malloc(hw, sizeof(*hw->port_info));
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if (!hw->port_info)
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return ICE_ERR_NO_MEMORY;
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/* set the back pointer to HW */
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hw->port_info->hw = hw;
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/* Initialize port_info struct with switch configuration data */
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status = ice_get_initial_sw_cfg(hw);
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if (status)
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goto err_unroll_alloc;
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pcaps = (struct ice_aqc_get_phy_caps_data *)
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ice_malloc(hw, sizeof(*pcaps));
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if (!pcaps) {
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status = ICE_ERR_NO_MEMORY;
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goto err_unroll_alloc;
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}
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/* Initialize port_info struct with PHY capabilities */
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status = ice_aq_get_phy_caps(hw->port_info, false,
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ICE_AQC_REPORT_TOPO_CAP_MEDIA, pcaps, NULL);
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ice_free(hw, pcaps);
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if (status)
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goto err_unroll_alloc;
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/* Initialize port_info struct with link information */
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status = ice_aq_get_link_info(hw->port_info, false, NULL, NULL);
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if (status)
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goto err_unroll_alloc;
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status = ice_init_fltr_mgmt_struct(hw);
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if (status)
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goto err_unroll_alloc;
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status = ice_init_hw_tbls(hw);
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if (status)
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goto err_unroll_fltr_mgmt_struct;
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PMD_INIT_LOG(INFO,
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"firmware %d.%d.%d api %d.%d.%d build 0x%08x",
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hw->fw_maj_ver, hw->fw_min_ver, hw->fw_patch,
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hw->api_maj_ver, hw->api_min_ver, hw->api_patch,
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hw->fw_build);
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return ICE_SUCCESS;
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err_unroll_fltr_mgmt_struct:
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ice_cleanup_fltr_mgmt_struct(hw);
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err_unroll_alloc:
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ice_free(hw, hw->port_info);
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hw->port_info = NULL;
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return status;
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}
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static void ice_dcf_uninit_parent_hw(struct ice_hw *hw)
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{
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ice_cleanup_fltr_mgmt_struct(hw);
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ice_free_seg(hw);
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ice_free_hw_tbls(hw);
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ice_free(hw, hw->port_info);
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hw->port_info = NULL;
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ice_clear_all_vsi_ctx(hw);
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}
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static int
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ice_dcf_request_pkg_name(struct ice_hw *hw, char *pkg_name)
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{
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struct ice_dcf_adapter *dcf_adapter =
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container_of(hw, struct ice_dcf_adapter, parent.hw);
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struct virtchnl_pkg_info pkg_info;
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struct dcf_virtchnl_cmd vc_cmd;
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uint64_t dsn;
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vc_cmd.v_op = VIRTCHNL_OP_DCF_GET_PKG_INFO;
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vc_cmd.req_msglen = 0;
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vc_cmd.req_msg = NULL;
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vc_cmd.rsp_buflen = sizeof(pkg_info);
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vc_cmd.rsp_msgbuf = (uint8_t *)&pkg_info;
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if (ice_dcf_execute_virtchnl_cmd(&dcf_adapter->real_hw, &vc_cmd))
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goto pkg_file_direct;
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rte_memcpy(&dsn, pkg_info.dsn, sizeof(dsn));
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snprintf(pkg_name, ICE_MAX_PKG_FILENAME_SIZE,
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ICE_PKG_FILE_SEARCH_PATH_UPDATES "ice-%016llx.pkg",
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(unsigned long long)dsn);
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if (!access(pkg_name, 0))
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return 0;
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snprintf(pkg_name, ICE_MAX_PKG_FILENAME_SIZE,
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ICE_PKG_FILE_SEARCH_PATH_DEFAULT "ice-%016llx.pkg",
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(unsigned long long)dsn);
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if (!access(pkg_name, 0))
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return 0;
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pkg_file_direct:
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snprintf(pkg_name,
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ICE_MAX_PKG_FILENAME_SIZE, "%s", ICE_PKG_FILE_UPDATES);
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if (!access(pkg_name, 0))
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return 0;
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snprintf(pkg_name,
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ICE_MAX_PKG_FILENAME_SIZE, "%s", ICE_PKG_FILE_DEFAULT);
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if (!access(pkg_name, 0))
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return 0;
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return -1;
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}
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static int
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ice_dcf_load_pkg(struct ice_hw *hw)
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{
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char pkg_name[ICE_MAX_PKG_FILENAME_SIZE];
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uint8_t *pkg_buf;
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uint32_t buf_len;
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struct stat st;
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FILE *fp;
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int err;
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if (ice_dcf_request_pkg_name(hw, pkg_name)) {
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PMD_INIT_LOG(ERR, "Failed to locate the package file");
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return -ENOENT;
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}
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PMD_INIT_LOG(DEBUG, "DDP package name: %s", pkg_name);
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err = stat(pkg_name, &st);
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if (err) {
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PMD_INIT_LOG(ERR, "Failed to get file status");
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return err;
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}
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buf_len = st.st_size;
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pkg_buf = rte_malloc(NULL, buf_len, 0);
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if (!pkg_buf) {
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PMD_INIT_LOG(ERR, "failed to allocate buffer of size %u for package",
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buf_len);
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return -1;
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}
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fp = fopen(pkg_name, "rb");
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if (!fp) {
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PMD_INIT_LOG(ERR, "failed to open file: %s", pkg_name);
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err = -1;
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goto ret;
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}
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err = fread(pkg_buf, buf_len, 1, fp);
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fclose(fp);
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if (err != 1) {
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PMD_INIT_LOG(ERR, "failed to read package data");
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err = -1;
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goto ret;
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}
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err = ice_copy_and_init_pkg(hw, pkg_buf, buf_len);
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if (err)
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PMD_INIT_LOG(ERR, "ice_copy_and_init_hw failed: %d", err);
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ret:
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rte_free(pkg_buf);
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return err;
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}
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int
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ice_dcf_init_parent_adapter(struct rte_eth_dev *eth_dev)
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{
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struct ice_dcf_adapter *adapter = eth_dev->data->dev_private;
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struct ice_adapter *parent_adapter = &adapter->parent;
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struct ice_hw *parent_hw = &parent_adapter->hw;
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struct ice_dcf_hw *hw = &adapter->real_hw;
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const struct rte_ether_addr *mac;
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int err;
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parent_adapter->eth_dev = eth_dev;
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parent_adapter->pf.adapter = parent_adapter;
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parent_adapter->pf.dev_data = eth_dev->data;
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/* create a dummy main_vsi */
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parent_adapter->pf.main_vsi =
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rte_zmalloc(NULL, sizeof(struct ice_vsi), 0);
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if (!parent_adapter->pf.main_vsi)
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return -ENOMEM;
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parent_adapter->pf.main_vsi->adapter = parent_adapter;
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parent_adapter->pf.adapter_stopped = 1;
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parent_hw->back = parent_adapter;
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parent_hw->mac_type = ICE_MAC_GENERIC;
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parent_hw->vendor_id = ICE_INTEL_VENDOR_ID;
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ice_init_lock(&parent_hw->adminq.sq_lock);
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ice_init_lock(&parent_hw->adminq.rq_lock);
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parent_hw->aq_send_cmd_fn = ice_dcf_send_aq_cmd;
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parent_hw->aq_send_cmd_param = &adapter->real_hw;
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parent_hw->dcf_enabled = true;
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err = ice_dcf_init_parent_hw(parent_hw);
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if (err) {
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PMD_INIT_LOG(ERR, "failed to init the DCF parent hardware with error %d",
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err);
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return err;
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}
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err = ice_dcf_load_pkg(parent_hw);
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if (err) {
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PMD_INIT_LOG(ERR, "failed to load package with error %d",
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err);
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goto uninit_hw;
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}
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parent_adapter->active_pkg_type = ice_load_pkg_type(parent_hw);
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parent_adapter->pf.main_vsi->idx = hw->num_vfs;
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ice_dcf_update_pf_vsi_map(parent_hw,
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parent_adapter->pf.main_vsi->idx, hw->pf_vsi_id);
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ice_dcf_update_vf_vsi_map(parent_hw, hw->num_vfs, hw->vf_vsi_map);
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err = ice_flow_init(parent_adapter);
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if (err) {
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PMD_INIT_LOG(ERR, "Failed to initialize flow");
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goto uninit_hw;
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}
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mac = (const struct rte_ether_addr *)hw->avf.mac.addr;
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if (rte_is_valid_assigned_ether_addr(mac))
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rte_ether_addr_copy(mac, &parent_adapter->pf.dev_addr);
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else
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rte_eth_random_addr(parent_adapter->pf.dev_addr.addr_bytes);
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eth_dev->data->mac_addrs = &parent_adapter->pf.dev_addr;
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return 0;
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uninit_hw:
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ice_dcf_uninit_parent_hw(parent_hw);
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return err;
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}
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void
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ice_dcf_uninit_parent_adapter(struct rte_eth_dev *eth_dev)
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{
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struct ice_dcf_adapter *adapter = eth_dev->data->dev_private;
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struct ice_adapter *parent_adapter = &adapter->parent;
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struct ice_hw *parent_hw = &parent_adapter->hw;
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eth_dev->data->mac_addrs = NULL;
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ice_flow_uninit(parent_adapter);
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ice_dcf_uninit_parent_hw(parent_hw);
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}
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