Files
Li, Xun 321a6580fb Linux 2.16 Open Source Gold Release
Upgraded to OpenSSL 1.1.1m.
Provided RA-TLS (Remote Attestation based Transport Layer Security) APIs and
  Samples.
Supported PKRU (Protection Key rights Register) in Enclave.
Added APIs of SHA384 and VerifyReport2 to support TDX.
Enhanced QPL (Quote Provider Library) to support caching Intel PCK
  (Provisioning Certificate Key) certificate chain in local memory, or
  retrieving Intel PCK cert chain from local HTTP/S address.
Upgraded Intel ECDSA Quote Verification Enclave to integrate SgxSSL/OpenSSL
  version 1.1.1m.
Introduced Intel ID enclave for QE identity generation.
Fixed bugs.

Signed-off-by: Li, Xun <xun.li@intel.com>
2022-04-06 12:06:27 +08:00

291 lines
8.0 KiB
C++

/**
*
* MIT License
*
* Copyright (c) Open Enclave SDK contributors.
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all
* copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE
*
*/
#include <errno.h>
#include <openssl/bio.h>
#include <openssl/err.h>
#include <openssl/pem.h>
#include <openssl/ssl.h>
#include <openssl/x509.h>
#include <openssl/x509_vfy.h>
#include <string.h>
#include "../../common/openssl_utility.h"
#include "tls_client_t.h"
#include <netdb.h>
#include <netinet/in.h>
#include <sys/socket.h>
#include <unistd.h>
#include <stdlib.h>
int verify_callback(int preverify_ok, X509_STORE_CTX* ctx);
extern "C"
{
int launch_tls_client(char* server_name, char* server_port);
};
unsigned long inet_addr2(const char *str)
{
unsigned long lHost = 0;
char *pLong = (char *)&lHost;
char *p = (char *)str;
while (p)
{
*pLong++ = atoi(p);
p = strchr(p, '.');
if (p)
++p;
}
return lHost;
}
// This routine conducts a simple HTTP request/response communication with
// server
int communicate_with_server(SSL* ssl)
{
unsigned char buf[200];
int ret = 1;
int error = 0;
int len = 0;
int bytes_written = 0;
int bytes_read = 0;
// Write an GET request to the server
t_print(TLS_CLIENT "-----> Write to server:\n");
len = snprintf((char*)buf, sizeof(buf) - 1, CLIENT_PAYLOAD);
while ((bytes_written = SSL_write(ssl, buf, (size_t)len)) <= 0)
{
error = SSL_get_error(ssl, bytes_written);
if (error == SSL_ERROR_WANT_WRITE)
continue;
t_print(TLS_CLIENT "Failed! SSL_write returned %d\n", error);
ret = bytes_written;
goto done;
}
t_print(TLS_CLIENT "%d bytes written\n", bytes_written);
// Read the HTTP response from server
t_print(TLS_CLIENT "<---- Read from server:\n");
do
{
len = sizeof(buf) - 1;
memset(buf, 0, sizeof(buf));
bytes_read = SSL_read(ssl, buf, (size_t)len);
if (bytes_read <= 0)
{
int error = SSL_get_error(ssl, bytes_read);
if (error == SSL_ERROR_WANT_READ)
continue;
t_print(TLS_CLIENT "Failed! SSL_read returned error=%d\n", error);
ret = bytes_read;
break;
}
t_print(TLS_CLIENT " %d bytes read\n", bytes_read);
// check to to see if received payload is expected
if ((bytes_read != SERVER_PAYLOAD_SIZE) ||
(memcmp(SERVER_PAYLOAD, buf, bytes_read) != 0))
{
t_print(
TLS_CLIENT "ERROR: expected reading %lu bytes but only "
"received %d bytes\n",
SERVER_PAYLOAD_SIZE,
bytes_read);
ret = bytes_read;
break;
}
else
{
t_print(TLS_CLIENT
" received all the expected data from server\n\n");
ret = 0;
break;
}
} while (1);
done:
return ret;
}
// create a socket and connect to the server_name:server_port
int create_socket(char* server_name, char* server_port)
{
int sockfd = -1;
struct sockaddr_in dest_sock;
int res = -1;
sockfd = socket(AF_INET, SOCK_STREAM, 0);
if (sockfd == -1)
{
t_print(TLS_CLIENT "Error: Cannot create socket %d.\n", errno);
goto done;
}
dest_sock.sin_family = AF_INET;
dest_sock.sin_port = htons(atoi(server_port));
dest_sock.sin_addr.s_addr = inet_addr2(server_name);
bzero(&(dest_sock.sin_zero), sizeof(dest_sock.sin_zero));
if (connect(
sockfd, (sockaddr*) &dest_sock,
sizeof(struct sockaddr)) == -1)
{
t_print(
TLS_CLIENT "failed to connect to %s:%s (errno=%d)\n",
server_port,
server_port,
errno);
ocall_close(&res, sockfd);
if (res != 0)
t_print(TLS_CLIENT "OCALL: error closing socket\n");
sockfd = -1;
goto done;
}
t_print(TLS_CLIENT "connected to %s:%s\n", server_name, server_port);
done:
return sockfd;
}
int launch_tls_client(char* server_name, char* server_port)
{
t_print(TLS_CLIENT " called launch tls client\n");
int ret = 0;
SSL_CTX* ssl_client_ctx = nullptr;
SSL* ssl_session = nullptr;
X509* cert = nullptr;
EVP_PKEY* pkey = nullptr;
SSL_CONF_CTX* ssl_confctx = SSL_CONF_CTX_new();
int client_socket = -1;
int error = 0;
t_print("\nStarting" TLS_CLIENT "\n\n\n");
if ((ssl_client_ctx = SSL_CTX_new(TLS_client_method())) == nullptr)
{
t_print(TLS_CLIENT "unable to create a new SSL context\n");
goto done;
}
if (initalize_ssl_context(ssl_confctx, ssl_client_ctx) != SGX_SUCCESS)
{
t_print(TLS_CLIENT "unable to create a initialize SSL context\n ");
goto done;
}
// specify the verify_callback for custom verification
SSL_CTX_set_verify(ssl_client_ctx, SSL_VERIFY_PEER, &verify_callback);
t_print(TLS_CLIENT "load cert and key\n");
if (load_tls_certificates_and_keys(ssl_client_ctx, cert, pkey) != 0)
{
t_print(TLS_CLIENT
" unable to load certificate and private key on the client\n");
goto done;
}
if ((ssl_session = SSL_new(ssl_client_ctx)) == nullptr)
{
t_print(TLS_CLIENT
"Unable to create a new SSL connection state object\n");
goto done;
}
t_print(TLS_CLIENT "new ssl connection getting created\n");
client_socket = create_socket(server_name, server_port);
if (client_socket == -1)
{
t_print(
TLS_CLIENT
"create a socket and initiate a TCP connect to server: %s:%s "
"(errno=%d)\n",
server_name,
server_port,
errno);
goto done;
}
// set up ssl socket and initiate TLS connection with TLS server
SSL_set_fd(ssl_session, client_socket);
if ((error = SSL_connect(ssl_session)) != 1)
{
t_print(
TLS_CLIENT "Error: Could not establish a TLS session ret2=%d "
"SSL_get_error()=%d\n",
error,
SSL_get_error(ssl_session, error));
goto done;
}
t_print(
TLS_CLIENT "successfully established TLS channel:%s\n",
SSL_get_version(ssl_session));
// start the client server communication
if ((error = communicate_with_server(ssl_session)) != 0)
{
t_print(TLS_CLIENT "Failed: communicate_with_server (ret=%d)\n", error);
goto done;
}
// Free the structures we don't need anymore
ret = 0;
done:
if (client_socket != -1)
{
ocall_close(&ret, client_socket);
if (ret != 0)
t_print(TLS_CLIENT "OCALL: error close socket\n");
}
if (ssl_session)
{
SSL_shutdown(ssl_session);
SSL_free(ssl_session);
}
if (cert)
X509_free(cert);
if (pkey)
EVP_PKEY_free(pkey);
if (ssl_client_ctx)
SSL_CTX_free(ssl_client_ctx);
if (ssl_confctx)
SSL_CONF_CTX_free(ssl_confctx);
t_print(TLS_CLIENT " %s\n", (ret == 0) ? "success" : "failed");
return (ret);
}