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bb78583ad2
The basic strategy is described at the top of the new source file sshshare.c. In very brief: an 'upstream' PuTTY opens a Unix-domain socket or Windows named pipe, and listens for connections from other PuTTYs wanting to run sessions on the same server. The protocol spoken down that socket/pipe is essentially the bare ssh-connection protocol, using a trivial binary packet protocol with no encryption, and the upstream has to do some fiddly transformations that I've been referring to as 'channel-number NAT' to avoid resource clashes between the sessions it's managing. This is quite different from OpenSSH's approach of using the Unix- domain socket as a means of passing file descriptors around; the main reason for that is that fd-passing is Unix-specific but this system has to work on Windows too. However, there are additional advantages, such as making it easy for each downstream PuTTY to run its own independent set of port and X11 forwardings (though the method for making the latter work is quite painful). Sharing is off by default, but configuration is intended to be very easy in the normal case - just tick one box in the SSH config panel and everything else happens automatically. [originally from svn r10083]
103 lines
3.0 KiB
C
103 lines
3.0 KiB
C
/*
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* Windows support module which deals with being a named-pipe client.
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*/
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#include <stdio.h>
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#include <assert.h>
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#define DEFINE_PLUG_METHOD_MACROS
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#include "tree234.h"
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#include "putty.h"
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#include "network.h"
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#include "proxy.h"
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#include "ssh.h"
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#if !defined NO_SECURITY
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#include "winsecur.h"
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Socket make_handle_socket(HANDLE send_H, HANDLE recv_H, Plug plug,
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int overlapped);
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Socket new_named_pipe_client(const char *pipename, Plug plug)
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{
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HANDLE pipehandle;
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PSID usersid, pipeowner;
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PSECURITY_DESCRIPTOR psd;
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char *err;
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Socket ret;
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assert(strncmp(pipename, "\\\\.\\pipe\\", 9) == 0);
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assert(strchr(pipename + 9, '\\') == NULL);
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while (1) {
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pipehandle = CreateFile(pipename, GENERIC_READ | GENERIC_WRITE,
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0, NULL, OPEN_EXISTING,
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FILE_FLAG_OVERLAPPED, NULL);
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if (pipehandle != INVALID_HANDLE_VALUE)
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break;
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if (GetLastError() != ERROR_PIPE_BUSY) {
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err = dupprintf("Unable to open named pipe '%s': %s",
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pipename, win_strerror(GetLastError()));
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ret = new_error_socket(err, plug);
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sfree(err);
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return ret;
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}
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/*
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* If we got ERROR_PIPE_BUSY, wait for the server to
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* create a new pipe instance. (Since the server is
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* expected to be winnps.c, which will do that immediately
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* after a previous connection is accepted, that shouldn't
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* take excessively long.)
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*/
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if (!WaitNamedPipe(pipename, NMPWAIT_USE_DEFAULT_WAIT)) {
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err = dupprintf("Error waiting for named pipe '%s': %s",
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pipename, win_strerror(GetLastError()));
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ret = new_error_socket(err, plug);
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sfree(err);
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return ret;
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}
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}
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if ((usersid = get_user_sid()) == NULL) {
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CloseHandle(pipehandle);
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err = dupprintf("Unable to get user SID");
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ret = new_error_socket(err, plug);
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sfree(err);
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return ret;
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}
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if (p_GetSecurityInfo(pipehandle, SE_KERNEL_OBJECT,
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OWNER_SECURITY_INFORMATION,
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&pipeowner, NULL, NULL, NULL,
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&psd) != ERROR_SUCCESS) {
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err = dupprintf("Unable to get named pipe security information: %s",
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win_strerror(GetLastError()));
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ret = new_error_socket(err, plug);
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sfree(err);
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CloseHandle(pipehandle);
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sfree(usersid);
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return ret;
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}
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if (!EqualSid(pipeowner, usersid)) {
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err = dupprintf("Owner of named pipe '%s' is not us", pipename);
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ret = new_error_socket(err, plug);
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sfree(err);
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CloseHandle(pipehandle);
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LocalFree(psd);
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sfree(usersid);
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return ret;
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}
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LocalFree(psd);
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sfree(usersid);
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return make_handle_socket(pipehandle, pipehandle, plug, TRUE);
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}
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#endif /* !defined NO_SECURITY */
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