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MINOR: quic: adjust quic CID derive API
ODCID are never stored in the CID tree. Instead, we store our generated CID which is directly derived from the CID using a hash function. This operation is done via quic_derive_cid(). Previously, generated CID was returned as a 64-bits integer. However, this is cumbersome to convert as an array of bytes which is the most common CID representation. Adjust this by modifying return type to a quic_cid struct. This should be backported up to 2.7.
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@ -674,6 +674,8 @@ int quic_set_app_ops(struct quic_conn *qc, const unsigned char *alpn, size_t alp
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int qc_check_dcid(struct quic_conn *qc, unsigned char *dcid, size_t dcid_len);
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int quic_get_dgram_dcid(unsigned char *buf, const unsigned char *end,
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unsigned char **dcid, size_t *dcid_len);
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struct quic_cid quic_derive_cid(const struct quic_cid *orig,
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const struct sockaddr_storage *addr);
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int qc_send_mux(struct quic_conn *qc, struct list *frms);
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void qc_notify_close(struct quic_conn *qc);
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@ -3910,16 +3910,18 @@ static int quic_stateless_reset_token_init(struct quic_connection_id *conn_id)
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/* Generate a CID directly derived from <orig> CID and <addr> address. The CID
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* is then marked with the current thread ID.
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*
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* Returns a new 64-bits CID value.
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* Returns the derived CID.
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*/
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static uint64_t quic_derive_cid(const struct quic_cid *orig,
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struct quic_cid quic_derive_cid(const struct quic_cid *orig,
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const struct sockaddr_storage *addr)
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{
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struct quic_cid cid;
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const struct sockaddr_in *in;
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const struct sockaddr_in6 *in6;
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char *buf = trash.area;
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size_t idx = 0;
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uint64_t hash;
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int i;
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/* Prepare buffer for hash using original CID first. */
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memcpy(buf, orig->data, orig->len);
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@ -3948,7 +3950,6 @@ static uint64_t quic_derive_cid(const struct quic_cid *orig,
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default:
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/* TODO to implement */
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ABORT_NOW();
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return 0;
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}
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/* Avoid similar values between multiple haproxy process. */
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@ -3958,10 +3959,14 @@ static uint64_t quic_derive_cid(const struct quic_cid *orig,
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/* Hash the final buffer content. */
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hash = XXH64(buf, idx, 0);
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/* Mark the current thread id in the CID. */
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quic_pin_cid_to_tid((uchar *)&hash, tid);
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for (i = 0; i < sizeof(hash); ++i)
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cid.data[i] = hash >> ((sizeof(hash) * 7) - (8 * i));
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cid.len = sizeof(hash);
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return hash;
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/* Mark the current thread id in the CID. */
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quic_pin_cid_to_tid(cid.data, tid);
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return cid;
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}
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/* Allocate a new CID and attach it to <root> ebtree.
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@ -4002,8 +4007,7 @@ static struct quic_connection_id *new_quic_cid(struct eb_root *root,
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}
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else {
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/* Derive the new CID value from original CID. */
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const uint64_t hash = quic_derive_cid(orig, addr);
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memcpy(conn_id->cid.data, &hash, sizeof(hash));
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conn_id->cid = quic_derive_cid(orig, addr);
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}
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if (quic_stateless_reset_token_init(conn_id) != 1) {
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@ -6524,8 +6528,8 @@ static struct quic_conn *retrieve_qc_conn_from_cid(struct quic_rx_packet *pkt,
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*/
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if (!node && (pkt->type == QUIC_PACKET_TYPE_INITIAL ||
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pkt->type == QUIC_PACKET_TYPE_0RTT)) {
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uint64_t hash = quic_derive_cid(&pkt->dcid, saddr);
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node = ebmb_lookup(&quic_dghdlrs[tid].cids, &hash, sizeof(hash));
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const struct quic_cid derive_cid = quic_derive_cid(&pkt->dcid, saddr);
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node = ebmb_lookup(&quic_dghdlrs[tid].cids, derive_cid.data, derive_cid.len);
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}
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if (!node)
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