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8 Commits
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72878d042a
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5a88b34ddb |
@ -9349,62 +9349,35 @@ UINT ServeDhcpDiscoverEx(VH *v, UCHAR *mac, UINT request_ip, bool is_static_ip)
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// check whether it is a request from the same MAC address
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if (Cmp(mac, d->MacAddress, 6) == 0)
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{
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// Examine whether the specified IP address is within the range of assignment
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// Examine whether the specified IP address is within the range of static assignment
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if (Endian32(v->DhcpIpStart) > Endian32(request_ip) ||
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Endian32(request_ip) > Endian32(v->DhcpIpEnd))
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{
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// Accept if within the range
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// Accept if within the range of static assignment
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ret = request_ip;
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}
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}
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else {
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// Duplicated IPV4 address found. The DHCP server replies to DHCPREQUEST with DHCP NAK.
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// Duplicated IPV4 address found. The specified IP address is not available for use
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char ipstr[MAX_HOST_NAME_LEN + 1] = { 0 };
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char macstr[128] = { 0 };
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IPToStr32(ipstr, sizeof(ipstr), request_ip);
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BinToStr(macstr, sizeof(macstr), d->MacAddress, 6);
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Debug("Virtual DHC Server: Duplicated IP address detected. Static IP: %s, Used by MAC:%s\n", ipstr, macstr);
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return ret;
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MacToStr(macstr, sizeof(macstr), d->MacAddress);
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Debug("Virtual DHC Server: Duplicated IP address detected. Static IP: %s, with the MAC: %s\n", ipstr, macstr);
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}
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}
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else
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{
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// Examine whether the specified IP address is within the range of assignment
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// Examine whether the specified IP address is within the range of static assignment
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if (Endian32(v->DhcpIpStart) > Endian32(request_ip) ||
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Endian32(request_ip) > Endian32(v->DhcpIpEnd))
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{
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// Accept if within the range
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// Accept if within the range of static assignment
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ret = request_ip;
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}
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else
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{
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// Propose an IP in the range since it's a Discover although It is out of range
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}
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}
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if (ret == 0)
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{
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// If there is any entry with the same MAC address
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// that are already registered, use it with priority
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DHCP_LEASE *d = SearchDhcpLeaseByMac(v, mac);
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if (d != NULL)
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{
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// Examine whether the found IP address is in the allocation region
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if (Endian32(v->DhcpIpStart) > Endian32(d->IpAddress) ||
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Endian32(d->IpAddress) > Endian32(v->DhcpIpEnd))
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{
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// Use the IP address if it's found within the range
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ret = d->IpAddress;
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}
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}
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}
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if (ret == 0)
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{
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// For static IP, the requested IP address must NOT be within the range of the DHCP pool
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if (Endian32(v->DhcpIpStart) > Endian32(request_ip) ||
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Endian32(request_ip) > Endian32(v->DhcpIpEnd))
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{
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ret = request_ip;
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// The specified IP address is not available for use
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}
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}
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@ -9595,6 +9568,11 @@ void VirtualDhcpServer(VH *v, PKT *p)
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{
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ip = ServeDhcpRequestEx(v, p->MacAddressSrc, opt->RequestedIp, ip_static);
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}
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// If the IP address in user's note is changed, then reply to DHCP_REQUEST with DHCP_NAK
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if (p->L3.IPv4Header->SrcIP && ip != p->L3.IPv4Header->SrcIP)
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{
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ip = 0;
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}
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}
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if (ip != 0 || opt->Opcode == DHCP_INFORM)
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@ -9607,6 +9585,14 @@ void VirtualDhcpServer(VH *v, PKT *p)
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char client_mac[MAX_SIZE];
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char client_ip[MAX_SIZE];
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// If there is any entry with the same MAC address, then remove it
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d = SearchDhcpLeaseByMac(v, p->MacAddressSrc);
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if (d != NULL)
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{
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FreeDhcpLease(d);
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Delete(v->DhcpLeaseList, d);
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}
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// Remove old records with the same IP address
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d = SearchDhcpLeaseByIp(v, ip);
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if (d != NULL)
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@ -9765,7 +9751,7 @@ void VirtualDhcpServer(VH *v, PKT *p)
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}
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else
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{
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// Reply of DHCP_REQUEST must be either DHCP_ACK or DHCP_NAK.
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// Reply of DHCP_REQUEST must be either DHCP_ACK or DHCP_NAK
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if (opt->Opcode == DHCP_REQUEST)
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{
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// There is no IP address that can be provided
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@ -88,6 +88,7 @@ int ssl_clientcert_index = 0;
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#if OPENSSL_VERSION_NUMBER >= 0x30000000L
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static OSSL_PROVIDER *ossl_provider_legacy = NULL;
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static OSSL_PROVIDER *ossl_provider_default = NULL;
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static OSSL_PROVIDER *ossl_provider_oqsprovider = NULL;
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#endif
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LOCK **ssl_lock_obj = NULL;
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@ -3974,6 +3975,12 @@ void FreeCryptLibrary()
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OSSL_PROVIDER_unload(ossl_provider_legacy);
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ossl_provider_legacy = NULL;
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}
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if (ossl_provider_oqsprovider != NULL)
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{
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OSSL_PROVIDER_unload(ossl_provider_oqsprovider);
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ossl_provider_oqsprovider = NULL;
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}
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#endif
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}
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@ -3996,6 +4003,7 @@ void InitCryptLibrary()
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#if OPENSSL_VERSION_NUMBER >= 0x30000000L
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ossl_provider_default = OSSL_PROVIDER_load(NULL, "legacy");
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ossl_provider_legacy = OSSL_PROVIDER_load(NULL, "default");
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ossl_provider_oqsprovider = OSSL_PROVIDER_load(NULL, "oqsprovider");
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#endif
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ssl_clientcert_index = SSL_get_ex_new_index(0, "struct SslClientCertInfo *", NULL, NULL, NULL);
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@ -25,6 +25,7 @@
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#include <openssl/err.h>
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#include <openssl/ssl.h>
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#include <openssl/provider.h>
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#ifdef OS_UNIX
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#include <fcntl.h>
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@ -11905,6 +11906,8 @@ bool StartSSLEx3(SOCK *sock, X *x, K *priv, LIST *chain, UINT ssl_timeout, char
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Unlock(openssl_lock);
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}
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SSL_set1_groups_list(sock->ssl, PQ_GROUP_LIST);
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if (sock->ServerMode)
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{
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// Lock(ssl_connect_lock);
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@ -12288,6 +12291,11 @@ UINT SecureRecv(SOCK *sock, void *data, UINT size)
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ret = SSL_peek(ssl, &c, sizeof(c));
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}
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Unlock(sock->ssl_lock);
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#if OPENSSL_VERSION_NUMBER < 0x30000000L
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// 2021/09/10: After OpenSSL 3.x.x, both 0 and negative values might mean retryable.
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// See: https://github.com/openssl/openssl/blob/435981cbadad2c58c35bacd30ca5d8b4c9bea72f/doc/man3/SSL_read.pod
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// > Old documentation indicated a difference between 0 and -1, and that -1 was retryable.
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// > You should instead call SSL_get_error() to find out if it's retryable.
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if (ret == 0)
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{
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// The communication have been disconnected
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@ -12295,7 +12303,8 @@ UINT SecureRecv(SOCK *sock, void *data, UINT size)
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Debug("%s %u SecureRecv() Disconnect\n", __FILE__, __LINE__);
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return 0;
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}
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if (ret < 0)
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#endif
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if (ret <= 0)
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{
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// An error has occurred
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e = SSL_get_error(ssl, ret);
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@ -12303,14 +12312,16 @@ UINT SecureRecv(SOCK *sock, void *data, UINT size)
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{
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if (e == SSL_ERROR_SSL
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#if OPENSSL_VERSION_NUMBER < 0x10100000L
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&&
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sock->ssl->s3->send_alert[0] == SSL3_AL_FATAL &&
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sock->ssl->s3->send_alert[0] != sock->Ssl_Init_Async_SendAlert[0] &&
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sock->ssl->s3->send_alert[1] != sock->Ssl_Init_Async_SendAlert[1]
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&&
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sock->ssl->s3->send_alert[0] == SSL3_AL_FATAL &&
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sock->ssl->s3->send_alert[0] != sock->Ssl_Init_Async_SendAlert[0] &&
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sock->ssl->s3->send_alert[1] != sock->Ssl_Init_Async_SendAlert[1]
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#endif
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)
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)
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{
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Debug("%s %u SSL Fatal Error on ASYNC socket !!!\n", __FILE__, __LINE__);
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UINT ssl_err_no = ERR_get_error();
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Debug("%s %u SSL_ERROR_SSL on ASYNC socket !!! ssl_err_no = %u: '%s'\n", __FILE__, __LINE__, ssl_err_no, ERR_error_string(ssl_err_no, NULL));
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Disconnect(sock);
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return 0;
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}
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@ -12337,14 +12348,14 @@ UINT SecureRecv(SOCK *sock, void *data, UINT size)
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}
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#endif // OS_UNIX
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// Run the time-out thread for SOLARIS
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// Run the time-out thread for SOLARIS
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#ifdef UNIX_SOLARIS
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ttparam = NewSocketTimeout(sock);
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#endif // UNIX_SOLARIS
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ret = SSL_read(ssl, data, size);
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// Stop the timeout thread
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// Stop the timeout thread
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#ifdef UNIX_SOLARIS
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FreeSocketTimeout(ttparam);
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#endif // UNIX_SOLARIS
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@ -12357,7 +12368,11 @@ UINT SecureRecv(SOCK *sock, void *data, UINT size)
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}
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#endif // OS_UNIX
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if (ret < 0)
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#if OPENSSL_VERSION_NUMBER < 0x30000000L
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if (ret < 0) // OpenSSL version < 3.0.0
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#else
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if (ret <= 0) // OpenSSL version >= 3.0.0
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#endif
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{
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e = SSL_get_error(ssl, ret);
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}
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@ -12380,6 +12395,12 @@ UINT SecureRecv(SOCK *sock, void *data, UINT size)
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return (UINT)ret;
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}
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#if OPENSSL_VERSION_NUMBER < 0x30000000L
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// 2021/09/10: After OpenSSL 3.x.x, both 0 and negative values might mean retryable.
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// See: https://github.com/openssl/openssl/blob/435981cbadad2c58c35bacd30ca5d8b4c9bea72f/doc/man3/SSL_read.pod
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// > Old documentation indicated a difference between 0 and -1, and that -1 was retryable.
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// > You should instead call SSL_get_error() to find out if it's retryable.
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if (ret == 0)
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{
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// Disconnect the communication
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@ -12387,20 +12408,24 @@ UINT SecureRecv(SOCK *sock, void *data, UINT size)
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//Debug("%s %u SecureRecv() Disconnect\n", __FILE__, __LINE__);
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return 0;
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}
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#endif
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if (sock->AsyncMode)
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{
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if (e == SSL_ERROR_WANT_READ || e == SSL_ERROR_WANT_WRITE || e == SSL_ERROR_SSL)
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{
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if (e == SSL_ERROR_SSL
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#if OPENSSL_VERSION_NUMBER < 0x10100000L
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&&
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sock->ssl->s3->send_alert[0] == SSL3_AL_FATAL &&
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sock->ssl->s3->send_alert[0] != sock->Ssl_Init_Async_SendAlert[0] &&
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sock->ssl->s3->send_alert[1] != sock->Ssl_Init_Async_SendAlert[1]
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&&
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sock->ssl->s3->send_alert[0] == SSL3_AL_FATAL &&
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sock->ssl->s3->send_alert[0] != sock->Ssl_Init_Async_SendAlert[0] &&
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sock->ssl->s3->send_alert[1] != sock->Ssl_Init_Async_SendAlert[1]
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#endif
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)
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)
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{
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Debug("%s %u SSL Fatal Error on ASYNC socket !!!\n", __FILE__, __LINE__);
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UINT ssl_err_no = ERR_get_error();
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Debug("%s %u SSL_ERROR_SSL on ASYNC socket !!! ssl_err_no = %u: '%s'\n", __FILE__, __LINE__, ssl_err_no, ERR_error_string(ssl_err_no, NULL));
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Disconnect(sock);
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return 0;
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}
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@ -12438,7 +12463,11 @@ UINT SecureSend(SOCK *sock, void *data, UINT size)
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}
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ret = SSL_write(ssl, data, size);
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if (ret < 0)
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#if OPENSSL_VERSION_NUMBER < 0x30000000L
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if (ret < 0) // OpenSSL version < 3.0.0
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#else
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if (ret <= 0) // OpenSSL version >= 3.0.0
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#endif
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{
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e = SSL_get_error(ssl, ret);
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}
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@ -12460,6 +12489,8 @@ UINT SecureSend(SOCK *sock, void *data, UINT size)
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sock->WriteBlocked = false;
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return (UINT)ret;
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}
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#if OPENSSL_VERSION_NUMBER < 0x30000000L
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if (ret == 0)
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{
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// Disconnect
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@ -12467,6 +12498,7 @@ UINT SecureSend(SOCK *sock, void *data, UINT size)
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Disconnect(sock);
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return 0;
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}
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#endif
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if (sock->AsyncMode)
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{
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@ -59,6 +59,8 @@ struct DYN_VALUE
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#define DEFAULT_CIPHER_LIST "ECDHE+AESGCM:ECDHE+CHACHA20:DHE+AESGCM:DHE+CHACHA20:ECDHE+AES256:DHE+AES256:RSA+AES"
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#define PQ_GROUP_LIST "p521_kyber1024:x25519_kyber768:P-521:X25519:P-256"
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// SSL logging function
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//#define ENABLE_SSL_LOGGING
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#define SSL_LOGGING_DIRNAME "@ssl_log"
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