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@ -61,6 +61,17 @@ struct tpacket_stats { |
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unsigned int tp_drops; |
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}; |
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struct tpacket_stats_v3 { |
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unsigned int tp_packets; |
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unsigned int tp_drops; |
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unsigned int tp_freeze_q_cnt; |
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}; |
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union tpacket_stats_u { |
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struct tpacket_stats stats1; |
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struct tpacket_stats_v3 stats3; |
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}; |
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struct tpacket_auxdata { |
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__u32 tp_status; |
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__u32 tp_len; |
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@ -78,6 +89,7 @@ struct tpacket_auxdata { |
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#define TP_STATUS_LOSING 0x4 |
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#define TP_STATUS_CSUMNOTREADY 0x8 |
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#define TP_STATUS_VLAN_VALID 0x10 /* auxdata has valid tp_vlan_tci */ |
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#define TP_STATUS_BLK_TMO 0x20 |
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/* Tx ring - header status */ |
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#define TP_STATUS_AVAILABLE 0x0 |
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@ -85,6 +97,9 @@ struct tpacket_auxdata { |
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#define TP_STATUS_SENDING 0x2 |
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#define TP_STATUS_WRONG_FORMAT 0x4 |
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/* Rx ring - feature request bits */ |
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#define TP_FT_REQ_FILL_RXHASH 0x1 |
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struct tpacket_hdr { |
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unsigned long tp_status; |
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unsigned int tp_len; |
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@ -111,11 +126,100 @@ struct tpacket2_hdr { |
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__u16 tp_padding; |
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}; |
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struct hdr_variant1 { |
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__u32 tp_rxhash; |
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__u32 tp_vlan_tci; |
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}; |
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struct tpacket3_hdr { |
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__u32 tp_next_offset; |
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__u32 tp_sec; |
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__u32 tp_nsec; |
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__u32 tp_snaplen; |
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__u32 tp_len; |
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__u32 tp_status; |
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__u16 tp_mac; |
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__u16 tp_net; |
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/* pkt_hdr variants */ |
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union { |
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struct hdr_variant1 hv1; |
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}; |
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}; |
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struct bd_ts { |
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unsigned int ts_sec; |
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union { |
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unsigned int ts_usec; |
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unsigned int ts_nsec; |
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}; |
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}; |
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struct hdr_v1 { |
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__u32 block_status; |
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__u32 num_pkts; |
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__u32 offset_to_first_pkt; |
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/* Number of valid bytes (including padding)
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* blk_len <= tp_block_size |
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*/ |
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__u32 blk_len; |
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/*
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* Quite a few uses of sequence number: |
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* 1. Make sure cache flush etc worked. |
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* Well, one can argue - why not use the increasing ts below? |
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* But look at 2. below first. |
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* 2. When you pass around blocks to other user space decoders, |
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* you can see which blk[s] is[are] outstanding etc. |
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* 3. Validate kernel code. |
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*/ |
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aligned_u64 seq_num; |
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/*
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* ts_last_pkt: |
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* |
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* Case 1. Block has 'N'(N >=1) packets and TMO'd(timed out) |
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* ts_last_pkt == 'time-stamp of last packet' and NOT the |
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* time when the timer fired and the block was closed. |
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* By providing the ts of the last packet we can absolutely |
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* guarantee that time-stamp wise, the first packet in the |
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* next block will never precede the last packet of the |
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* previous block. |
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* Case 2. Block has zero packets and TMO'd |
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* ts_last_pkt = time when the timer fired and the block |
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* was closed. |
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* Case 3. Block has 'N' packets and NO TMO. |
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* ts_last_pkt = time-stamp of the last pkt in the block. |
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* |
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* ts_first_pkt: |
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* Is always the time-stamp when the block was opened. |
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* Case a) ZERO packets |
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* No packets to deal with but atleast you know the |
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* time-interval of this block. |
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* Case b) Non-zero packets |
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* Use the ts of the first packet in the block. |
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* |
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*/ |
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struct bd_ts ts_first_pkt, ts_last_pkt; |
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}; |
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union bd_header_u { |
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struct hdr_v1 bh1; |
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}; |
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struct block_desc { |
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__u32 version; |
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__u32 offset_to_priv; |
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union bd_header_u hdr; |
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}; |
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#define TPACKET2_HDRLEN (TPACKET_ALIGN(sizeof(struct tpacket2_hdr)) + sizeof(struct sockaddr_ll)) |
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#define TPACKET3_HDRLEN (TPACKET_ALIGN(sizeof(struct tpacket3_hdr)) + sizeof(struct sockaddr_ll)) |
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enum tpacket_versions { |
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TPACKET_V1, |
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TPACKET_V2, |
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TPACKET_V3 |
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}; |
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/*
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@ -138,6 +242,21 @@ struct tpacket_req { |
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unsigned int tp_frame_nr; /* Total number of frames */ |
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}; |
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struct tpacket_req3 { |
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unsigned int tp_block_size; /* Minimal size of contiguous block */ |
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unsigned int tp_block_nr; /* Number of blocks */ |
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unsigned int tp_frame_size; /* Size of frame */ |
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unsigned int tp_frame_nr; /* Total number of frames */ |
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unsigned int tp_retire_blk_tov; /* timeout in msecs */ |
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unsigned int tp_sizeof_priv; /* offset to private data area */ |
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unsigned int tp_feature_req_word; |
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}; |
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union tpacket_req_u { |
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struct tpacket_req req; |
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struct tpacket_req3 req3; |
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}; |
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struct packet_mreq { |
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int mr_ifindex; |
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unsigned short mr_type; |
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