443 lines
11 KiB
C
443 lines
11 KiB
C
// SPDX-License-Identifier: (GPL-2.0 OR MIT)
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/* Google virtual Ethernet (gve) driver
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*
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* Copyright (C) 2015-2019 Google, Inc.
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*/
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#include "gve.h"
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#include "gve_adminq.h"
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#include <linux/etherdevice.h>
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static void gve_rx_remove_from_block(struct gve_priv *priv, int queue_idx)
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{
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struct gve_notify_block *block =
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&priv->ntfy_blocks[gve_rx_idx_to_ntfy(priv, queue_idx)];
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block->rx = NULL;
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}
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static void gve_rx_free_ring(struct gve_priv *priv, int idx)
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{
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struct gve_rx_ring *rx = &priv->rx[idx];
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struct device *dev = &priv->pdev->dev;
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size_t bytes;
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u32 slots;
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gve_rx_remove_from_block(priv, idx);
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bytes = sizeof(struct gve_rx_desc) * priv->rx_desc_cnt;
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dma_free_coherent(dev, bytes, rx->desc.desc_ring, rx->desc.bus);
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rx->desc.desc_ring = NULL;
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dma_free_coherent(dev, sizeof(*rx->q_resources),
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rx->q_resources, rx->q_resources_bus);
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rx->q_resources = NULL;
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gve_unassign_qpl(priv, rx->data.qpl->id);
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rx->data.qpl = NULL;
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kvfree(rx->data.page_info);
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slots = rx->mask + 1;
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bytes = sizeof(*rx->data.data_ring) * slots;
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dma_free_coherent(dev, bytes, rx->data.data_ring,
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rx->data.data_bus);
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rx->data.data_ring = NULL;
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netif_dbg(priv, drv, priv->dev, "freed rx ring %d\n", idx);
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}
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static void gve_setup_rx_buffer(struct gve_rx_slot_page_info *page_info,
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struct gve_rx_data_slot *slot,
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dma_addr_t addr, struct page *page)
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{
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page_info->page = page;
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page_info->page_offset = 0;
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page_info->page_address = page_address(page);
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slot->qpl_offset = cpu_to_be64(addr);
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}
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static int gve_prefill_rx_pages(struct gve_rx_ring *rx)
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{
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struct gve_priv *priv = rx->gve;
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u32 slots;
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int i;
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/* Allocate one page per Rx queue slot. Each page is split into two
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* packet buffers, when possible we "page flip" between the two.
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*/
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slots = rx->mask + 1;
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rx->data.page_info = kvzalloc(slots *
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sizeof(*rx->data.page_info), GFP_KERNEL);
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if (!rx->data.page_info)
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return -ENOMEM;
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rx->data.qpl = gve_assign_rx_qpl(priv);
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for (i = 0; i < slots; i++) {
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struct page *page = rx->data.qpl->pages[i];
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dma_addr_t addr = i * PAGE_SIZE;
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gve_setup_rx_buffer(&rx->data.page_info[i],
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&rx->data.data_ring[i], addr, page);
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}
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return slots;
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}
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static void gve_rx_add_to_block(struct gve_priv *priv, int queue_idx)
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{
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u32 ntfy_idx = gve_rx_idx_to_ntfy(priv, queue_idx);
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struct gve_notify_block *block = &priv->ntfy_blocks[ntfy_idx];
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struct gve_rx_ring *rx = &priv->rx[queue_idx];
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block->rx = rx;
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rx->ntfy_id = ntfy_idx;
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}
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static int gve_rx_alloc_ring(struct gve_priv *priv, int idx)
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{
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struct gve_rx_ring *rx = &priv->rx[idx];
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struct device *hdev = &priv->pdev->dev;
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u32 slots, npages;
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int filled_pages;
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size_t bytes;
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int err;
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netif_dbg(priv, drv, priv->dev, "allocating rx ring\n");
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/* Make sure everything is zeroed to start with */
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memset(rx, 0, sizeof(*rx));
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rx->gve = priv;
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rx->q_num = idx;
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slots = priv->rx_pages_per_qpl;
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rx->mask = slots - 1;
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/* alloc rx data ring */
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bytes = sizeof(*rx->data.data_ring) * slots;
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rx->data.data_ring = dma_alloc_coherent(hdev, bytes,
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&rx->data.data_bus,
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GFP_KERNEL);
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if (!rx->data.data_ring)
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return -ENOMEM;
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filled_pages = gve_prefill_rx_pages(rx);
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if (filled_pages < 0) {
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err = -ENOMEM;
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goto abort_with_slots;
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}
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rx->fill_cnt = filled_pages;
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/* Ensure data ring slots (packet buffers) are visible. */
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dma_wmb();
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/* Alloc gve_queue_resources */
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rx->q_resources =
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dma_alloc_coherent(hdev,
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sizeof(*rx->q_resources),
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&rx->q_resources_bus,
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GFP_KERNEL);
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if (!rx->q_resources) {
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err = -ENOMEM;
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goto abort_filled;
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}
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netif_dbg(priv, drv, priv->dev, "rx[%d]->data.data_bus=%lx\n", idx,
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(unsigned long)rx->data.data_bus);
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/* alloc rx desc ring */
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bytes = sizeof(struct gve_rx_desc) * priv->rx_desc_cnt;
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npages = bytes / PAGE_SIZE;
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if (npages * PAGE_SIZE != bytes) {
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err = -EIO;
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goto abort_with_q_resources;
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}
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rx->desc.desc_ring = dma_alloc_coherent(hdev, bytes, &rx->desc.bus,
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GFP_KERNEL);
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if (!rx->desc.desc_ring) {
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err = -ENOMEM;
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goto abort_with_q_resources;
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}
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rx->mask = slots - 1;
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rx->cnt = 0;
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rx->desc.seqno = 1;
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gve_rx_add_to_block(priv, idx);
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return 0;
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abort_with_q_resources:
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dma_free_coherent(hdev, sizeof(*rx->q_resources),
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rx->q_resources, rx->q_resources_bus);
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rx->q_resources = NULL;
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abort_filled:
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kvfree(rx->data.page_info);
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abort_with_slots:
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bytes = sizeof(*rx->data.data_ring) * slots;
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dma_free_coherent(hdev, bytes, rx->data.data_ring, rx->data.data_bus);
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rx->data.data_ring = NULL;
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return err;
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}
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int gve_rx_alloc_rings(struct gve_priv *priv)
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{
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int err = 0;
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int i;
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for (i = 0; i < priv->rx_cfg.num_queues; i++) {
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err = gve_rx_alloc_ring(priv, i);
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if (err) {
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netif_err(priv, drv, priv->dev,
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"Failed to alloc rx ring=%d: err=%d\n",
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i, err);
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break;
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}
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}
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/* Unallocate if there was an error */
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if (err) {
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int j;
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for (j = 0; j < i; j++)
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gve_rx_free_ring(priv, j);
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}
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return err;
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}
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void gve_rx_free_rings(struct gve_priv *priv)
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{
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int i;
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for (i = 0; i < priv->rx_cfg.num_queues; i++)
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gve_rx_free_ring(priv, i);
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}
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void gve_rx_write_doorbell(struct gve_priv *priv, struct gve_rx_ring *rx)
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{
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u32 db_idx = be32_to_cpu(rx->q_resources->db_index);
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iowrite32be(rx->fill_cnt, &priv->db_bar2[db_idx]);
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}
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static enum pkt_hash_types gve_rss_type(__be16 pkt_flags)
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{
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if (likely(pkt_flags & (GVE_RXF_TCP | GVE_RXF_UDP)))
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return PKT_HASH_TYPE_L4;
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if (pkt_flags & (GVE_RXF_IPV4 | GVE_RXF_IPV6))
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return PKT_HASH_TYPE_L3;
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return PKT_HASH_TYPE_L2;
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}
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static struct sk_buff *gve_rx_copy(struct net_device *dev,
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struct napi_struct *napi,
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struct gve_rx_slot_page_info *page_info,
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u16 len)
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{
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struct sk_buff *skb = napi_alloc_skb(napi, len);
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void *va = page_info->page_address + GVE_RX_PAD +
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page_info->page_offset;
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if (unlikely(!skb))
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return NULL;
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__skb_put(skb, len);
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skb_copy_to_linear_data(skb, va, len);
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skb->protocol = eth_type_trans(skb, dev);
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return skb;
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}
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static struct sk_buff *gve_rx_add_frags(struct net_device *dev,
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struct napi_struct *napi,
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struct gve_rx_slot_page_info *page_info,
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u16 len)
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{
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struct sk_buff *skb = napi_get_frags(napi);
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if (unlikely(!skb))
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return NULL;
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skb_add_rx_frag(skb, 0, page_info->page,
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page_info->page_offset +
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GVE_RX_PAD, len, PAGE_SIZE / 2);
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return skb;
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}
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static void gve_rx_flip_buff(struct gve_rx_slot_page_info *page_info,
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struct gve_rx_data_slot *data_ring)
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{
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u64 addr = be64_to_cpu(data_ring->qpl_offset);
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page_info->page_offset ^= PAGE_SIZE / 2;
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addr ^= PAGE_SIZE / 2;
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data_ring->qpl_offset = cpu_to_be64(addr);
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}
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static bool gve_rx(struct gve_rx_ring *rx, struct gve_rx_desc *rx_desc,
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netdev_features_t feat, u32 idx)
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{
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struct gve_rx_slot_page_info *page_info;
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struct gve_priv *priv = rx->gve;
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struct napi_struct *napi = &priv->ntfy_blocks[rx->ntfy_id].napi;
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struct net_device *dev = priv->dev;
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struct sk_buff *skb;
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int pagecount;
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u16 len;
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/* drop this packet */
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if (unlikely(rx_desc->flags_seq & GVE_RXF_ERR))
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return true;
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len = be16_to_cpu(rx_desc->len) - GVE_RX_PAD;
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page_info = &rx->data.page_info[idx];
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dma_sync_single_for_cpu(&priv->pdev->dev, rx->data.qpl->page_buses[idx],
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PAGE_SIZE, DMA_FROM_DEVICE);
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/* gvnic can only receive into registered segments. If the buffer
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* can't be recycled, our only choice is to copy the data out of
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* it so that we can return it to the device.
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*/
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if (PAGE_SIZE == 4096) {
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if (len <= priv->rx_copybreak) {
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/* Just copy small packets */
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skb = gve_rx_copy(dev, napi, page_info, len);
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goto have_skb;
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}
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if (unlikely(!gve_can_recycle_pages(dev))) {
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skb = gve_rx_copy(dev, napi, page_info, len);
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goto have_skb;
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}
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pagecount = page_count(page_info->page);
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if (pagecount == 1) {
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/* No part of this page is used by any SKBs; we attach
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* the page fragment to a new SKB and pass it up the
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* stack.
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*/
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skb = gve_rx_add_frags(dev, napi, page_info, len);
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if (!skb)
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return true;
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/* Make sure the kernel stack can't release the page */
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get_page(page_info->page);
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/* "flip" to other packet buffer on this page */
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gve_rx_flip_buff(page_info, &rx->data.data_ring[idx]);
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} else if (pagecount >= 2) {
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/* We have previously passed the other half of this
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* page up the stack, but it has not yet been freed.
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*/
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skb = gve_rx_copy(dev, napi, page_info, len);
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} else {
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WARN(pagecount < 1, "Pagecount should never be < 1");
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return false;
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}
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} else {
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skb = gve_rx_copy(dev, napi, page_info, len);
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}
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have_skb:
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/* We didn't manage to allocate an skb but we haven't had any
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* reset worthy failures.
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*/
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if (!skb)
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return true;
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if (likely(feat & NETIF_F_RXCSUM)) {
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/* NIC passes up the partial sum */
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if (rx_desc->csum)
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skb->ip_summed = CHECKSUM_COMPLETE;
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else
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skb->ip_summed = CHECKSUM_NONE;
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skb->csum = csum_unfold(rx_desc->csum);
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}
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/* parse flags & pass relevant info up */
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if (likely(feat & NETIF_F_RXHASH) &&
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gve_needs_rss(rx_desc->flags_seq))
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skb_set_hash(skb, be32_to_cpu(rx_desc->rss_hash),
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gve_rss_type(rx_desc->flags_seq));
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if (skb_is_nonlinear(skb))
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napi_gro_frags(napi);
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else
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napi_gro_receive(napi, skb);
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return true;
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}
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static bool gve_rx_work_pending(struct gve_rx_ring *rx)
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{
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struct gve_rx_desc *desc;
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__be16 flags_seq;
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u32 next_idx;
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next_idx = rx->cnt & rx->mask;
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desc = rx->desc.desc_ring + next_idx;
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flags_seq = desc->flags_seq;
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/* Make sure we have synchronized the seq no with the device */
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smp_rmb();
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return (GVE_SEQNO(flags_seq) == rx->desc.seqno);
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}
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bool gve_clean_rx_done(struct gve_rx_ring *rx, int budget,
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netdev_features_t feat)
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{
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struct gve_priv *priv = rx->gve;
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struct gve_rx_desc *desc;
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u32 cnt = rx->cnt;
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u32 idx = cnt & rx->mask;
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u32 work_done = 0;
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u64 bytes = 0;
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desc = rx->desc.desc_ring + idx;
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while ((GVE_SEQNO(desc->flags_seq) == rx->desc.seqno) &&
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work_done < budget) {
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netif_info(priv, rx_status, priv->dev,
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"[%d] idx=%d desc=%p desc->flags_seq=0x%x\n",
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rx->q_num, idx, desc, desc->flags_seq);
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netif_info(priv, rx_status, priv->dev,
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"[%d] seqno=%d rx->desc.seqno=%d\n",
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rx->q_num, GVE_SEQNO(desc->flags_seq),
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rx->desc.seqno);
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bytes += be16_to_cpu(desc->len) - GVE_RX_PAD;
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if (!gve_rx(rx, desc, feat, idx))
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gve_schedule_reset(priv);
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cnt++;
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idx = cnt & rx->mask;
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desc = rx->desc.desc_ring + idx;
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rx->desc.seqno = gve_next_seqno(rx->desc.seqno);
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work_done++;
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}
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if (!work_done)
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return false;
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u64_stats_update_begin(&rx->statss);
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rx->rpackets += work_done;
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rx->rbytes += bytes;
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u64_stats_update_end(&rx->statss);
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rx->cnt = cnt;
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rx->fill_cnt += work_done;
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gve_rx_write_doorbell(priv, rx);
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return gve_rx_work_pending(rx);
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}
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bool gve_rx_poll(struct gve_notify_block *block, int budget)
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{
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struct gve_rx_ring *rx = block->rx;
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netdev_features_t feat;
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bool repoll = false;
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feat = block->napi.dev->features;
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/* If budget is 0, do all the work */
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if (budget == 0)
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budget = INT_MAX;
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if (budget > 0)
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repoll |= gve_clean_rx_done(rx, budget, feat);
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else
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repoll |= gve_rx_work_pending(rx);
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return repoll;
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}
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