qede: Add basic network device support
This patch includes the basic Rx/Tx support for the driver [although carrier will still never be turned on]. Following this patch the driver registers a network device, initializes it and prepares it for traffic. Signed-off-by: Sudarsana Kalluru <Sudarsana.Kalluru@qlogic.com> Signed-off-by: Yuval Mintz <Yuval.Mintz@qlogic.com> Signed-off-by: Ariel Elior <Ariel.Elior@qlogic.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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@ -51,6 +51,7 @@ struct qede_dev {
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#define QEDE_MAX_TSS_CNT(edev) ((edev)->dev_info.num_queues * \
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#define QEDE_MAX_TSS_CNT(edev) ((edev)->dev_info.num_queues * \
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(edev)->dev_info.num_tc)
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(edev)->dev_info.num_tc)
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struct qede_fastpath *fp_array;
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u16 num_rss;
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u16 num_rss;
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u8 num_tc;
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u8 num_tc;
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#define QEDE_RSS_CNT(edev) ((edev)->num_rss)
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#define QEDE_RSS_CNT(edev) ((edev)->num_rss)
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@ -58,6 +59,9 @@ struct qede_dev {
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(edev)->num_tc)
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(edev)->num_tc)
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#define QEDE_TSS_IDX(edev, txqidx) ((txqidx) % (edev)->num_rss)
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#define QEDE_TSS_IDX(edev, txqidx) ((txqidx) % (edev)->num_rss)
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#define QEDE_TC_IDX(edev, txqidx) ((txqidx) / (edev)->num_rss)
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#define QEDE_TC_IDX(edev, txqidx) ((txqidx) / (edev)->num_rss)
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#define QEDE_TX_QUEUE(edev, txqidx) \
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(&(edev)->fp_array[QEDE_TSS_IDX((edev), (txqidx))].txqs[QEDE_TC_IDX( \
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(edev), (txqidx))])
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struct qed_int_info int_info;
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struct qed_int_info int_info;
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unsigned char primary_mac[ETH_ALEN];
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unsigned char primary_mac[ETH_ALEN];
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@ -65,9 +69,133 @@ struct qede_dev {
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/* Smaller private varaiant of the RTNL lock */
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/* Smaller private varaiant of the RTNL lock */
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struct mutex qede_lock;
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struct mutex qede_lock;
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u32 state; /* Protected by qede_lock */
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u32 state; /* Protected by qede_lock */
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u16 rx_buf_size;
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/* L2 header size + 2*VLANs (8 bytes) + LLC SNAP (8 bytes) */
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#define ETH_OVERHEAD (ETH_HLEN + 8 + 8)
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/* Max supported alignment is 256 (8 shift)
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* minimal alignment shift 6 is optimal for 57xxx HW performance
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*/
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#define QEDE_RX_ALIGN_SHIFT max(6, min(8, L1_CACHE_SHIFT))
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/* We assume skb_build() uses sizeof(struct skb_shared_info) bytes
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* at the end of skb->data, to avoid wasting a full cache line.
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* This reduces memory use (skb->truesize).
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*/
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#define QEDE_FW_RX_ALIGN_END \
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max_t(u64, 1UL << QEDE_RX_ALIGN_SHIFT, \
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SKB_DATA_ALIGN(sizeof(struct skb_shared_info)))
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struct qed_update_vport_rss_params rss_params;
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u16 q_num_rx_buffers; /* Must be a power of two */
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u16 q_num_tx_buffers; /* Must be a power of two */
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};
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enum QEDE_STATE {
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QEDE_STATE_CLOSED,
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QEDE_STATE_OPEN,
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};
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#define HILO_U64(hi, lo) ((((u64)(hi)) << 32) + (lo))
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#define MAX_NUM_TC 8
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#define MAX_NUM_PRI 8
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/* The driver supports the new build_skb() API:
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* RX ring buffer contains pointer to kmalloc() data only,
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* skb are built only after the frame was DMA-ed.
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*/
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struct sw_rx_data {
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u8 *data;
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DEFINE_DMA_UNMAP_ADDR(mapping);
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};
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struct qede_rx_queue {
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__le16 *hw_cons_ptr;
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struct sw_rx_data *sw_rx_ring;
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u16 sw_rx_cons;
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u16 sw_rx_prod;
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struct qed_chain rx_bd_ring;
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struct qed_chain rx_comp_ring;
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void __iomem *hw_rxq_prod_addr;
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int rx_buf_size;
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u16 num_rx_buffers;
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u16 rxq_id;
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u64 rx_hw_errors;
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u64 rx_alloc_errors;
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};
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union db_prod {
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struct eth_db_data data;
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u32 raw;
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};
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struct sw_tx_bd {
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struct sk_buff *skb;
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u8 flags;
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/* Set on the first BD descriptor when there is a split BD */
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#define QEDE_TSO_SPLIT_BD BIT(0)
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};
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struct qede_tx_queue {
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int index; /* Queue index */
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__le16 *hw_cons_ptr;
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struct sw_tx_bd *sw_tx_ring;
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u16 sw_tx_cons;
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u16 sw_tx_prod;
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struct qed_chain tx_pbl;
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void __iomem *doorbell_addr;
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union db_prod tx_db;
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u16 num_tx_buffers;
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};
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#define BD_UNMAP_ADDR(bd) HILO_U64(le32_to_cpu((bd)->addr.hi), \
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le32_to_cpu((bd)->addr.lo))
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#define BD_SET_UNMAP_ADDR_LEN(bd, maddr, len) \
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do { \
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(bd)->addr.hi = cpu_to_le32(upper_32_bits(maddr)); \
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(bd)->addr.lo = cpu_to_le32(lower_32_bits(maddr)); \
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(bd)->nbytes = cpu_to_le16(len); \
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} while (0)
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#define BD_UNMAP_LEN(bd) (le16_to_cpu((bd)->nbytes))
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struct qede_fastpath {
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struct qede_dev *edev;
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u8 rss_id;
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struct napi_struct napi;
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struct qed_sb_info *sb_info;
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struct qede_rx_queue *rxq;
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struct qede_tx_queue *txqs;
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#define VEC_NAME_SIZE (sizeof(((struct net_device *)0)->name) + 8)
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char name[VEC_NAME_SIZE];
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};
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};
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/* Debug print definitions */
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/* Debug print definitions */
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#define DP_NAME(edev) ((edev)->ndev->name)
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#define DP_NAME(edev) ((edev)->ndev->name)
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#define XMIT_PLAIN 0
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#define XMIT_L4_CSUM BIT(0)
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#define XMIT_LSO BIT(1)
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#define XMIT_ENC BIT(2)
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#define QEDE_CSUM_ERROR BIT(0)
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#define QEDE_CSUM_UNNECESSARY BIT(1)
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#define RX_RING_SIZE_POW 13
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#define RX_RING_SIZE BIT(RX_RING_SIZE_POW)
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#define NUM_RX_BDS_MAX (RX_RING_SIZE - 1)
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#define NUM_RX_BDS_MIN 128
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#define NUM_RX_BDS_DEF NUM_RX_BDS_MAX
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#define TX_RING_SIZE_POW 13
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#define TX_RING_SIZE BIT(TX_RING_SIZE_POW)
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#define NUM_TX_BDS_MAX (TX_RING_SIZE - 1)
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#define NUM_TX_BDS_MIN 128
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#define NUM_TX_BDS_DEF NUM_TX_BDS_MAX
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#define for_each_rss(i) for (i = 0; i < edev->num_rss; i++)
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#endif /* _QEDE_H_ */
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#endif /* _QEDE_H_ */
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