#define SVLAN_TAG_SIZE(x) ((x)->svlan_id == 0xffff ? 0 : 4)
struct flow_state {
- __u32 cur_daddr;
+ __be32 cur_daddr;
int count;
};
/* If we're doing ranges, random or incremental, then this
* defines the min/max for those ranges.
*/
- __u32 saddr_min; /* inclusive, source IP address */
- __u32 saddr_max; /* exclusive, source IP address */
- __u32 daddr_min; /* inclusive, dest IP address */
- __u32 daddr_max; /* exclusive, dest IP address */
+ __be32 saddr_min; /* inclusive, source IP address */
+ __be32 saddr_max; /* exclusive, source IP address */
+ __be32 daddr_min; /* inclusive, dest IP address */
+ __be32 daddr_max; /* exclusive, dest IP address */
__u16 udp_src_min; /* inclusive, source UDP port */
__u16 udp_src_max; /* exclusive, source UDP port */
__u32 cur_dst_mac_offset;
__u32 cur_src_mac_offset;
- __u32 cur_saddr;
- __u32 cur_daddr;
+ __be32 cur_saddr;
+ __be32 cur_daddr;
__u16 cur_udp_dst;
__u16 cur_udp_src;
__u32 cur_pkt_size;
};
struct pktgen_hdr {
- __u32 pgh_magic;
- __u32 seq_num;
- __u32 tv_sec;
- __u32 tv_usec;
+ __be32 pgh_magic;
+ __be32 seq_num;
+ __be32 tv_sec;
+ __be32 tv_usec;
};
struct pktgen_thread {
for(i = 0; i < pkt_dev->nr_labels; i++)
if (pkt_dev->labels[i] & MPLS_STACK_BOTTOM)
pkt_dev->labels[i] = MPLS_STACK_BOTTOM |
- (pktgen_random() &
+ ((__force __be32)pktgen_random() &
htonl(0x000fffff));
}
if (pkt_dev->cflows && pkt_dev->flows[flow].count != 0) {
pkt_dev->cur_daddr = pkt_dev->flows[flow].cur_daddr;
} else {
-
- if ((imn = ntohl(pkt_dev->daddr_min)) < (imx =
- ntohl(pkt_dev->
- daddr_max)))
- {
+ imn = ntohl(pkt_dev->daddr_min);
+ imx = ntohl(pkt_dev->daddr_max);
+ if (imn < imx) {
__u32 t;
+ __be32 s;
if (pkt_dev->flags & F_IPDST_RND) {
- t = ((pktgen_random() % (imx - imn)) +
- imn);
- t = htonl(t);
+ t = pktgen_random() % (imx - imn) + imn;
+ s = htonl(t);
- while (LOOPBACK(t) || MULTICAST(t)
- || BADCLASS(t) || ZERONET(t)
- || LOCAL_MCAST(t)) {
- t = ((pktgen_random() %
- (imx - imn)) + imn);
- t = htonl(t);
+ while (LOOPBACK(s) || MULTICAST(s)
+ || BADCLASS(s) || ZERONET(s)
+ || LOCAL_MCAST(s)) {
+ t = (pktgen_random() %
+ (imx - imn)) + imn;
+ s = htonl(t);
}
- pkt_dev->cur_daddr = t;
- }
-
- else {
+ pkt_dev->cur_daddr = s;
+ } else {
t = ntohl(pkt_dev->cur_daddr);
t++;
if (t > imx) {
for (i = 0; i < 4; i++) {
pkt_dev->cur_in6_daddr.s6_addr32[i] =
- ((pktgen_random() |
+ (((__force __be32)pktgen_random() |
pkt_dev->min_in6_daddr.s6_addr32[i]) &
pkt_dev->max_in6_daddr.s6_addr32[i]);
}
udph = (struct udphdr *)skb_put(skb, sizeof(struct udphdr));
memcpy(eth, pkt_dev->hh, 12);
- *(u16 *) & eth[12] = protocol;
+ *(__be16 *) & eth[12] = protocol;
/* Eth + IPh + UDPh + mpls */
datalen = pkt_dev->cur_pkt_size - 14 - 20 - 8 -
char suffix[16];
unsigned int prefixlen = 0;
unsigned int suffixlen = 0;
- __u32 tmp;
+ __be32 tmp;
for (i = 0; i < 16; i++)
ip[i] = 0;
udph = (struct udphdr *)skb_put(skb, sizeof(struct udphdr));
memcpy(eth, pkt_dev->hh, 12);
- *(u16 *) & eth[12] = protocol;
+ *(__be16 *) & eth[12] = protocol;
/* Eth + IPh + UDPh + mpls */
datalen = pkt_dev->cur_pkt_size - 14 -
udph->len = htons(datalen + sizeof(struct udphdr));
udph->check = 0; /* No checksum */
- *(u32 *) iph = __constant_htonl(0x60000000); /* Version + flow */
+ *(__be32 *) iph = __constant_htonl(0x60000000); /* Version + flow */
if (pkt_dev->traffic_class) {
/* Version + traffic class + flow (0) */
- *(u32 *)iph |= htonl(0x60000000 | (pkt_dev->traffic_class << 20));
+ *(__be32 *)iph |= htonl(0x60000000 | (pkt_dev->traffic_class << 20));
}
iph->hop_limit = 32;