LocalAttestationUntrusted.cpp 11 KB

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  1. // Knows only protobuf_sgx objects, protobuf header.
  2. // For socket programming
  3. #include <sys/socket.h>
  4. #include <stdlib.h>
  5. #include <netinet/in.h>
  6. #include <string.h>
  7. #include <errno.h>
  8. #include <unistd.h>
  9. #include <stdio.h>
  10. #include "ProtobufLAMessages.pb.h"
  11. #include <google/protobuf/io/coded_stream.h>
  12. #include <google/protobuf/io/zero_copy_stream_impl.h>
  13. using namespace google::protobuf::io;
  14. #include "protobufLAInitiator.h"
  15. #include "../Decryptor/Decryptor_u.h"
  16. #include <iostream>
  17. #include "LocalAttestationUntrusted.h"
  18. uint32_t LocalAttestationUntrusted::session_id=0;
  19. protobuf_sgx_dh_msg1_t LocalAttestationUntrusted::protobuf_msg1;
  20. int LocalAttestationUntrusted::read_protobuf_msg_from_fd(int accept_fd, google::protobuf::MessageLite& message)
  21. {
  22. ZeroCopyInputStream* raw_input;
  23. CodedInputStream* coded_input;
  24. uint32_t size;
  25. CodedInputStream::Limit limit;
  26. raw_input = new FileInputStream(accept_fd);
  27. coded_input = new CodedInputStream(raw_input);
  28. if(!coded_input->ReadVarint32(&size))
  29. {
  30. printf("Error in reading size of msg");
  31. fflush(stdout);
  32. return -1;
  33. }
  34. //printf("size of msg was read to be %" PRIu32 " \n", size);
  35. fflush(stdout);
  36. limit = coded_input->PushLimit(size);
  37. if(!message.ParseFromCodedStream(coded_input))
  38. {
  39. printf("Error in parsing msg");
  40. fflush(stdout);
  41. return -1;
  42. }
  43. coded_input->PopLimit(limit);
  44. delete raw_input;
  45. delete coded_input;
  46. return 0;
  47. }
  48. int LocalAttestationUntrusted::write_protobuf_msg_to_fd(int accept_fd, google::protobuf::MessageLite& message)
  49. {
  50. ZeroCopyOutputStream* raw_output = new FileOutputStream(accept_fd);
  51. CodedOutputStream* coded_output = new CodedOutputStream(raw_output);
  52. coded_output->WriteVarint32(message.ByteSize());
  53. if(!message.SerializeToCodedStream(coded_output))
  54. {
  55. printf("SerializeToCodedStream failed");
  56. fflush(stdout);
  57. return -1;
  58. }
  59. // As per this - https://stackoverflow.com/questions/22881876/protocol-buffers-how-to-serialize-and-deserialize-multiple-messages-into-a-file?noredirect=1&lq=1
  60. // TODO: There may be a better way to do this - 1) this happens with every accept now and 2) make it happen on the stack vs heap - destructor will be called on return from this function (main) and the items will then be written out. (We probably don't want that, actually)
  61. delete coded_output;
  62. delete raw_output;
  63. fflush(stdout);
  64. return 0;
  65. }
  66. // Sets up a socket to bind and listen to the given port. Returns FD of the socket on success, -1 on failure (and prints a msg to stdout with the errno)
  67. int LocalAttestationUntrusted::set_up_socket(int port, sockaddr_in* address)
  68. {
  69. int server_fd = 0;
  70. // Creating socket file descriptor for listening for attestation requests.
  71. server_fd = socket(AF_INET, SOCK_STREAM | SOCK_CLOEXEC, 0);
  72. if (server_fd == -1)
  73. {
  74. printf("Error in creating a socket - %d", errno);
  75. return -1;
  76. }
  77. // Preparing the address struct for binding
  78. address->sin_family = AF_INET;
  79. address->sin_addr.s_addr = INADDR_ANY; // Todo: should this be localhost?
  80. address->sin_port = htons(port);
  81. // memset(address->sin_zero,0,sizeof(address->sin_zero));
  82. socklen_t addrlen = sizeof(*address);
  83. // Binding
  84. if (bind(server_fd, (sockaddr*)address, addrlen)<0)
  85. {
  86. printf("Error in binding %d - port was %d - ", errno, port);
  87. return -1;
  88. }
  89. // Listening
  90. if (listen(server_fd, 128) < 0)
  91. {
  92. printf("Error in listening %d", errno);
  93. return -1;
  94. }
  95. return server_fd;
  96. }
  97. uint32_t LocalAttestationUntrusted::local_attestation_msg2_msg3(uint32_t own_enclave_id, int accept_fd)
  98. {
  99. uint32_t protobuf_sgx_ret;
  100. protobuf_sgx_dh_msg2_t protobuf_msg2;
  101. protobuf_sgx_dh_msg3_t protobuf_msg3;
  102. printf("Writing message 1\n"); fflush(stdout);
  103. if(write_protobuf_msg_to_fd(accept_fd, protobuf_msg1)!=0)
  104. return 0x1;
  105. printf("Reading message 2\n"); fflush(stdout);
  106. if(read_protobuf_msg_from_fd(accept_fd, protobuf_msg2)!=0)
  107. return 0x2;
  108. protobuf_sgx_ret = process_protobuf_dh_msg2_generate_protobuf_dh_msg3(own_enclave_id, protobuf_msg2, protobuf_msg3, &LocalAttestationUntrusted::session_id);
  109. if(protobuf_sgx_ret != 0)
  110. {
  111. printf("Error in generate_protobuf_dh_msg2: 0x%x", protobuf_sgx_ret); fflush(stdout); return protobuf_sgx_ret;
  112. }
  113. printf("Writing message 3\n"); fflush(stdout);
  114. if(write_protobuf_msg_to_fd(accept_fd, protobuf_msg3)!=0)
  115. return 0x3;
  116. return 0;
  117. }
  118. int LocalAttestationUntrusted::decrypt_client_data(uint32_t own_enclave_id, int fd)
  119. {
  120. protobuf_post_LA_encrypted_msg_t protobuf_msg;
  121. unsigned char* protobuf_msg_ptr;
  122. uint32_t sgx_ret_status;
  123. uint8_t* input_ciphertext_plus_tag;
  124. uint32_t input_ciphertext_plus_tag_length;
  125. uint8_t* output_ciphertext_plus_tag;
  126. uint32_t output_ciphertext_plus_tag_length;
  127. int counter;
  128. if(read_protobuf_msg_from_fd(fd, protobuf_msg)!=0)
  129. return 0xfe;
  130. input_ciphertext_plus_tag_length = protobuf_msg.msg().length();
  131. // TODO: MAKE SURE THIS IS NOT 0XFFFFFFFF.
  132. input_ciphertext_plus_tag = (uint8_t*) malloc(input_ciphertext_plus_tag_length);
  133. output_ciphertext_plus_tag = (uint8_t*) malloc(input_ciphertext_plus_tag_length - 128 + 10); //128 = client public key token length?
  134. protobuf_msg_ptr = (uint8_t*) protobuf_msg.msg().c_str();
  135. for(counter=0; counter<input_ciphertext_plus_tag_length; counter++)
  136. input_ciphertext_plus_tag[counter] = *(protobuf_msg_ptr + counter);
  137. // Just so that the ciphertext - client data - is returned back to Apache in case this function fails.
  138. // client data is after public key (64 bytes) + signature (64 bytes) = 128 bytes.
  139. for(counter=0; counter<input_ciphertext_plus_tag_length; counter++)
  140. output_ciphertext_plus_tag[counter] = input_ciphertext_plus_tag[counter+128];
  141. // We assume that the output is not changed unless it is successful throughout.
  142. // Return value is not sent back..
  143. Decryptor_process_apache_message_generate_response_wrapper(own_enclave_id, &sgx_ret_status, input_ciphertext_plus_tag, input_ciphertext_plus_tag_length, output_ciphertext_plus_tag, &output_ciphertext_plus_tag_length);
  144. free(input_ciphertext_plus_tag);
  145. protobuf_msg.set_msg((void*) output_ciphertext_plus_tag, output_ciphertext_plus_tag_length);
  146. free(output_ciphertext_plus_tag);
  147. if(write_protobuf_msg_to_fd(fd, protobuf_msg)!=0)
  148. return 0xfc;
  149. return 0;
  150. }
  151. int LocalAttestationUntrusted::prepare_local_attestation_as_responder_msg1(uint32_t own_enclave_id) //, int port)
  152. {
  153. uint32_t protobuf_sgx_ret;
  154. int temp_server_fd=0;
  155. protobuf_sgx_ret = generate_protobuf_dh_msg1(own_enclave_id, protobuf_msg1, &LocalAttestationUntrusted::session_id);
  156. if(protobuf_sgx_ret != 0)
  157. {
  158. printf("Error in generate_protobuf_dh_msg1: 0x%x", protobuf_sgx_ret); fflush(stdout); return protobuf_sgx_ret;
  159. }
  160. return 0;
  161. }
  162. int LocalAttestationUntrusted::setup_socket_for_local_attestation_requests(int port)
  163. {
  164. struct sockaddr_in own_addr;
  165. return set_up_socket(port, &own_addr);
  166. }
  167. // TODO: CHANGED SIGNATURE.
  168. int LocalAttestationUntrusted::local_attestation_as_responder_msg2_msg3(uint32_t own_enclave_id, int server_fd, int* accept_fd)
  169. {
  170. uint32_t protobuf_sgx_ret;
  171. struct sockaddr_storage apache_addr;
  172. socklen_t apache_addr_size = sizeof(apache_addr);
  173. int temp_accept_fd;
  174. temp_accept_fd = accept(server_fd, (struct sockaddr *)&apache_addr,&apache_addr_size);
  175. if (temp_accept_fd <0)
  176. {
  177. printf("Error in accepting %d", errno); fflush(stdout);
  178. return temp_accept_fd;
  179. }
  180. *accept_fd=temp_accept_fd;
  181. protobuf_sgx_ret = local_attestation_msg2_msg3(own_enclave_id, temp_accept_fd);
  182. return protobuf_sgx_ret;
  183. }
  184. int LocalAttestationUntrusted::post_local_attestation_with_verifier(uint32_t own_enclave_id, int accept_fd)
  185. {
  186. uint32_t protobuf_sgx_ret;
  187. uint8_t encrypted_apache_mrsigner_and_tag[48];
  188. size_t bytes_read;
  189. int count;
  190. printf("Here\n"); fflush(stdout);
  191. bytes_read=read(accept_fd, encrypted_apache_mrsigner_and_tag, 48);
  192. if(bytes_read!=48)
  193. {
  194. printf("Not all of the encrypted apache's mrsigner was read from the verifier.\n"); fflush(stdout);
  195. close(accept_fd);
  196. return 0xfe;
  197. }
  198. for(count=0;count<48;count++)
  199. printf("0x%02x ", encrypted_apache_mrsigner_and_tag[count]);
  200. printf("\n");fflush(stdout);
  201. Decryptor_process_verifiers_message_wrapper(own_enclave_id, &protobuf_sgx_ret, encrypted_apache_mrsigner_and_tag);
  202. if(protobuf_sgx_ret!=0)
  203. {
  204. printf("Error in decryption: 0x%x\n", protobuf_sgx_ret); fflush(stdout);
  205. close(accept_fd);
  206. return protobuf_sgx_ret;
  207. }
  208. printf("Successful decryption\n"); fflush(stdout);
  209. close(accept_fd);
  210. uint8_t output[64];
  211. Decryptor_get_verifier_mrenclave_apache_mrsigner_wrapper(own_enclave_id, output);
  212. uint32_t counter;
  213. for(counter=0; counter<32; counter++)
  214. printf("0x%x ", output[counter]);
  215. printf("/n");
  216. for(counter=32; counter<64; counter++)
  217. printf("0x%x ", output[counter]);
  218. printf("/n");
  219. fflush(stdout);
  220. return 0;
  221. }
  222. int LocalAttestationUntrusted::post_local_attestation_with_apache(uint32_t own_enclave_id, int accept_fd)
  223. {
  224. protobuf_post_LA_encrypted_msg_t protobuf_encrypted_msg;
  225. uint8_t encrypted_sign_data_and_sign_and_tag[176];
  226. int apache_fd=accept_fd;
  227. memset(encrypted_sign_data_and_sign_and_tag,0x0,176);
  228. uint32_t internal_return_status;
  229. uint32_t count;
  230. uint32_t sgx_ret;
  231. Decryptor_create_and_encrypt_mitigator_header_H_wrapper(own_enclave_id, &sgx_ret, encrypted_sign_data_and_sign_and_tag);
  232. if(sgx_ret!=0)
  233. {
  234. printf("Error in generating encrypted mitigator header:0x%x\n", sgx_ret); fflush(stdout);
  235. close(accept_fd);
  236. return 0xf3;
  237. }
  238. for(count=0;count<176;count++)
  239. {
  240. printf("0x%02x ", encrypted_sign_data_and_sign_and_tag[count]);
  241. }
  242. printf("\n"); fflush(stdout);
  243. protobuf_encrypted_msg.set_msg((void*)encrypted_sign_data_and_sign_and_tag, 176);
  244. if(write_protobuf_msg_to_fd(apache_fd, protobuf_encrypted_msg) != 0)
  245. {
  246. printf("Not all of the mitigator token H was written to the Apache.\n"); fflush(stdout);
  247. close(accept_fd);
  248. return 0xfe;
  249. }
  250. uint8_t public_key[64];
  251. Decryptor_get_short_term_public_key_wrapper(own_enclave_id, public_key);
  252. for(count=0;count<64;count++)
  253. printf("%02x ",public_key[count]);
  254. printf("\n"); fflush(stdout);
  255. do {
  256. internal_return_status = decrypt_client_data(own_enclave_id, accept_fd);
  257. } while(internal_return_status==0);
  258. close(accept_fd);
  259. return internal_return_status;
  260. return 0; }