470 lines
12 KiB
C
470 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0 OR Linux-OpenIB
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/*
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* Copyright 2015-2021 Amazon.com, Inc. or its affiliates. All rights reserved.
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*/
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#include "ena_xdp.h"
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static int validate_xdp_req_id(struct ena_ring *tx_ring, u16 req_id)
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{
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struct ena_tx_buffer *tx_info;
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tx_info = &tx_ring->tx_buffer_info[req_id];
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if (likely(tx_info->xdpf))
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return 0;
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return handle_invalid_req_id(tx_ring, req_id, tx_info, true);
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}
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static int ena_xdp_tx_map_frame(struct ena_ring *tx_ring,
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struct ena_tx_buffer *tx_info,
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struct xdp_frame *xdpf,
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struct ena_com_tx_ctx *ena_tx_ctx)
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{
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struct ena_adapter *adapter = tx_ring->adapter;
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struct ena_com_buf *ena_buf;
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int push_len = 0;
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dma_addr_t dma;
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void *data;
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u32 size;
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tx_info->xdpf = xdpf;
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data = tx_info->xdpf->data;
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size = tx_info->xdpf->len;
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if (tx_ring->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_DEV) {
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/* Designate part of the packet for LLQ */
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push_len = min_t(u32, size, tx_ring->tx_max_header_size);
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ena_tx_ctx->push_header = data;
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size -= push_len;
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data += push_len;
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}
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ena_tx_ctx->header_len = push_len;
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if (size > 0) {
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dma = dma_map_single(tx_ring->dev,
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data,
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size,
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DMA_TO_DEVICE);
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if (unlikely(dma_mapping_error(tx_ring->dev, dma)))
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goto error_report_dma_error;
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tx_info->map_linear_data = 0;
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ena_buf = tx_info->bufs;
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ena_buf->paddr = dma;
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ena_buf->len = size;
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ena_tx_ctx->ena_bufs = ena_buf;
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ena_tx_ctx->num_bufs = tx_info->num_of_bufs = 1;
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}
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return 0;
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error_report_dma_error:
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ena_increase_stat(&tx_ring->tx_stats.dma_mapping_err, 1,
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&tx_ring->syncp);
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netif_warn(adapter, tx_queued, adapter->netdev, "Failed to map xdp buff\n");
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return -EINVAL;
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}
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int ena_xdp_xmit_frame(struct ena_ring *tx_ring,
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struct ena_adapter *adapter,
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struct xdp_frame *xdpf,
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int flags)
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{
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struct ena_com_tx_ctx ena_tx_ctx = {};
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struct ena_tx_buffer *tx_info;
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u16 next_to_use, req_id;
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int rc;
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next_to_use = tx_ring->next_to_use;
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req_id = tx_ring->free_ids[next_to_use];
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tx_info = &tx_ring->tx_buffer_info[req_id];
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tx_info->num_of_bufs = 0;
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rc = ena_xdp_tx_map_frame(tx_ring, tx_info, xdpf, &ena_tx_ctx);
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if (unlikely(rc))
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goto err;
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ena_tx_ctx.req_id = req_id;
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rc = ena_xmit_common(adapter,
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tx_ring,
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tx_info,
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&ena_tx_ctx,
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next_to_use,
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xdpf->len);
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if (rc)
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goto error_unmap_dma;
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/* trigger the dma engine. ena_ring_tx_doorbell()
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* calls a memory barrier inside it.
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*/
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if (flags & XDP_XMIT_FLUSH)
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ena_ring_tx_doorbell(tx_ring);
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return rc;
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error_unmap_dma:
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ena_unmap_tx_buff(tx_ring, tx_info);
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err:
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tx_info->xdpf = NULL;
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return rc;
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}
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int ena_xdp_xmit(struct net_device *dev, int n,
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struct xdp_frame **frames, u32 flags)
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{
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struct ena_adapter *adapter = netdev_priv(dev);
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struct ena_ring *tx_ring;
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int qid, i, nxmit = 0;
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if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK))
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return -EINVAL;
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if (!test_bit(ENA_FLAG_DEV_UP, &adapter->flags))
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return -ENETDOWN;
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/* We assume that all rings have the same XDP program */
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if (!READ_ONCE(adapter->rx_ring->xdp_bpf_prog))
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return -ENXIO;
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qid = smp_processor_id() % adapter->xdp_num_queues;
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qid += adapter->xdp_first_ring;
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tx_ring = &adapter->tx_ring[qid];
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/* Other CPU ids might try to send thorugh this queue */
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spin_lock(&tx_ring->xdp_tx_lock);
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for (i = 0; i < n; i++) {
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if (ena_xdp_xmit_frame(tx_ring, adapter, frames[i], 0))
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break;
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nxmit++;
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}
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/* Ring doorbell to make device aware of the packets */
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if (flags & XDP_XMIT_FLUSH)
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ena_ring_tx_doorbell(tx_ring);
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spin_unlock(&tx_ring->xdp_tx_lock);
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/* Return number of packets sent */
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return nxmit;
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}
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static void ena_init_all_xdp_queues(struct ena_adapter *adapter)
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{
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adapter->xdp_first_ring = adapter->num_io_queues;
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adapter->xdp_num_queues = adapter->num_io_queues;
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ena_init_io_rings(adapter,
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adapter->xdp_first_ring,
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adapter->xdp_num_queues);
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}
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int ena_setup_and_create_all_xdp_queues(struct ena_adapter *adapter)
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{
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u32 xdp_first_ring = adapter->xdp_first_ring;
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u32 xdp_num_queues = adapter->xdp_num_queues;
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int rc = 0;
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rc = ena_setup_tx_resources_in_range(adapter, xdp_first_ring, xdp_num_queues);
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if (rc)
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goto setup_err;
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rc = ena_create_io_tx_queues_in_range(adapter, xdp_first_ring, xdp_num_queues);
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if (rc)
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goto create_err;
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return 0;
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create_err:
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ena_free_all_io_tx_resources_in_range(adapter, xdp_first_ring, xdp_num_queues);
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setup_err:
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return rc;
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}
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/* Provides a way for both kernel and bpf-prog to know
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* more about the RX-queue a given XDP frame arrived on.
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*/
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int ena_xdp_register_rxq_info(struct ena_ring *rx_ring)
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{
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int rc;
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rc = xdp_rxq_info_reg(&rx_ring->xdp_rxq, rx_ring->netdev, rx_ring->qid, 0);
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netif_dbg(rx_ring->adapter, ifup, rx_ring->netdev, "Registering RX info for queue %d",
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rx_ring->qid);
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if (rc) {
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netif_err(rx_ring->adapter, ifup, rx_ring->netdev,
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"Failed to register xdp rx queue info. RX queue num %d rc: %d\n",
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rx_ring->qid, rc);
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goto err;
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}
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rc = xdp_rxq_info_reg_mem_model(&rx_ring->xdp_rxq, MEM_TYPE_PAGE_SHARED, NULL);
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if (rc) {
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netif_err(rx_ring->adapter, ifup, rx_ring->netdev,
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"Failed to register xdp rx queue info memory model. RX queue num %d rc: %d\n",
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rx_ring->qid, rc);
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xdp_rxq_info_unreg(&rx_ring->xdp_rxq);
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}
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err:
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return rc;
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}
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void ena_xdp_unregister_rxq_info(struct ena_ring *rx_ring)
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{
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netif_dbg(rx_ring->adapter, ifdown, rx_ring->netdev,
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"Unregistering RX info for queue %d",
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rx_ring->qid);
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xdp_rxq_info_unreg_mem_model(&rx_ring->xdp_rxq);
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xdp_rxq_info_unreg(&rx_ring->xdp_rxq);
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}
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void ena_xdp_exchange_program_rx_in_range(struct ena_adapter *adapter,
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struct bpf_prog *prog,
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int first, int count)
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{
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struct bpf_prog *old_bpf_prog;
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struct ena_ring *rx_ring;
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int i = 0;
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for (i = first; i < count; i++) {
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rx_ring = &adapter->rx_ring[i];
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old_bpf_prog = xchg(&rx_ring->xdp_bpf_prog, prog);
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if (!old_bpf_prog && prog) {
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rx_ring->rx_headroom = XDP_PACKET_HEADROOM;
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} else if (old_bpf_prog && !prog) {
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rx_ring->rx_headroom = NET_SKB_PAD;
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}
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}
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}
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static void ena_xdp_exchange_program(struct ena_adapter *adapter,
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struct bpf_prog *prog)
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{
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struct bpf_prog *old_bpf_prog = xchg(&adapter->xdp_bpf_prog, prog);
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ena_xdp_exchange_program_rx_in_range(adapter,
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prog,
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0,
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adapter->num_io_queues);
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if (old_bpf_prog)
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bpf_prog_put(old_bpf_prog);
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}
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static int ena_destroy_and_free_all_xdp_queues(struct ena_adapter *adapter)
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{
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bool was_up;
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int rc;
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was_up = test_bit(ENA_FLAG_DEV_UP, &adapter->flags);
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if (was_up)
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ena_down(adapter);
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adapter->xdp_first_ring = 0;
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adapter->xdp_num_queues = 0;
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ena_xdp_exchange_program(adapter, NULL);
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if (was_up) {
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rc = ena_up(adapter);
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if (rc)
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return rc;
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}
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return 0;
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}
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static int ena_xdp_set(struct net_device *netdev, struct netdev_bpf *bpf)
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{
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struct ena_adapter *adapter = netdev_priv(netdev);
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struct bpf_prog *prog = bpf->prog;
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struct bpf_prog *old_bpf_prog;
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int rc, prev_mtu;
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bool is_up;
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is_up = test_bit(ENA_FLAG_DEV_UP, &adapter->flags);
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rc = ena_xdp_allowed(adapter);
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if (rc == ENA_XDP_ALLOWED) {
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old_bpf_prog = adapter->xdp_bpf_prog;
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if (prog) {
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if (!is_up) {
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ena_init_all_xdp_queues(adapter);
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} else if (!old_bpf_prog) {
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ena_down(adapter);
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ena_init_all_xdp_queues(adapter);
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}
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ena_xdp_exchange_program(adapter, prog);
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netif_dbg(adapter, drv, adapter->netdev, "Set a new XDP program\n");
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if (is_up && !old_bpf_prog) {
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rc = ena_up(adapter);
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if (rc)
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return rc;
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}
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xdp_features_set_redirect_target(netdev, false);
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} else if (old_bpf_prog) {
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xdp_features_clear_redirect_target(netdev);
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netif_dbg(adapter, drv, adapter->netdev, "Removing XDP program\n");
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rc = ena_destroy_and_free_all_xdp_queues(adapter);
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if (rc)
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return rc;
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}
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prev_mtu = netdev->max_mtu;
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netdev->max_mtu = prog ? ENA_XDP_MAX_MTU : adapter->max_mtu;
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if (!old_bpf_prog)
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netif_info(adapter, drv, adapter->netdev,
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"XDP program is set, changing the max_mtu from %d to %d",
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prev_mtu, netdev->max_mtu);
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} else if (rc == ENA_XDP_CURRENT_MTU_TOO_LARGE) {
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netif_err(adapter, drv, adapter->netdev,
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"Failed to set xdp program, the current MTU (%d) is larger than the maximum allowed MTU (%lu) while xdp is on",
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netdev->mtu, ENA_XDP_MAX_MTU);
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NL_SET_ERR_MSG_MOD(bpf->extack,
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"Failed to set xdp program, the current MTU is larger than the maximum allowed MTU. Check the dmesg for more info");
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return -EINVAL;
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} else if (rc == ENA_XDP_NO_ENOUGH_QUEUES) {
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netif_err(adapter, drv, adapter->netdev,
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"Failed to set xdp program, the Rx/Tx channel count should be at most half of the maximum allowed channel count. The current queue count (%d), the maximal queue count (%d)\n",
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adapter->num_io_queues, adapter->max_num_io_queues);
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NL_SET_ERR_MSG_MOD(bpf->extack,
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"Failed to set xdp program, there is no enough space for allocating XDP queues, Check the dmesg for more info");
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return -EINVAL;
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}
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return 0;
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}
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/* This is the main xdp callback, it's used by the kernel to set/unset the xdp
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* program as well as to query the current xdp program id.
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*/
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int ena_xdp(struct net_device *netdev, struct netdev_bpf *bpf)
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{
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switch (bpf->command) {
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case XDP_SETUP_PROG:
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return ena_xdp_set(netdev, bpf);
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default:
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return -EINVAL;
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}
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return 0;
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}
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static int ena_clean_xdp_irq(struct ena_ring *tx_ring, u32 budget)
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{
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u32 total_done = 0;
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u16 next_to_clean;
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int tx_pkts = 0;
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u16 req_id;
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int rc;
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if (unlikely(!tx_ring))
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return 0;
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next_to_clean = tx_ring->next_to_clean;
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while (tx_pkts < budget) {
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struct ena_tx_buffer *tx_info;
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struct xdp_frame *xdpf;
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rc = ena_com_tx_comp_req_id_get(tx_ring->ena_com_io_cq,
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&req_id);
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if (rc) {
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if (unlikely(rc == -EINVAL))
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handle_invalid_req_id(tx_ring, req_id, NULL, true);
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break;
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}
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/* validate that the request id points to a valid xdp_frame */
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rc = validate_xdp_req_id(tx_ring, req_id);
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if (rc)
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break;
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tx_info = &tx_ring->tx_buffer_info[req_id];
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tx_info->last_jiffies = 0;
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xdpf = tx_info->xdpf;
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tx_info->xdpf = NULL;
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ena_unmap_tx_buff(tx_ring, tx_info);
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xdp_return_frame(xdpf);
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tx_pkts++;
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total_done += tx_info->tx_descs;
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tx_ring->free_ids[next_to_clean] = req_id;
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next_to_clean = ENA_TX_RING_IDX_NEXT(next_to_clean,
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tx_ring->ring_size);
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netif_dbg(tx_ring->adapter, tx_done, tx_ring->netdev,
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"tx_poll: q %d pkt #%d req_id %d\n", tx_ring->qid, tx_pkts, req_id);
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}
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tx_ring->next_to_clean = next_to_clean;
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ena_com_comp_ack(tx_ring->ena_com_io_sq, total_done);
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netif_dbg(tx_ring->adapter, tx_done, tx_ring->netdev,
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"tx_poll: q %d done. total pkts: %d\n",
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tx_ring->qid, tx_pkts);
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return tx_pkts;
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}
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/* This is the XDP napi callback. XDP queues use a separate napi callback
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* than Rx/Tx queues.
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*/
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int ena_xdp_io_poll(struct napi_struct *napi, int budget)
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{
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struct ena_napi *ena_napi = container_of(napi, struct ena_napi, napi);
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struct ena_ring *tx_ring;
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u32 work_done;
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int ret;
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tx_ring = ena_napi->tx_ring;
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if (!test_bit(ENA_FLAG_DEV_UP, &tx_ring->adapter->flags) ||
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test_bit(ENA_FLAG_TRIGGER_RESET, &tx_ring->adapter->flags)) {
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napi_complete_done(napi, 0);
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return 0;
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}
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work_done = ena_clean_xdp_irq(tx_ring, budget);
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/* If the device is about to reset or down, avoid unmask
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* the interrupt and return 0 so NAPI won't reschedule
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*/
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if (unlikely(!test_bit(ENA_FLAG_DEV_UP, &tx_ring->adapter->flags))) {
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napi_complete_done(napi, 0);
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ret = 0;
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} else if (budget > work_done) {
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ena_increase_stat(&tx_ring->tx_stats.napi_comp, 1,
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&tx_ring->syncp);
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if (napi_complete_done(napi, work_done))
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ena_unmask_interrupt(tx_ring, NULL);
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ena_update_ring_numa_node(tx_ring, NULL);
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ret = work_done;
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} else {
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ret = budget;
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}
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u64_stats_update_begin(&tx_ring->syncp);
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tx_ring->tx_stats.tx_poll++;
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u64_stats_update_end(&tx_ring->syncp);
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tx_ring->tx_stats.last_napi_jiffies = jiffies;
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return ret;
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}
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