fix: 当前 relay 很可能只记住了“一个下游 UDP 地址”

This commit is contained in:
2026-04-02 20:56:36 +08:00
parent 6d77dc26bd
commit 9cd1f88bfc

View File

@@ -5,6 +5,13 @@
#define UDP_RELAY_BUF_SIZE (64U * 1024U) #define UDP_RELAY_BUF_SIZE (64U * 1024U)
typedef struct udp_relay_client_entry {
struct udp_relay_client_entry *next;
uint32_t conv;
struct sockaddr_storage addr;
socklen_t addr_len;
} udp_relay_client_entry_t;
struct udp_relay { struct udp_relay {
int downstream_fd; int downstream_fd;
int upstream_fd; int upstream_fd;
@@ -12,9 +19,10 @@ struct udp_relay {
socklen_t upstream_addr_len; socklen_t upstream_addr_len;
char downstream_local_addr[OMNI_MAX_ADDR_TEXT]; char downstream_local_addr[OMNI_MAX_ADDR_TEXT];
char upstream_local_addr[OMNI_MAX_ADDR_TEXT]; char upstream_local_addr[OMNI_MAX_ADDR_TEXT];
struct sockaddr_storage client_addr; struct sockaddr_storage last_client_addr;
socklen_t client_addr_len; socklen_t last_client_addr_len;
int has_client; int has_last_client;
udp_relay_client_entry_t *clients;
pthread_mutex_t lock; pthread_mutex_t lock;
pthread_mutex_t log_mu; pthread_mutex_t log_mu;
pthread_mutex_t state_mu; pthread_mutex_t state_mu;
@@ -131,22 +139,55 @@ static void udp_relay_note_result(udp_relay_t *relay, int rc, int errnum) {
pthread_mutex_unlock(&relay->state_mu); pthread_mutex_unlock(&relay->state_mu);
} }
static void udp_relay_record_client(udp_relay_t *relay, const struct sockaddr_storage *addr, socklen_t addr_len) { static udp_relay_client_entry_t *udp_relay_find_client_locked(udp_relay_t *relay, uint32_t conv) {
udp_relay_client_entry_t *entry;
for (entry = relay->clients; entry != NULL; entry = entry->next) {
if (entry->conv == conv) {
return entry;
}
}
return NULL;
}
static void udp_relay_record_client(udp_relay_t *relay, int has_conv, uint32_t conv, const struct sockaddr_storage *addr, socklen_t addr_len) {
pthread_mutex_lock(&relay->lock); pthread_mutex_lock(&relay->lock);
memcpy(&relay->client_addr, addr, sizeof(*addr)); memcpy(&relay->last_client_addr, addr, sizeof(*addr));
relay->client_addr_len = addr_len; relay->last_client_addr_len = addr_len;
relay->has_client = 1; relay->has_last_client = 1;
if (has_conv) {
udp_relay_client_entry_t *entry = udp_relay_find_client_locked(relay, conv);
if (entry == NULL) {
entry = (udp_relay_client_entry_t *) calloc(1, sizeof(*entry));
if (entry != NULL) {
entry->conv = conv;
entry->next = relay->clients;
relay->clients = entry;
}
}
if (entry != NULL) {
memcpy(&entry->addr, addr, sizeof(*addr));
entry->addr_len = addr_len;
}
}
pthread_mutex_unlock(&relay->lock); pthread_mutex_unlock(&relay->lock);
} }
static int udp_relay_copy_client(udp_relay_t *relay, struct sockaddr_storage *addr, socklen_t *addr_len) { static int udp_relay_copy_client(udp_relay_t *relay, int has_conv, uint32_t conv, struct sockaddr_storage *addr, socklen_t *addr_len) {
int has_client; int has_client = 0;
pthread_mutex_lock(&relay->lock); pthread_mutex_lock(&relay->lock);
has_client = relay->has_client; if (has_conv) {
if (has_client) { udp_relay_client_entry_t *entry = udp_relay_find_client_locked(relay, conv);
memcpy(addr, &relay->client_addr, sizeof(*addr)); if (entry != NULL) {
*addr_len = relay->client_addr_len; memcpy(addr, &entry->addr, sizeof(*addr));
*addr_len = entry->addr_len;
has_client = 1;
}
} else if (relay->has_last_client) {
memcpy(addr, &relay->last_client_addr, sizeof(*addr));
*addr_len = relay->last_client_addr_len;
has_client = 1;
} }
pthread_mutex_unlock(&relay->lock); pthread_mutex_unlock(&relay->lock);
return has_client; return has_client;
@@ -160,6 +201,8 @@ static void *udp_relay_forward_downstream_to_upstream(void *arg) {
struct sockaddr_storage source; struct sockaddr_storage source;
socklen_t source_len = sizeof(source); socklen_t source_len = sizeof(source);
ssize_t n = recvfrom(relay->downstream_fd, buffer, sizeof(buffer), 0, (struct sockaddr *) &source, &source_len); ssize_t n = recvfrom(relay->downstream_fd, buffer, sizeof(buffer), 0, (struct sockaddr *) &source, &source_len);
int has_conv = 0;
uint32_t conv = 0;
if (n < 0) { if (n < 0) {
int errnum = errno; int errnum = errno;
@@ -174,7 +217,8 @@ static void *udp_relay_forward_downstream_to_upstream(void *arg) {
return NULL; return NULL;
} }
udp_relay_record_client(relay, &source, source_len); udp_relay_parse_kcp_summary(buffer, (size_t) n, &has_conv, &conv, NULL);
udp_relay_record_client(relay, has_conv, conv, &source, source_len);
udp_relay_print_packet(relay, "relay_downstream_rx", relay->downstream_local_addr, &source, source_len, buffer, (size_t) n); udp_relay_print_packet(relay, "relay_downstream_rx", relay->downstream_local_addr, &source, source_len, buffer, (size_t) n);
for (;;) { for (;;) {
if (send(relay->upstream_fd, buffer, (size_t) n, 0) >= 0) { if (send(relay->upstream_fd, buffer, (size_t) n, 0) >= 0) {
@@ -205,6 +249,8 @@ static void *udp_relay_forward_upstream_to_downstream(void *arg) {
struct sockaddr_storage client_addr; struct sockaddr_storage client_addr;
socklen_t client_addr_len = 0; socklen_t client_addr_len = 0;
ssize_t n = recv(relay->upstream_fd, buffer, sizeof(buffer), 0); ssize_t n = recv(relay->upstream_fd, buffer, sizeof(buffer), 0);
int has_conv = 0;
uint32_t conv = 0;
if (n < 0) { if (n < 0) {
int errnum = errno; int errnum = errno;
@@ -220,7 +266,8 @@ static void *udp_relay_forward_upstream_to_downstream(void *arg) {
} }
udp_relay_print_packet(relay, "relay_upstream_rx", relay->upstream_local_addr, &relay->upstream_addr, relay->upstream_addr_len, buffer, (size_t) n); udp_relay_print_packet(relay, "relay_upstream_rx", relay->upstream_local_addr, &relay->upstream_addr, relay->upstream_addr_len, buffer, (size_t) n);
if (!udp_relay_copy_client(relay, &client_addr, &client_addr_len)) { udp_relay_parse_kcp_summary(buffer, (size_t) n, &has_conv, &conv, NULL);
if (!udp_relay_copy_client(relay, has_conv, conv, &client_addr, &client_addr_len)) {
udp_relay_print_packet(relay, "relay_upstream_drop_no_client", relay->upstream_local_addr, &relay->upstream_addr, relay->upstream_addr_len, buffer, (size_t) n); udp_relay_print_packet(relay, "relay_upstream_drop_no_client", relay->upstream_local_addr, &relay->upstream_addr, relay->upstream_addr_len, buffer, (size_t) n);
continue; continue;
} }
@@ -404,11 +451,18 @@ int udp_relay_close(udp_relay_t *relay) {
} }
void udp_relay_free(udp_relay_t *relay) { void udp_relay_free(udp_relay_t *relay) {
udp_relay_client_entry_t *entry;
udp_relay_client_entry_t *next;
if (relay == NULL) { if (relay == NULL) {
return; return;
} }
udp_relay_close(relay); udp_relay_close(relay);
udp_relay_join_threads(relay); udp_relay_join_threads(relay);
for (entry = relay->clients; entry != NULL; entry = next) {
next = entry->next;
free(entry);
}
pthread_mutex_destroy(&relay->lock); pthread_mutex_destroy(&relay->lock);
pthread_mutex_destroy(&relay->log_mu); pthread_mutex_destroy(&relay->log_mu);
pthread_cond_destroy(&relay->state_cond); pthread_cond_destroy(&relay->state_cond);