flow.h 4.8 KB

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  1. #ifndef __RELAY_H__
  2. #define __RELAY_H__
  3. #include <netinet/in.h>
  4. #include <semaphore.h>
  5. #include <openssl/bn.h>
  6. #include <openssl/ssl.h>
  7. #include "ptwist.h"
  8. #include "slitheen.h"
  9. #define MAX_FLOWS 10
  10. #define SLITHEEN_ID_LEN 28
  11. #define TLS_HELLO_REQ 0x00
  12. #define TLS_CLNT_HELLO 0x01
  13. #define TLS_SERV_HELLO 0x02
  14. #define TLS_NEW_SESS 0x04
  15. #define TLS_CERT 0x0b
  16. #define TLS_SRVR_KEYEX 0x0c
  17. #define TLS_CERT_REQ 0x0d
  18. #define TLS_SRVR_HELLO_DONE 0x0e
  19. #define TLS_CERT_VERIFY 0x0f
  20. #define TLS_CLNT_KEYEX 0x10
  21. #define TLS_FINISHED 0x14
  22. struct client_st;
  23. typedef struct client_st client;
  24. typedef struct stream_st {
  25. uint16_t stream_id;
  26. int32_t pipefd;
  27. struct stream_st *next;
  28. } stream;
  29. typedef struct stream_table_st {
  30. stream *first;
  31. } stream_table;
  32. typedef struct packet_st{
  33. uint32_t seq_num;
  34. uint16_t len;
  35. uint8_t *data;
  36. uint32_t expiration;
  37. struct packet_st *next;
  38. } packet;
  39. typedef struct packet_chain_st {
  40. packet *first_packet;
  41. uint32_t expected_seq_num;
  42. uint32_t record_len;
  43. uint32_t remaining_record_len;
  44. } packet_chain;
  45. typedef struct queue_block_st{
  46. int32_t len;
  47. int32_t offset;
  48. uint8_t *data;
  49. struct queue_block_st *next;
  50. uint16_t stream_id;
  51. } queue_block;
  52. typedef struct data_queue_st {
  53. queue_block *first_block;
  54. } data_queue;
  55. typedef struct app_data_queue_st {
  56. packet *first_packet;
  57. } app_data_queue;
  58. typedef struct frame_st {
  59. uint8_t *packet;
  60. const struct pcap_pkthdr *header;
  61. pcap_t *handle;
  62. uint32_t seq_num;
  63. struct frame_st *next;
  64. } frame;
  65. typedef struct frame_queue_st {
  66. frame *first_frame;
  67. } frame_queue;
  68. typedef struct session_st {
  69. uint8_t session_id_len;
  70. uint8_t session_id[SSL_MAX_SSL_SESSION_ID_LENGTH];
  71. struct session_st *next;
  72. uint8_t master_secret[SSL3_MASTER_SECRET_SIZE];
  73. uint8_t client_random[SSL3_RANDOM_SIZE];
  74. uint8_t server_random[SSL3_RANDOM_SIZE];
  75. uint32_t session_ticket_len;
  76. uint8_t *session_ticket;
  77. } session;
  78. typedef struct session_cache_st {
  79. session *first_session;
  80. uint32_t length;
  81. } session_cache;
  82. typedef struct flow_st {
  83. sem_t flow_lock;
  84. uint32_t ref_ctr;
  85. uint8_t removed;
  86. struct in_addr src_ip, dst_ip; /* Source (client) and Destination (server) addresses */
  87. uint16_t src_port, dst_port; /* Source and Destination ports */
  88. uint32_t upstream_seq_num; /* sequence number */
  89. uint32_t downstream_seq_num; /* sequence number */
  90. app_data_queue *upstream_app_data; /* Saved application-layer data for packet retransmits */
  91. app_data_queue *downstream_app_data;
  92. frame_queue *us_frame_queue; /*Held misordered Ethernet frames to be processed and written out later */
  93. frame_queue *ds_frame_queue; /*Held misordered Ethernet frames to be processed and written out later */
  94. byte key[16]; /* negotiated key */
  95. int state; /* TLS handshake state */
  96. int in_encrypted; /* indicates whether incoming flow is encrypted */
  97. int out_encrypted; /* indicates whether outgoing flow is encrypted */
  98. int application; /* indicates handshake is complete */
  99. int stall; /* indicates the Finished message is expected and relay station should stall */
  100. int resume_session;
  101. stream_table *streams;
  102. data_queue *downstream_queue;
  103. client *client_ptr;
  104. packet_chain *ds_packet_chain;
  105. packet_chain *us_packet_chain;
  106. sem_t packet_chain_lock;
  107. queue_block *upstream_queue;
  108. uint32_t upstream_remaining;
  109. DH *dh;
  110. EC_KEY *ecdh;
  111. sem_t upstream_queue_lock;
  112. const EVP_CIPHER *cipher;
  113. const EVP_MD *message_digest;
  114. uint8_t keyex_alg;
  115. uint8_t handshake_hash[EVP_MAX_MD_SIZE];
  116. EVP_MD_CTX *finish_md_ctx;
  117. EVP_CIPHER_CTX *clnt_read_ctx;
  118. EVP_CIPHER_CTX *clnt_write_ctx;
  119. EVP_CIPHER_CTX *srvr_read_ctx;
  120. EVP_CIPHER_CTX *srvr_write_ctx;
  121. EVP_MD_CTX *read_mac_ctx;
  122. EVP_MD_CTX *write_mac_ctx;
  123. uint8_t client_random[SSL3_RANDOM_SIZE];
  124. uint8_t server_random[SSL3_RANDOM_SIZE];
  125. uint8_t master_secret[SSL3_MASTER_SECRET_SIZE];
  126. session *current_session;
  127. uint8_t read_seq[8];
  128. uint8_t write_seq[8];
  129. //for downstream processing
  130. uint32_t remaining_record_len;
  131. uint8_t httpstate;
  132. uint32_t remaining_response_len;
  133. uint8_t replace_response;
  134. uint8_t *outbox;
  135. int32_t outbox_len;
  136. int32_t outbox_offset;
  137. uint8_t *partial_record_header;
  138. uint8_t partial_record_header_len;
  139. //locking
  140. //pthread_mutex_t flow_lock = PTHREAD_MUTEX_INITIALIZER;
  141. } flow;
  142. typedef struct flow_entry_st {
  143. flow *f;
  144. struct flow_entry_st *next;
  145. } flow_entry;
  146. typedef struct flow_table_st {
  147. flow_entry *first_entry;
  148. int len;
  149. } flow_table;
  150. int init_tables(void);
  151. flow *add_flow(struct packet_info *info);
  152. int update_flow(flow *f, uint8_t *record, uint8_t incoming);
  153. int remove_flow(flow *f);
  154. flow *check_flow(struct packet_info *info);
  155. flow *get_flow(int index);
  156. int init_session_cache (void);
  157. int verify_session_id(flow *f, uint8_t *hs);
  158. int check_session(flow *f, uint8_t *hs, uint32_t len);
  159. int save_session_id(flow *f, uint8_t *hs);
  160. int save_session_ticket(flow *f, uint8_t *hs, uint32_t len);
  161. int add_packet(flow *f, struct packet_info *info);
  162. #endif /* __RELAY_H__ */