forked from Minki/linux
igb trivial annotations
Signed-off-by: Al Viro <viro@zeniv.linux.org.uk> Signed-off-by: Jeff Garzik <jeff@garzik.org>
This commit is contained in:
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7deb07b1be
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6d8126f988
@ -61,28 +61,28 @@
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/* Receive Descriptor - Advanced */
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union e1000_adv_rx_desc {
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struct {
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u64 pkt_addr; /* Packet buffer address */
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u64 hdr_addr; /* Header buffer address */
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__le64 pkt_addr; /* Packet buffer address */
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__le64 hdr_addr; /* Header buffer address */
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} read;
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struct {
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struct {
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struct {
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u16 pkt_info; /* RSS type, Packet type */
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u16 hdr_info; /* Split Header,
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__le16 pkt_info; /* RSS type, Packet type */
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__le16 hdr_info; /* Split Header,
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* header buffer length */
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} lo_dword;
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union {
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u32 rss; /* RSS Hash */
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__le32 rss; /* RSS Hash */
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struct {
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u16 ip_id; /* IP id */
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u16 csum; /* Packet Checksum */
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__le16 ip_id; /* IP id */
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__le16 csum; /* Packet Checksum */
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} csum_ip;
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} hi_dword;
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} lower;
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struct {
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u32 status_error; /* ext status/error */
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u16 length; /* Packet length */
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u16 vlan; /* VLAN tag */
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__le32 status_error; /* ext status/error */
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__le16 length; /* Packet length */
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__le16 vlan; /* VLAN tag */
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} upper;
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} wb; /* writeback */
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};
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@ -97,14 +97,14 @@ union e1000_adv_rx_desc {
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/* Transmit Descriptor - Advanced */
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union e1000_adv_tx_desc {
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struct {
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u64 buffer_addr; /* Address of descriptor's data buf */
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u32 cmd_type_len;
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u32 olinfo_status;
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__le64 buffer_addr; /* Address of descriptor's data buf */
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__le32 cmd_type_len;
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__le32 olinfo_status;
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} read;
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struct {
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u64 rsvd; /* Reserved */
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u32 nxtseq_seed;
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u32 status;
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__le64 rsvd; /* Reserved */
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__le32 nxtseq_seed;
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__le32 status;
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} wb;
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};
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@ -119,10 +119,10 @@ union e1000_adv_tx_desc {
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/* Context descriptors */
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struct e1000_adv_tx_context_desc {
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u32 vlan_macip_lens;
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u32 seqnum_seed;
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u32 type_tucmd_mlhl;
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u32 mss_l4len_idx;
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__le32 vlan_macip_lens;
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__le32 seqnum_seed;
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__le32 type_tucmd_mlhl;
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__le32 mss_l4len_idx;
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};
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#define E1000_ADVTXD_MACLEN_SHIFT 9 /* Adv ctxt desc mac len shift */
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@ -143,35 +143,35 @@ enum e1000_fc_type {
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/* Receive Descriptor */
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struct e1000_rx_desc {
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u64 buffer_addr; /* Address of the descriptor's data buffer */
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u16 length; /* Length of data DMAed into data buffer */
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u16 csum; /* Packet checksum */
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__le64 buffer_addr; /* Address of the descriptor's data buffer */
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__le16 length; /* Length of data DMAed into data buffer */
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__le16 csum; /* Packet checksum */
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u8 status; /* Descriptor status */
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u8 errors; /* Descriptor Errors */
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u16 special;
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__le16 special;
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};
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/* Receive Descriptor - Extended */
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union e1000_rx_desc_extended {
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struct {
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u64 buffer_addr;
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u64 reserved;
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__le64 buffer_addr;
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__le64 reserved;
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} read;
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struct {
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struct {
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u32 mrq; /* Multiple Rx Queues */
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__le32 mrq; /* Multiple Rx Queues */
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union {
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u32 rss; /* RSS Hash */
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__le32 rss; /* RSS Hash */
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struct {
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u16 ip_id; /* IP id */
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u16 csum; /* Packet Checksum */
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__le16 ip_id; /* IP id */
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__le16 csum; /* Packet Checksum */
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} csum_ip;
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} hi_dword;
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} lower;
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struct {
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u32 status_error; /* ext status/error */
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u16 length;
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u16 vlan; /* VLAN tag */
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__le32 status_error; /* ext status/error */
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__le16 length;
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__le16 vlan; /* VLAN tag */
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} upper;
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} wb; /* writeback */
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};
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@ -181,49 +181,49 @@ union e1000_rx_desc_extended {
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union e1000_rx_desc_packet_split {
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struct {
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/* one buffer for protocol header(s), three data buffers */
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u64 buffer_addr[MAX_PS_BUFFERS];
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__le64 buffer_addr[MAX_PS_BUFFERS];
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} read;
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struct {
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struct {
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u32 mrq; /* Multiple Rx Queues */
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__le32 mrq; /* Multiple Rx Queues */
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union {
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u32 rss; /* RSS Hash */
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__le32 rss; /* RSS Hash */
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struct {
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u16 ip_id; /* IP id */
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u16 csum; /* Packet Checksum */
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__le16 ip_id; /* IP id */
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__le16 csum; /* Packet Checksum */
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} csum_ip;
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} hi_dword;
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} lower;
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struct {
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u32 status_error; /* ext status/error */
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u16 length0; /* length of buffer 0 */
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u16 vlan; /* VLAN tag */
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__le32 status_error; /* ext status/error */
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__le16 length0; /* length of buffer 0 */
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__le16 vlan; /* VLAN tag */
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} middle;
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struct {
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u16 header_status;
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u16 length[3]; /* length of buffers 1-3 */
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__le16 header_status;
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__le16 length[3]; /* length of buffers 1-3 */
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} upper;
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u64 reserved;
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__le64 reserved;
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} wb; /* writeback */
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};
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/* Transmit Descriptor */
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struct e1000_tx_desc {
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u64 buffer_addr; /* Address of the descriptor's data buffer */
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__le64 buffer_addr; /* Address of the descriptor's data buffer */
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union {
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u32 data;
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__le32 data;
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struct {
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u16 length; /* Data buffer length */
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__le16 length; /* Data buffer length */
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u8 cso; /* Checksum offset */
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u8 cmd; /* Descriptor control */
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} flags;
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} lower;
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union {
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u32 data;
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__le32 data;
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struct {
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u8 status; /* Descriptor status */
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u8 css; /* Checksum start */
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u16 special;
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__le16 special;
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} fields;
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} upper;
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};
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@ -231,49 +231,49 @@ struct e1000_tx_desc {
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/* Offload Context Descriptor */
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struct e1000_context_desc {
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union {
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u32 ip_config;
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__le32 ip_config;
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struct {
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u8 ipcss; /* IP checksum start */
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u8 ipcso; /* IP checksum offset */
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u16 ipcse; /* IP checksum end */
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__le16 ipcse; /* IP checksum end */
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} ip_fields;
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} lower_setup;
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union {
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u32 tcp_config;
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__le32 tcp_config;
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struct {
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u8 tucss; /* TCP checksum start */
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u8 tucso; /* TCP checksum offset */
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u16 tucse; /* TCP checksum end */
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__le16 tucse; /* TCP checksum end */
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} tcp_fields;
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} upper_setup;
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u32 cmd_and_length;
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__le32 cmd_and_length;
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union {
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u32 data;
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__le32 data;
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struct {
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u8 status; /* Descriptor status */
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u8 hdr_len; /* Header length */
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u16 mss; /* Maximum segment size */
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__le16 mss; /* Maximum segment size */
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} fields;
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} tcp_seg_setup;
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};
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/* Offload data descriptor */
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struct e1000_data_desc {
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u64 buffer_addr; /* Address of the descriptor's buffer address */
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__le64 buffer_addr; /* Address of the descriptor's buffer address */
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union {
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u32 data;
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__le32 data;
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struct {
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u16 length; /* Data buffer length */
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__le16 length; /* Data buffer length */
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u8 typ_len_ext;
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u8 cmd;
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} flags;
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} lower;
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union {
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u32 data;
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__le32 data;
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struct {
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u8 status; /* Descriptor status */
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u8 popts; /* Packet Options */
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u16 special;
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__le16 special;
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} fields;
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} upper;
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};
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@ -3254,6 +3254,13 @@ quit_polling:
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return 1;
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}
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static inline u32 get_head(struct igb_ring *tx_ring)
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{
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void *end = (struct e1000_tx_desc *)tx_ring->desc + tx_ring->count;
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return le32_to_cpu(*(volatile __le32 *)end);
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}
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/**
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* igb_clean_tx_irq - Reclaim resources after transmit completes
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* @adapter: board private structure
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@ -3275,9 +3282,7 @@ static bool igb_clean_tx_irq(struct igb_adapter *adapter,
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unsigned int total_bytes = 0, total_packets = 0;
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rmb();
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head = *(volatile u32 *)((struct e1000_tx_desc *)tx_ring->desc
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+ tx_ring->count);
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head = le32_to_cpu(head);
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head = get_head(tx_ring);
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i = tx_ring->next_to_clean;
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while (1) {
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while (i != head) {
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@ -3312,9 +3317,7 @@ static bool igb_clean_tx_irq(struct igb_adapter *adapter,
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}
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oldhead = head;
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rmb();
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head = *(volatile u32 *)((struct e1000_tx_desc *)tx_ring->desc
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+ tx_ring->count);
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head = le32_to_cpu(head);
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head = get_head(tx_ring);
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if (head == oldhead)
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goto done_cleaning;
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} /* while (1) */
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@ -3388,7 +3391,7 @@ done_cleaning:
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* @vlan: descriptor vlan field as written by hardware (no le/be conversion)
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* @skb: pointer to sk_buff to be indicated to stack
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**/
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static void igb_receive_skb(struct igb_adapter *adapter, u8 status, u16 vlan,
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static void igb_receive_skb(struct igb_adapter *adapter, u8 status, __le16 vlan,
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struct sk_buff *skb)
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{
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if (adapter->vlgrp && (status & E1000_RXD_STAT_VP))
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