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206 lines
6.0 KiB
206 lines
6.0 KiB
#include <ccan/io/io.h>
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#include <ccan/short_types/short_types.h>
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#include <ccan/tal/str/str.h>
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#include <common/status.h>
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#include <common/utils.h>
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#include <common/wireaddr.h>
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#include <connectd/connectd.h>
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#include <connectd/tor.h>
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#include <netdb.h>
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#include <netinet/in.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <unistd.h>
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#define SOCKS_NOAUTH 0
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#define SOCKS_ERROR 0xff
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#define SOCKS_CONNECT 1
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#define SOCKS_TYP_IPV4 1
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#define SOCKS_DOMAIN 3
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#define SOCKS_TYP_IPV6 4
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#define SOCKS_V5 5
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#define MAX_SIZE_OF_SOCKS5_REQ_OR_RESP 255
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#define SIZE_OF_RESPONSE 4
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#define SIZE_OF_REQUEST 3
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#define SIZE_OF_IPV4_RESPONSE 6
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#define SIZE_OF_IPV6_RESPONSE 18
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#define SOCK_REQ_METH_LEN 3
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#define SOCK_REQ_V5_LEN 5
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#define SOCK_REQ_V5_HEADER_LEN 7
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/* some crufts can not forward ipv6 */
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#undef BIND_FIRST_TO_IPV6
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struct connecting_socks {
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u8 buffer[MAX_SIZE_OF_SOCKS5_REQ_OR_RESP];
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size_t hlen;
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in_port_t port;
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char *host;
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struct connecting *connect;
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};
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static const char* socks5strerror(const tal_t *ctx, u8 code)
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{
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/* Error codes defined in https://tools.ietf.org/html/rfc1928#section-6 */
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switch (code) {
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case 0:
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return tal_strdup(ctx, "success");
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case 1:
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return tal_strdup(ctx, "general SOCKS server failure");
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case 2:
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return tal_strdup(ctx, "connection not allowed by ruleset");
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case 3:
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return tal_strdup(ctx, "network unreachable");
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case 4:
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return tal_strdup(ctx, "host unreachable");
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case 5:
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return tal_strdup(ctx, "connection refused");
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case 6:
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return tal_strdup(ctx, "TTL expired");
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case 7:
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return tal_strdup(ctx, "command not supported");
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case 8:
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return tal_strdup(ctx, "address type not supported");
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}
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return tal_fmt(ctx, "unknown error: %d", code);
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}
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static struct io_plan *connect_finish2(struct io_conn *conn,
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struct connecting_socks *connect)
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{
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status_io(LOG_IO_IN, NULL, "proxy",
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connect->buffer + SIZE_OF_RESPONSE + SIZE_OF_IPV4_RESPONSE,
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SIZE_OF_IPV6_RESPONSE - SIZE_OF_IPV4_RESPONSE);
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status_debug("Now try LN connect out for host %s", connect->host);
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return connection_out(conn, connect->connect);
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}
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static struct io_plan *connect_finish(struct io_conn *conn,
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struct connecting_socks *connect)
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{
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status_io(LOG_IO_IN, NULL, "proxy",
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connect->buffer, SIZE_OF_IPV4_RESPONSE + SIZE_OF_RESPONSE);
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/* buffer[1] contains the reply status code and 0 means "success",
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* see https://tools.ietf.org/html/rfc1928#section-6
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*/
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if ( connect->buffer[1] == '\0') {
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if ( connect->buffer[3] == SOCKS_TYP_IPV6) {
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/* Read rest of response */
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return io_read(conn,
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connect->buffer + SIZE_OF_RESPONSE +
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SIZE_OF_IPV4_RESPONSE,
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SIZE_OF_IPV6_RESPONSE -
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SIZE_OF_IPV4_RESPONSE,
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&connect_finish2, connect);
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} else if ( connect->buffer[3] == SOCKS_TYP_IPV4) {
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status_debug("Now try LN connect out for host %s",
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connect->host);
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return connection_out(conn, connect->connect);
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} else {
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status_debug
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("Tor connect out for host %s error invalid "
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"type return: %0x", connect->host,
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connect->buffer[3]);
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return io_close(conn);
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}
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} else {
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status_debug("Error connecting to %s: Tor server reply: %s",
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connect->host,
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socks5strerror(tmpctx, connect->buffer[1]));
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return io_close(conn);
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}
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}
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/* called when TOR responds */
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static struct io_plan *connect_out(struct io_conn *conn,
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struct connecting_socks *connect)
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{
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return io_read(conn, connect->buffer,
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SIZE_OF_IPV4_RESPONSE + SIZE_OF_RESPONSE,
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&connect_finish, connect);
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}
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static struct io_plan *io_tor_connect_after_resp_to_connect(struct io_conn
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*conn,
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struct
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connecting_socks
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*connect)
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{
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status_io(LOG_IO_IN, NULL, "proxy", connect->buffer, 2);
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if (connect->buffer[1] == SOCKS_ERROR) {
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/* The Tor socks5 server did not like any of our authentication
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* methods and we provided only "no auth".
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*/
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status_debug("Connected out for %s error: authentication required",
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connect->host);
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return io_close(conn);
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}
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if (connect->buffer[1] == '\0') {
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/* make the V5 request */
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connect->hlen = strlen(connect->host);
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connect->buffer[0] = SOCKS_V5;
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connect->buffer[1] = SOCKS_CONNECT;
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connect->buffer[2] = 0;
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connect->buffer[3] = SOCKS_DOMAIN;
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connect->buffer[4] = connect->hlen;
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memcpy(connect->buffer + SOCK_REQ_V5_LEN, connect->host, connect->hlen);
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memcpy(connect->buffer + SOCK_REQ_V5_LEN + strlen(connect->host),
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&(connect->port), sizeof connect->port);
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status_io(LOG_IO_OUT, NULL, "proxy", connect->buffer,
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SOCK_REQ_V5_HEADER_LEN + connect->hlen);
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return io_write(conn, connect->buffer,
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SOCK_REQ_V5_HEADER_LEN + connect->hlen,
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connect_out, connect);
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} else {
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status_debug("Connected out for %s error: unexpected connect answer %0x from the tor socks5 proxy",
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connect->host,
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connect->buffer[1]);
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return io_close(conn);
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}
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}
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static struct io_plan *io_tor_connect_after_req_to_connect(struct io_conn *conn,
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struct connecting_socks
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*connect)
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{
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return io_read(conn, connect->buffer, 2,
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&io_tor_connect_after_resp_to_connect, connect);
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}
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static struct io_plan *io_tor_connect_do_req(struct io_conn *conn,
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struct connecting_socks *connect)
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{
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/* make the init request */
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connect->buffer[0] = SOCKS_V5;
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connect->buffer[1] = 1;
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connect->buffer[2] = SOCKS_NOAUTH;
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status_io(LOG_IO_OUT, NULL, "proxy", connect->buffer, SOCK_REQ_METH_LEN);
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return io_write(conn, connect->buffer, SOCK_REQ_METH_LEN,
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&io_tor_connect_after_req_to_connect, connect);
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}
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/* called when we want to connect to TOR SOCKS5 */
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struct io_plan *io_tor_connect(struct io_conn *conn,
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const struct addrinfo *tor_proxyaddr,
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const char *host, u16 port,
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struct connecting *connect)
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{
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struct connecting_socks *connect_tor = tal(connect,
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struct connecting_socks);
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connect_tor->port = htons(port);
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connect_tor->host = tal_strdup(connect_tor, host);
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connect_tor->connect = connect;
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return io_connect(conn, tor_proxyaddr,
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&io_tor_connect_do_req, connect_tor);
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}
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