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8 Commits

Author SHA1 Message Date
1ad679714b wip 2021-10-31 22:29:03 +01:00
612d9722a2 server_thread 2021-10-31 22:29:03 +01:00
1f8200e295 server_cbs 2021-10-31 22:29:03 +01:00
4ae7d1e9a9 server_info 2021-10-31 22:29:03 +01:00
49357566cb stopped_cond 2021-10-31 22:29:03 +01:00
c5d962b6fd Copy server params
This is a preliminary step necessary to move the server to a separate
thread.
2021-10-31 22:29:03 +01:00
54272a931a Reorder server and server_params
This will allow to define a server_params field in server.
2021-10-31 22:29:03 +01:00
59d1b0a269 Split socket creation and connect/listen
This will allow to assign the socket to a variable before connecting or
listening, so that it can be interrupted from another thread.
2021-10-31 22:28:07 +01:00
3 changed files with 49 additions and 33 deletions

View File

@ -148,10 +148,10 @@ disable_tunnel(struct server *server) {
return disable_tunnel_reverse(serial);
}
static sc_socket
listen_on_port(uint16_t port) {
static bool
listen_on_port(sc_socket socket, uint16_t port) {
#define IPV4_LOCALHOST 0x7F000001
return net_listen(IPV4_LOCALHOST, port, 1);
return net_listen(socket, IPV4_LOCALHOST, port, 1);
}
static bool
@ -171,11 +171,17 @@ enable_tunnel_reverse_any_port(struct server *server,
// client can listen before starting the server app, so there is no
// need to try to connect until the server socket is listening on the
// device.
server->server_socket = listen_on_port(port);
if (server->server_socket != SC_INVALID_SOCKET) {
// success
server->local_port = port;
return true;
sc_socket server_socket = net_socket();
if (server_socket != SC_INVALID_SOCKET) {
bool ok = listen_on_port(server_socket, port);
if (ok) {
// success
server->server_socket = server_socket;
server->local_port = port;
return true;
}
net_close(server_socket);
}
// failure, disable tunnel and try another port
@ -335,11 +341,17 @@ execute_server(struct server *server, const struct server_params *params) {
static sc_socket
connect_and_read_byte(uint16_t port) {
sc_socket socket = net_connect(IPV4_LOCALHOST, port);
sc_socket socket = net_socket();
if (socket == SC_INVALID_SOCKET) {
return SC_INVALID_SOCKET;
}
bool ok = net_connect(socket, IPV4_LOCALHOST, port);
if (!ok) {
net_close(socket);
return SC_INVALID_SOCKET;
}
char byte;
// the connection may succeed even if the server behind the "adb tunnel"
// is not listening, so read one byte to detect a working connection
@ -361,7 +373,6 @@ connect_to_server(struct server *server, uint32_t attempts, sc_tick delay) {
// it worked!
return socket;
}
// TODO use mutex + condvar + bool stopped
if (attempts) {
sc_mutex_lock(&server->mutex);
// Ignore timedwait return (spurious wake ups are harmless)
@ -565,11 +576,16 @@ server_connect_to(struct server *server, struct server_info *info) {
}
// we know that the device is listening, we don't need several attempts
server->control_socket =
net_connect(IPV4_LOCALHOST, server->local_port);
server->control_socket = net_socket();
if (server->control_socket == SC_INVALID_SOCKET) {
return false;
}
bool ok = net_connect(server->control_socket, IPV4_LOCALHOST,
server->local_port);
if (!ok) {
net_close(server->control_socket);
return false;
}
}
// we don't need the adb tunnel anymore

View File

@ -94,13 +94,18 @@ net_perror(const char *s) {
}
sc_socket
net_connect(uint32_t addr, uint16_t port) {
net_socket(void) {
sc_raw_socket raw_sock = socket(AF_INET, SOCK_STREAM, 0);
sc_socket sock = wrap(raw_sock);
if (sock == SC_INVALID_SOCKET) {
net_perror("socket");
return SC_INVALID_SOCKET;
}
return sock;
}
bool
net_connect(sc_socket socket, uint32_t addr, uint16_t port) {
sc_raw_socket raw_sock = unwrap(socket);
SOCKADDR_IN sin;
sin.sin_family = AF_INET;
@ -109,21 +114,15 @@ net_connect(uint32_t addr, uint16_t port) {
if (connect(raw_sock, (SOCKADDR *) &sin, sizeof(sin)) == SOCKET_ERROR) {
net_perror("connect");
net_close(sock);
return SC_INVALID_SOCKET;
return false;
}
return sock;
return true;
}
sc_socket
net_listen(uint32_t addr, uint16_t port, int backlog) {
sc_raw_socket raw_sock = socket(AF_INET, SOCK_STREAM, 0);
sc_socket sock = wrap(raw_sock);
if (sock == SC_INVALID_SOCKET) {
net_perror("socket");
return SC_INVALID_SOCKET;
}
bool
net_listen(sc_socket socket, uint32_t addr, uint16_t port, int backlog) {
sc_raw_socket raw_sock = unwrap(socket);
int reuse = 1;
if (setsockopt(raw_sock, SOL_SOCKET, SO_REUSEADDR, (const void *) &reuse,
@ -138,17 +137,15 @@ net_listen(uint32_t addr, uint16_t port, int backlog) {
if (bind(raw_sock, (SOCKADDR *) &sin, sizeof(sin)) == SOCKET_ERROR) {
net_perror("bind");
net_close(sock);
return SC_INVALID_SOCKET;
return false;
}
if (listen(raw_sock, backlog) == SOCKET_ERROR) {
net_perror("listen");
net_close(sock);
return SC_INVALID_SOCKET;
return false;
}
return sock;
return true;
}
sc_socket

View File

@ -31,10 +31,13 @@ void
net_cleanup(void);
sc_socket
net_connect(uint32_t addr, uint16_t port);
net_socket(void);
sc_socket
net_listen(uint32_t addr, uint16_t port, int backlog);
bool
net_connect(sc_socket socket, uint32_t addr, uint16_t port);
bool
net_listen(sc_socket socket, uint32_t addr, uint16_t port, int backlog);
sc_socket
net_accept(sc_socket server_socket);