зеркало из https://github.com/github/putty.git
338 строки
8.7 KiB
C
338 строки
8.7 KiB
C
#include <stdio.h>
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#include <stdlib.h>
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#include "putty.h"
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#include "ssh.h"
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#define GET_32BIT_LSB_FIRST(cp) \
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(((unsigned long)(unsigned char)(cp)[0]) | \
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((unsigned long)(unsigned char)(cp)[1] << 8) | \
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((unsigned long)(unsigned char)(cp)[2] << 16) | \
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((unsigned long)(unsigned char)(cp)[3] << 24))
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#define PUT_32BIT_LSB_FIRST(cp, value) ( \
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(cp)[0] = (value), \
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(cp)[1] = (value) >> 8, \
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(cp)[2] = (value) >> 16, \
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(cp)[3] = (value) >> 24 )
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#define GET_16BIT_LSB_FIRST(cp) \
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(((unsigned long)(unsigned char)(cp)[0]) | \
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((unsigned long)(unsigned char)(cp)[1] << 8))
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#define PUT_16BIT_LSB_FIRST(cp, value) ( \
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(cp)[0] = (value), \
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(cp)[1] = (value) >> 8 )
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#define GET_32BIT_MSB_FIRST(cp) \
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(((unsigned long)(unsigned char)(cp)[0] << 24) | \
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((unsigned long)(unsigned char)(cp)[1] << 16) | \
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((unsigned long)(unsigned char)(cp)[2] << 8) | \
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((unsigned long)(unsigned char)(cp)[3]))
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#define PUT_32BIT_MSB_FIRST(cp, value) ( \
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(cp)[0] = (value) >> 24, \
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(cp)[1] = (value) >> 16, \
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(cp)[2] = (value) >> 8, \
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(cp)[3] = (value) )
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#define GET_16BIT_MSB_FIRST(cp) \
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(((unsigned long)(unsigned char)(cp)[0] << 8) | \
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((unsigned long)(unsigned char)(cp)[1]))
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#define PUT_16BIT_MSB_FIRST(cp, value) ( \
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(cp)[0] = (value) >> 8, \
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(cp)[1] = (value) )
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#define GET_16BIT(endian, cp) \
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(endian=='B' ? GET_16BIT_MSB_FIRST(cp) : GET_16BIT_LSB_FIRST(cp))
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#define PUT_16BIT(endian, cp, val) \
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(endian=='B' ? PUT_16BIT_MSB_FIRST(cp, val) : PUT_16BIT_LSB_FIRST(cp, val))
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struct X11Auth {
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unsigned char data[64];
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int len;
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};
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struct X11Private {
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const struct plug_function_table *fn;
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/* the above variable absolutely *must* be the first in this structure */
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unsigned char firstpkt[12]; /* first X data packet */
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struct X11Auth *auth;
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char *auth_protocol;
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unsigned char *auth_data;
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int data_read, auth_plen, auth_psize, auth_dlen, auth_dsize;
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int verified;
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int throttled, throttle_override;
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void *c; /* data used by ssh.c */
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Socket s;
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};
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void x11_close(Socket s);
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void *x11_invent_auth(char *proto, int protomaxlen,
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char *data, int datamaxlen)
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{
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struct X11Auth *auth = smalloc(sizeof(struct X11Auth));
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char ourdata[64];
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int i;
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/* MIT-MAGIC-COOKIE-1. Cookie size is 128 bits (16 bytes). */
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auth->len = 16;
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for (i = 0; i < 16; i++)
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auth->data[i] = random_byte();
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/* Now format for the recipient. */
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strncpy(proto, "MIT-MAGIC-COOKIE-1", protomaxlen);
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ourdata[0] = '\0';
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for (i = 0; i < auth->len; i++)
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sprintf(ourdata + strlen(ourdata), "%02x", auth->data[i]);
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strncpy(data, ourdata, datamaxlen);
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return auth;
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}
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static int x11_verify(struct X11Auth *auth,
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char *proto, unsigned char *data, int dlen)
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{
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if (strcmp(proto, "MIT-MAGIC-COOKIE-1") != 0)
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return 0; /* wrong protocol attempted */
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if (dlen != auth->len)
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return 0; /* cookie was wrong length */
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if (memcmp(auth->data, data, dlen) != 0)
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return 0; /* cookie was wrong cookie! */
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return 1;
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}
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static int x11_closing(Plug plug, char *error_msg, int error_code,
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int calling_back)
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{
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struct X11Private *pr = (struct X11Private *) plug;
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/*
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* We have no way to communicate down the forwarded connection,
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* so if an error occurred on the socket, we just ignore it
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* and treat it like a proper close.
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*/
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sshfwd_close(pr->c);
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x11_close(pr->s);
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return 1;
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}
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static int x11_receive(Plug plug, int urgent, char *data, int len)
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{
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struct X11Private *pr = (struct X11Private *) plug;
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if (sshfwd_write(pr->c, data, len) > 0) {
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pr->throttled = 1;
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sk_set_frozen(pr->s, 1);
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}
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return 1;
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}
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static void x11_sent(Plug plug, int bufsize)
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{
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struct X11Private *pr = (struct X11Private *) plug;
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sshfwd_unthrottle(pr->c, bufsize);
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}
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/*
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* Called to set up the raw connection.
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*
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* Returns an error message, or NULL on success.
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* also, fills the SocketsStructure
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*/
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char *x11_init(Socket * s, char *display, void *c, void *auth)
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{
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static const struct plug_function_table fn_table = {
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x11_closing,
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x11_receive,
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x11_sent,
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NULL
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};
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SockAddr addr;
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int port;
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char *err, *dummy_realhost;
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char host[128];
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int n, displaynum;
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struct X11Private *pr;
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/*
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* Split up display name into host and display-number parts.
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*/
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n = strcspn(display, ":");
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if (display[n])
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displaynum = atoi(display + n + 1);
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else
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displaynum = 0; /* sensible default */
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if (n > sizeof(host) - 1)
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n = sizeof(host) - 1;
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strncpy(host, display, n);
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host[n] = '\0';
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/*
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* Try to find host.
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*/
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addr = sk_namelookup(host, &dummy_realhost);
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if ((err = sk_addr_error(addr)))
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return err;
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port = 6000 + displaynum;
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/*
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* Open socket.
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*/
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pr = (struct X11Private *) smalloc(sizeof(struct X11Private));
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pr->fn = &fn_table;
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pr->auth_protocol = NULL;
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pr->auth = (struct X11Auth *)auth;
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pr->verified = 0;
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pr->data_read = 0;
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pr->throttled = pr->throttle_override = 0;
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pr->c = c;
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pr->s = *s = new_connection(addr, dummy_realhost, port, 0, 1, 0, (Plug) pr);
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if ((err = sk_socket_error(*s))) {
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sfree(pr);
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return err;
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}
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sk_set_private_ptr(*s, pr);
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sk_addr_free(addr);
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return NULL;
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}
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void x11_close(Socket s)
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{
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struct X11Private *pr;
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if (!s)
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return;
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pr = (struct X11Private *) sk_get_private_ptr(s);
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if (pr->auth_protocol) {
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sfree(pr->auth_protocol);
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sfree(pr->auth_data);
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}
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sfree(pr);
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sk_close(s);
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}
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void x11_unthrottle(Socket s)
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{
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struct X11Private *pr;
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if (!s)
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return;
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pr = (struct X11Private *) sk_get_private_ptr(s);
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pr->throttled = 0;
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sk_set_frozen(s, pr->throttled || pr->throttle_override);
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}
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void x11_override_throttle(Socket s, int enable)
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{
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struct X11Private *pr;
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if (!s)
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return;
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pr = (struct X11Private *) sk_get_private_ptr(s);
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pr->throttle_override = enable;
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sk_set_frozen(s, pr->throttled || pr->throttle_override);
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}
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/*
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* Called to send data down the raw connection.
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*/
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int x11_send(Socket s, char *data, int len)
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{
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struct X11Private *pr = (struct X11Private *) sk_get_private_ptr(s);
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if (s == NULL)
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return 0;
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/*
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* Read the first packet.
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*/
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while (len > 0 && pr->data_read < 12)
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pr->firstpkt[pr->data_read++] = (unsigned char) (len--, *data++);
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if (pr->data_read < 12)
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return 0;
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/*
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* If we have not allocated the auth_protocol and auth_data
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* strings, do so now.
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*/
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if (!pr->auth_protocol) {
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pr->auth_plen = GET_16BIT(pr->firstpkt[0], pr->firstpkt + 6);
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pr->auth_dlen = GET_16BIT(pr->firstpkt[0], pr->firstpkt + 8);
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pr->auth_psize = (pr->auth_plen + 3) & ~3;
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pr->auth_dsize = (pr->auth_dlen + 3) & ~3;
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/* Leave room for a terminating zero, to make our lives easier. */
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pr->auth_protocol = (char *) smalloc(pr->auth_psize + 1);
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pr->auth_data = (char *) smalloc(pr->auth_dsize);
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}
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/*
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* Read the auth_protocol and auth_data strings.
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*/
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while (len > 0 && pr->data_read < 12 + pr->auth_psize)
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pr->auth_protocol[pr->data_read++ - 12] = (len--, *data++);
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while (len > 0 && pr->data_read < 12 + pr->auth_psize + pr->auth_dsize)
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pr->auth_data[pr->data_read++ - 12 -
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pr->auth_psize] = (unsigned char) (len--, *data++);
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if (pr->data_read < 12 + pr->auth_psize + pr->auth_dsize)
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return 0;
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/*
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* If we haven't verified the authentication, do so now.
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*/
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if (!pr->verified) {
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int ret;
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pr->auth_protocol[pr->auth_plen] = '\0'; /* ASCIZ */
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ret = x11_verify(pr->auth, pr->auth_protocol,
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pr->auth_data, pr->auth_dlen);
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/*
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* If authentication failed, construct and send an error
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* packet, then terminate the connection.
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*/
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if (!ret) {
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char message[] = "Authentication failed at PuTTY X11 proxy";
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unsigned char reply[8 + sizeof(message) + 4];
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int msglen = sizeof(message) - 1; /* skip zero byte */
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int msgsize = (msglen + 3) & ~3;
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reply[0] = 0; /* failure */
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reply[1] = msglen; /* length of reason string */
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memcpy(reply + 2, pr->firstpkt + 2, 4); /* major/minor proto vsn */
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PUT_16BIT(pr->firstpkt[0], reply + 6, msgsize >> 2);/* data len */
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memset(reply + 8, 0, msgsize);
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memcpy(reply + 8, message, msglen);
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sshfwd_write(pr->c, reply, 8 + msgsize);
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sshfwd_close(pr->c);
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x11_close(s);
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return 0;
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}
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/*
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* Now we know we're going to accept the connection. Strip
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* the auth data. (TODO: if we ever work out how, we should
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* replace some real auth data in here.)
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*/
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PUT_16BIT(pr->firstpkt[0], pr->firstpkt + 6, 0); /* auth proto */
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PUT_16BIT(pr->firstpkt[0], pr->firstpkt + 8, 0); /* auth data */
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sk_write(s, pr->firstpkt, 12);
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pr->verified = 1;
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}
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/*
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* After initialisation, just copy data simply.
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*/
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return sk_write(s, data, len);
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}
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