forked from Minki/linux
net: dev: Makes sure netif_rx() can be invoked in any context.
Dave suggested a while ago (eleven years by now) "Let's make netif_rx() work in all contexts and get rid of netif_rx_ni()". Eric agreed and pointed out that modern devices should use netif_receive_skb() to avoid the overhead. In the meantime someone added another variant, netif_rx_any_context(), which behaves as suggested. netif_rx() must be invoked with disabled bottom halves to ensure that pending softirqs, which were raised within the function, are handled. netif_rx_ni() can be invoked only from process context (bottom halves must be enabled) because the function handles pending softirqs without checking if bottom halves were disabled or not. netif_rx_any_context() invokes on the former functions by checking in_interrupts(). netif_rx() could be taught to handle both cases (disabled and enabled bottom halves) by simply disabling bottom halves while invoking netif_rx_internal(). The local_bh_enable() invocation will then invoke pending softirqs only if the BH-disable counter drops to zero. Eric is concerned about the overhead of BH-disable+enable especially in regard to the loopback driver. As critical as this driver is, it will receive a shortcut to avoid the additional overhead which is not needed. Add a local_bh_disable() section in netif_rx() to ensure softirqs are handled if needed. Provide __netif_rx() which does not disable BH and has a lockdep assert to ensure that interrupts are disabled. Use this shortcut in the loopback driver and in drivers/net/*.c. Make netif_rx_ni() and netif_rx_any_context() invoke netif_rx() so they can be removed once they are no more users left. Link: https://lkml.kernel.org/r/20100415.020246.218622820.davem@davemloft.net Signed-off-by: Sebastian Andrzej Siewior <bigeasy@linutronix.de> Reviewed-by: Eric Dumazet <edumazet@google.com> Reviewed-by: Toke Høiland-Jørgensen <toke@redhat.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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f234ae2947
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@ -2373,7 +2373,7 @@ static bool amt_membership_query_handler(struct amt_dev *amt,
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skb->pkt_type = PACKET_MULTICAST;
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skb->ip_summed = CHECKSUM_NONE;
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len = skb->len;
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if (netif_rx(skb) == NET_RX_SUCCESS) {
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if (__netif_rx(skb) == NET_RX_SUCCESS) {
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amt_update_gw_status(amt, AMT_STATUS_RECEIVED_QUERY, true);
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dev_sw_netstats_rx_add(amt->dev, len);
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} else {
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@ -2470,7 +2470,7 @@ report:
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skb->pkt_type = PACKET_MULTICAST;
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skb->ip_summed = CHECKSUM_NONE;
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len = skb->len;
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if (netif_rx(skb) == NET_RX_SUCCESS) {
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if (__netif_rx(skb) == NET_RX_SUCCESS) {
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amt_update_relay_status(tunnel, AMT_STATUS_RECEIVED_UPDATE,
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true);
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dev_sw_netstats_rx_add(amt->dev, len);
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@ -925,7 +925,7 @@ static int geneve_xmit_skb(struct sk_buff *skb, struct net_device *dev,
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}
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skb->protocol = eth_type_trans(skb, geneve->dev);
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netif_rx(skb);
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__netif_rx(skb);
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dst_release(&rt->dst);
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return -EMSGSIZE;
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}
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@ -1021,7 +1021,7 @@ static int geneve6_xmit_skb(struct sk_buff *skb, struct net_device *dev,
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}
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skb->protocol = eth_type_trans(skb, geneve->dev);
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netif_rx(skb);
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__netif_rx(skb);
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dst_release(dst);
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return -EMSGSIZE;
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}
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@ -207,7 +207,7 @@ static int gtp_rx(struct pdp_ctx *pctx, struct sk_buff *skb,
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dev_sw_netstats_rx_add(pctx->dev, skb->len);
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netif_rx(skb);
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__netif_rx(skb);
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return 0;
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err:
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@ -78,7 +78,7 @@ static netdev_tx_t loopback_xmit(struct sk_buff *skb,
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skb_orphan(skb);
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/* Before queueing this packet to netif_rx(),
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/* Before queueing this packet to __netif_rx(),
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* make sure dst is refcounted.
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*/
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skb_dst_force(skb);
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@ -86,7 +86,7 @@ static netdev_tx_t loopback_xmit(struct sk_buff *skb,
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skb->protocol = eth_type_trans(skb, dev);
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len = skb->len;
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if (likely(netif_rx(skb) == NET_RX_SUCCESS))
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if (likely(__netif_rx(skb) == NET_RX_SUCCESS))
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dev_lstats_add(dev, len);
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return NETDEV_TX_OK;
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@ -1033,7 +1033,7 @@ static enum rx_handler_result handle_not_macsec(struct sk_buff *skb)
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else
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nskb->pkt_type = PACKET_MULTICAST;
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netif_rx(nskb);
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__netif_rx(nskb);
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}
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continue;
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}
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@ -1056,7 +1056,7 @@ static enum rx_handler_result handle_not_macsec(struct sk_buff *skb)
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nskb->dev = ndev;
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if (netif_rx(nskb) == NET_RX_SUCCESS) {
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if (__netif_rx(nskb) == NET_RX_SUCCESS) {
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u64_stats_update_begin(&secy_stats->syncp);
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secy_stats->stats.InPktsUntagged++;
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u64_stats_update_end(&secy_stats->syncp);
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@ -1288,7 +1288,7 @@ nosci:
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macsec_reset_skb(nskb, macsec->secy.netdev);
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ret = netif_rx(nskb);
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ret = __netif_rx(nskb);
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if (ret == NET_RX_SUCCESS) {
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u64_stats_update_begin(&secy_stats->syncp);
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secy_stats->stats.InPktsUnknownSCI++;
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@ -410,7 +410,7 @@ static void macvlan_forward_source_one(struct sk_buff *skb,
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if (ether_addr_equal_64bits(eth_hdr(skb)->h_dest, dev->dev_addr))
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nskb->pkt_type = PACKET_HOST;
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ret = netif_rx(nskb);
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ret = __netif_rx(nskb);
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macvlan_count_rx(vlan, len, ret == NET_RX_SUCCESS, false);
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}
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@ -468,7 +468,7 @@ static rx_handler_result_t macvlan_handle_frame(struct sk_buff **pskb)
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/* forward to original port. */
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vlan = src;
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ret = macvlan_broadcast_one(skb, vlan, eth, 0) ?:
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netif_rx(skb);
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__netif_rx(skb);
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handle_res = RX_HANDLER_CONSUMED;
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goto out;
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}
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@ -225,7 +225,7 @@ static void mhi_net_dl_callback(struct mhi_device *mhi_dev,
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u64_stats_inc(&mhi_netdev->stats.rx_packets);
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u64_stats_add(&mhi_netdev->stats.rx_bytes, skb->len);
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u64_stats_update_end(&mhi_netdev->stats.rx_syncp);
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netif_rx(skb);
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__netif_rx(skb);
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}
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/* Refill if RX buffers queue becomes low */
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@ -119,7 +119,7 @@ static void ntb_netdev_rx_handler(struct ntb_transport_qp *qp, void *qp_data,
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skb->protocol = eth_type_trans(skb, ndev);
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skb->ip_summed = CHECKSUM_NONE;
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if (netif_rx(skb) == NET_RX_DROP) {
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if (__netif_rx(skb) == NET_RX_DROP) {
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ndev->stats.rx_errors++;
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ndev->stats.rx_dropped++;
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} else {
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@ -109,7 +109,7 @@ static int rionet_rx_clean(struct net_device *ndev)
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skb_put(rnet->rx_skb[i], RIO_MAX_MSG_SIZE);
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rnet->rx_skb[i]->protocol =
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eth_type_trans(rnet->rx_skb[i], ndev);
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error = netif_rx(rnet->rx_skb[i]);
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error = __netif_rx(rnet->rx_skb[i]);
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if (error == NET_RX_DROP) {
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ndev->stats.rx_dropped++;
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@ -872,7 +872,7 @@ printk("cm0: IP identification: %02x%02x fragment offset: %02x%02x\n", buffer[3
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/* datagram completed: send to upper level */
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skb_trim(skb, dlen);
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netif_rx(skb);
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__netif_rx(skb);
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stats->rx_bytes+=dlen;
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stats->rx_packets++;
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lp->rx_skb[ns] = NULL;
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@ -287,7 +287,7 @@ static int veth_forward_skb(struct net_device *dev, struct sk_buff *skb,
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{
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return __dev_forward_skb(dev, skb) ?: xdp ?
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veth_xdp_rx(rq, skb) :
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netif_rx(skb);
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__netif_rx(skb);
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}
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/* return true if the specified skb has chances of GRO aggregation
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@ -418,7 +418,7 @@ static int vrf_local_xmit(struct sk_buff *skb, struct net_device *dev,
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skb->protocol = eth_type_trans(skb, dev);
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if (likely(netif_rx(skb) == NET_RX_SUCCESS))
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if (likely(__netif_rx(skb) == NET_RX_SUCCESS))
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vrf_rx_stats(dev, len);
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else
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this_cpu_inc(dev->dstats->rx_drps);
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@ -2541,7 +2541,7 @@ static void vxlan_encap_bypass(struct sk_buff *skb, struct vxlan_dev *src_vxlan,
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tx_stats->tx_bytes += len;
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u64_stats_update_end(&tx_stats->syncp);
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if (netif_rx(skb) == NET_RX_SUCCESS) {
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if (__netif_rx(skb) == NET_RX_SUCCESS) {
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u64_stats_update_begin(&rx_stats->syncp);
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rx_stats->rx_packets++;
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rx_stats->rx_bytes += len;
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@ -3672,8 +3672,18 @@ u32 bpf_prog_run_generic_xdp(struct sk_buff *skb, struct xdp_buff *xdp,
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void generic_xdp_tx(struct sk_buff *skb, struct bpf_prog *xdp_prog);
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int do_xdp_generic(struct bpf_prog *xdp_prog, struct sk_buff *skb);
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int netif_rx(struct sk_buff *skb);
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int netif_rx_ni(struct sk_buff *skb);
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int netif_rx_any_context(struct sk_buff *skb);
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int __netif_rx(struct sk_buff *skb);
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static inline int netif_rx_ni(struct sk_buff *skb)
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{
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return netif_rx(skb);
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}
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static inline int netif_rx_any_context(struct sk_buff *skb)
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{
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return netif_rx(skb);
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}
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int netif_receive_skb(struct sk_buff *skb);
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int netif_receive_skb_core(struct sk_buff *skb);
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void netif_receive_skb_list_internal(struct list_head *head);
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@ -260,13 +260,6 @@ DEFINE_EVENT(net_dev_rx_verbose_template, netif_rx_entry,
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TP_ARGS(skb)
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);
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DEFINE_EVENT(net_dev_rx_verbose_template, netif_rx_ni_entry,
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TP_PROTO(const struct sk_buff *skb),
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TP_ARGS(skb)
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);
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DECLARE_EVENT_CLASS(net_dev_rx_exit_template,
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TP_PROTO(int ret),
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@ -312,13 +305,6 @@ DEFINE_EVENT(net_dev_rx_exit_template, netif_rx_exit,
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TP_ARGS(ret)
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);
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DEFINE_EVENT(net_dev_rx_exit_template, netif_rx_ni_exit,
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TP_PROTO(int ret),
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TP_ARGS(ret)
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);
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DEFINE_EVENT(net_dev_rx_exit_template, netif_receive_skb_list_exit,
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TP_PROTO(int ret),
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@ -4815,66 +4815,57 @@ static int netif_rx_internal(struct sk_buff *skb)
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return ret;
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}
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/**
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* __netif_rx - Slightly optimized version of netif_rx
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* @skb: buffer to post
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*
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* This behaves as netif_rx except that it does not disable bottom halves.
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* As a result this function may only be invoked from the interrupt context
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* (either hard or soft interrupt).
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*/
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int __netif_rx(struct sk_buff *skb)
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{
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int ret;
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lockdep_assert_once(hardirq_count() | softirq_count());
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trace_netif_rx_entry(skb);
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ret = netif_rx_internal(skb);
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trace_netif_rx_exit(ret);
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return ret;
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}
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EXPORT_SYMBOL(__netif_rx);
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/**
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* netif_rx - post buffer to the network code
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* @skb: buffer to post
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*
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* This function receives a packet from a device driver and queues it for
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* the upper (protocol) levels to process. It always succeeds. The buffer
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* may be dropped during processing for congestion control or by the
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* protocol layers.
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* the upper (protocol) levels to process via the backlog NAPI device. It
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* always succeeds. The buffer may be dropped during processing for
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* congestion control or by the protocol layers.
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* The network buffer is passed via the backlog NAPI device. Modern NIC
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* driver should use NAPI and GRO.
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* This function can used from any context.
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*
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* return values:
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* NET_RX_SUCCESS (no congestion)
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* NET_RX_DROP (packet was dropped)
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*
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*/
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int netif_rx(struct sk_buff *skb)
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{
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int ret;
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local_bh_disable();
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trace_netif_rx_entry(skb);
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ret = netif_rx_internal(skb);
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trace_netif_rx_exit(ret);
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local_bh_enable();
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return ret;
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}
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EXPORT_SYMBOL(netif_rx);
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int netif_rx_ni(struct sk_buff *skb)
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{
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int err;
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trace_netif_rx_ni_entry(skb);
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preempt_disable();
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err = netif_rx_internal(skb);
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if (local_softirq_pending())
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do_softirq();
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preempt_enable();
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trace_netif_rx_ni_exit(err);
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return err;
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}
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EXPORT_SYMBOL(netif_rx_ni);
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int netif_rx_any_context(struct sk_buff *skb)
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{
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/*
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* If invoked from contexts which do not invoke bottom half
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* processing either at return from interrupt or when softrqs are
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* reenabled, use netif_rx_ni() which invokes bottomhalf processing
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* directly.
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*/
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if (in_interrupt())
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return netif_rx(skb);
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else
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return netif_rx_ni(skb);
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}
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EXPORT_SYMBOL(netif_rx_any_context);
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static __latent_entropy void net_tx_action(struct softirq_action *h)
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{
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struct softnet_data *sd = this_cpu_ptr(&softnet_data);
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