/drivers/dca/

s, like Main CPSW0 on K3 J721E SoC or future CPSW3g on K3 AM64x SoC. Hence DMA channels are common/shared for all ext Ports and the RX/TX NAPI and DMA processing going to be assigned to first available netdev this patch: - ensures all RX descriptors fields are initialized; - adds synchronization for TX DMA push/pop operation (locking) as Networking core locks are not enough any more; - updates TX bql processing for every packet in am65_cpsw_nuss_tx_compl_packets() as every completed TX skb can have different ndev assigned (come from different netdevs). To avoid performance issues for existing one-port CPSW2g devices the above changes are done only for multi-port devices by splitting xmit path for one-port and multi-port devices. Signed-off-by: Grygorii Strashko Reviewed-by: Jesse Brandeburg Signed-off-by: Jakub Kicinski --- drivers/net/ethernet/ti/am65-cpsw-nuss.c | 141 +++++++++++++++++++++++-------- drivers/net/ethernet/ti/am65-cpsw-nuss.h | 1 + 2 files changed, 108 insertions(+), 34 deletions(-) (limited to 'drivers/net/ethernet/ti') diff --git a/drivers/net/ethernet/ti/am65-cpsw-nuss.c b/drivers/net/ethernet/ti/am65-cpsw-nuss.c index 2aa0c2acd059..86bfd253e295 100644 --- a/drivers/net/ethernet/ti/am65-cpsw-nuss.c +++ b/drivers/net/ethernet/ti/am65-cpsw-nuss.c @@ -375,7 +375,7 @@ static int am65_cpsw_nuss_rx_push(struct am65_cpsw_common *common, cppi5_hdesc_init(desc_rx, CPPI5_INFO0_HDESC_EPIB_PRESENT, AM65_CPSW_NAV_PS_DATA_SIZE); - cppi5_hdesc_attach_buf(desc_rx, 0, 0, buf_dma, skb_tailroom(skb)); + cppi5_hdesc_attach_buf(desc_rx, buf_dma, skb_tailroom(skb), buf_dma, skb_tailroom(skb)); swdata = cppi5_hdesc_get_swdata(desc_rx); *((void **)swdata) = skb; @@ -911,10 +911,57 @@ static void am65_cpsw_nuss_tx_cleanup(void *data, dma_addr_t desc_dma) dev_kfree_skb_any(skb); } +static struct sk_buff * +am65_cpsw_nuss_tx_compl_packet(struct am65_cpsw_tx_chn *tx_chn, + dma_addr_t desc_dma) +{ + struct am65_cpsw_ndev_priv *ndev_priv; + struct am65_cpsw_ndev_stats *stats; + struct cppi5_host_desc_t *desc_tx; + struct net_device *ndev; + struct sk_buff *skb; + void **swdata; + + desc_tx = k3_cppi_desc_pool_dma2virt(tx_chn->desc_pool, + desc_dma); + swdata = cppi5_hdesc_get_swdata(desc_tx); + skb = *(swdata); + am65_cpsw_nuss_xmit_free(tx_chn, tx_chn->common->dev, desc_tx); + + ndev = skb->dev; + + am65_cpts_tx_timestamp(tx_chn->common->cpts, skb); + + ndev_priv = netdev_priv(ndev); + stats = this_cpu_ptr(ndev_priv->stats); + u64_stats_update_begin(&stats->syncp); + stats->tx_packets++; + stats->tx_bytes += skb->len; + u64_stats_update_end(&stats->syncp); + + return skb; +} + +static void am65_cpsw_nuss_tx_wake(struct am65_cpsw_tx_chn *tx_chn, struct net_device *ndev, + struct netdev_queue *netif_txq) +{ + if (netif_tx_queue_stopped(netif_txq)) { + /* Check whether the queue is stopped due to stalled + * tx dma, if the queue is stopped then wake the queue + * as we have free desc for tx + */ + __netif_tx_lock(netif_txq, smp_processor_id()); + if (netif_running(ndev) && + (k3_cppi_desc_pool_avail(tx_chn->desc_pool) >= MAX_SKB_FRAGS)) + netif_tx_wake_queue(netif_txq); + + __netif_tx_unlock(netif_txq); + } +} + static int am65_cpsw_nuss_tx_compl_packets(struct am65_cpsw_comm