[PKTGEN]: Introduce sequential flows
By default all flows in pktgen are randomly selected. This patch introduces ability to have all defined flows to be sent sequentially. Robert defined randomness to be the default behavior. Signed-off-by: Jamal Hadi Salim <hadi@cyberus.ca> Signed-off-by: Robert Olsson <robert.olsson@its.uu.se> Signed-off-by: David S. Miller <davem@davemloft.net>
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@ -181,6 +181,7 @@
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#define F_MPLS_RND (1<<8) /* Random MPLS labels */
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#define F_VID_RND (1<<9) /* Random VLAN ID */
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#define F_SVID_RND (1<<10) /* Random SVLAN ID */
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#define F_FLOW_SEQ (1<<11) /* Sequential flows */
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/* Thread control flag bits */
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#define T_TERMINATE (1<<0)
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@ -207,8 +208,12 @@ static struct proc_dir_entry *pg_proc_dir = NULL;
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struct flow_state {
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__be32 cur_daddr;
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int count;
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__u32 flags;
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};
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/* flow flag bits */
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#define F_INIT (1<<0) /* flow has been initialized */
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struct pktgen_dev {
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/*
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* Try to keep frequent/infrequent used vars. separated.
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@ -342,6 +347,7 @@ struct pktgen_dev {
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unsigned cflows; /* Concurrent flows (config) */
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unsigned lflow; /* Flow length (config) */
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unsigned nflows; /* accumulated flows (stats) */
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unsigned curfl; /* current sequenced flow (state)*/
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char result[512];
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};
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@ -691,6 +697,13 @@ static int pktgen_if_show(struct seq_file *seq, void *v)
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if (pkt_dev->flags & F_MPLS_RND)
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seq_printf(seq, "MPLS_RND ");
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if (pkt_dev->cflows) {
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if (pkt_dev->flags & F_FLOW_SEQ)
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seq_printf(seq, "FLOW_SEQ "); /*in sequence flows*/
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else
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seq_printf(seq, "FLOW_RND ");
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}
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if (pkt_dev->flags & F_MACSRC_RND)
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seq_printf(seq, "MACSRC_RND ");
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@ -1182,6 +1195,9 @@ static ssize_t pktgen_if_write(struct file *file,
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else if (strcmp(f, "!SVID_RND") == 0)
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pkt_dev->flags &= ~F_SVID_RND;
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else if (strcmp(f, "FLOW_SEQ") == 0)
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pkt_dev->flags |= F_FLOW_SEQ;
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else if (strcmp(f, "!IPV6") == 0)
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pkt_dev->flags &= ~F_IPV6;
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@ -1190,7 +1206,7 @@ static ssize_t pktgen_if_write(struct file *file,
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"Flag -:%s:- unknown\nAvailable flags, (prepend ! to un-set flag):\n%s",
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f,
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"IPSRC_RND, IPDST_RND, UDPSRC_RND, UDPDST_RND, "
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"MACSRC_RND, MACDST_RND, TXSIZE_RND, IPV6, MPLS_RND, VID_RND, SVID_RND\n");
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"MACSRC_RND, MACDST_RND, TXSIZE_RND, IPV6, MPLS_RND, VID_RND, SVID_RND, FLOW_SEQ\n");
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return count;
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}
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sprintf(pg_result, "OK: flags=0x%x", pkt_dev->flags);
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@ -2083,6 +2099,37 @@ static inline void set_pkt_overhead(struct pktgen_dev *pkt_dev)
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pkt_dev->pkt_overhead += SVLAN_TAG_SIZE(pkt_dev);
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}
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static inline int f_seen(struct pktgen_dev *pkt_dev, int flow)
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{
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if (pkt_dev->flows[flow].flags & F_INIT)
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return 1;
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else
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return 0;
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}
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static inline int f_pick(struct pktgen_dev *pkt_dev)
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{
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int flow = pkt_dev->curfl;
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if (pkt_dev->flags & F_FLOW_SEQ) {
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if (pkt_dev->flows[flow].count >= pkt_dev->lflow) {
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/* reset time */
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pkt_dev->flows[flow].count = 0;
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pkt_dev->curfl += 1;
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if (pkt_dev->curfl >= pkt_dev->cflows)
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pkt_dev->curfl = 0; /*reset */
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}
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} else {
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flow = random32() % pkt_dev->cflows;
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if (pkt_dev->flows[flow].count > pkt_dev->lflow)
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pkt_dev->flows[flow].count = 0;
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}
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return pkt_dev->curfl;
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}
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/* Increment/randomize headers according to flags and current values
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* for IP src/dest, UDP src/dst port, MAC-Addr src/dst
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*/
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@ -2092,12 +2139,8 @@ static void mod_cur_headers(struct pktgen_dev *pkt_dev)
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__u32 imx;
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int flow = 0;
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if (pkt_dev->cflows) {
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flow = random32() % pkt_dev->cflows;
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if (pkt_dev->flows[flow].count > pkt_dev->lflow)
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pkt_dev->flows[flow].count = 0;
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}
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if (pkt_dev->cflows)
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flow = f_pick(pkt_dev);
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/* Deal with source MAC */
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if (pkt_dev->src_mac_count > 1) {
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@ -2213,7 +2256,7 @@ static void mod_cur_headers(struct pktgen_dev *pkt_dev)
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pkt_dev->cur_saddr = htonl(t);
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}
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if (pkt_dev->cflows && pkt_dev->flows[flow].count != 0) {
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if (pkt_dev->cflows && f_seen(pkt_dev, flow)) {
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pkt_dev->cur_daddr = pkt_dev->flows[flow].cur_daddr;
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} else {
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imn = ntohl(pkt_dev->daddr_min);
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@ -2243,6 +2286,7 @@ static void mod_cur_headers(struct pktgen_dev *pkt_dev)
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}
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}
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if (pkt_dev->cflows) {
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pkt_dev->flows[flow].flags |= F_INIT;
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pkt_dev->flows[flow].cur_daddr =
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pkt_dev->cur_daddr;
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pkt_dev->nflows++;
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