5585d72c86
functions for converting between host and network byte order. These names are the de facto standard names for this functionality because of the original BSD TCP/IP implementation. But they cause problems for uIP/Contiki: some platforms define these names themselves (Mac OS, most notably), causing compilation problems for Contiki on those platforms. This commit changes all htons to uip_htons instead. Same goes for htonl, ntohs, and ntohl. All-caps versions as well.
488 lines
12 KiB
C
488 lines
12 KiB
C
/*
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* Copyright (c) 2001, Adam Dunkels.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. The name of the author may not be used to endorse or promote
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* products derived from this software without specific prior
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* written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
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* OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
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* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
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* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* This file is part of the uIP TCP/IP stack.
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*
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* $Id: vnc-server.c,v 1.3 2010/10/19 18:29:04 adamdunkels Exp $
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*
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*/
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/* A micro implementation of a VNC server. VNC is a protocol for
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remote network displays. See http://www.uk.research.att.com/vnc/
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for information about VNC.
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Initialization states:
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VNC_VERSION (send version string)
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VNC_AUTH (send auth message)
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VNC_INIT (send init message)
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Steady state:
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VNC_RUNNING (send RFB updates, parse incoming messages)
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What kind of message should be sent:
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SEND_NONE (No message)
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SEND_BLANK (Blank screen initially)
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SEND_SCREEN (Send entire screen, initially)
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SEND_UPDATE (Send incremental update)
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*/
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#include "contiki-net.h"
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#include "ctk/vnc-server.h"
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#include "ctk/vnc-out.h"
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#include <string.h>
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/* RFB server initial handshaking string. */
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#define RFB_SERVER_VERSION_STRING rfb_server_version_string
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/* "RFB 003.003" */
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static u8_t rfb_server_version_string[12] = {82,70,66,32,48,48,51,46,48,48,51,10};
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/* uVNC */
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static u8_t uvnc_name[4] = {117,86,78,67};
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#if 1
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#define PRINTF(x)
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#else
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#define PRINTF(x) printf x
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#endif
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/*-----------------------------------------------------------------------------------*/
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u8_t
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vnc_server_draw_rect(u8_t *ptr, u16_t x, u16_t y, u16_t w, u16_t h, u8_t c)
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{
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register struct rfb_fb_update_rect_hdr *recthdr;
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struct rfb_rre_hdr *rrehdr;
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recthdr = (struct rfb_fb_update_rect_hdr *)ptr;
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rrehdr = (struct rfb_rre_hdr *)(ptr + sizeof(struct rfb_fb_update_rect_hdr));
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recthdr->rect.x = x;
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recthdr->rect.y = y;
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recthdr->rect.w = w;
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recthdr->rect.h = h;
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recthdr->encoding[0] =
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recthdr->encoding[1] =
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recthdr->encoding[2] = 0;
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recthdr->encoding[3] = RFB_ENC_RRE;
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rrehdr->subrects[0] =
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rrehdr->subrects[1] = 0;
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rrehdr->bgpixel = c;
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return sizeof(struct rfb_fb_update_rect_hdr) + sizeof(struct rfb_rre_hdr);
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}
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/*-----------------------------------------------------------------------------------*/
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void
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vnc_server_init(void)
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{
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vnc_out_init();
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}
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/*-----------------------------------------------------------------------------------*/
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static void
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vnc_send_blank(struct vnc_server_state *vs)
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{
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switch(vs->type) {
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case 0:
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vnc_out_send_blank(vs);
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break;
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/* case 1:
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vnc_stats_send_blank(vs);
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break; */
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}
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}
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/*-----------------------------------------------------------------------------------*/
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static void
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vnc_send_screen(struct vnc_server_state *vs)
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{
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switch(vs->type) {
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case 0:
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vnc_out_send_screen(vs);
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break;
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/* case 1:
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vnc_stats_send_screen(vs);
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break;*/
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}
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}
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/*-----------------------------------------------------------------------------------*/
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static void
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vnc_send_update(struct vnc_server_state *vs)
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{
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switch(vs->type) {
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case 0:
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vnc_out_send_update(vs);
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break;
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/* case 1:
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vnc_stats_send_update(vs);
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break;*/
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}
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}
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/*-----------------------------------------------------------------------------------*/
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void
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vnc_server_send_data(struct vnc_server_state *vs)
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{
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register struct rfb_server_init *initmsg;
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switch(vs->state) {
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case VNC_VERSION:
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uip_send(RFB_SERVER_VERSION_STRING, sizeof(RFB_SERVER_VERSION_STRING));
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break;
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case VNC_AUTH:
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((char *)uip_appdata)[0] = 0;
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((char *)uip_appdata)[1] = 0;
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((char *)uip_appdata)[2] = 0;
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((char *)uip_appdata)[3] = RFB_AUTH_NONE;
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uip_send(uip_appdata, 4);
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break;
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case VNC_INIT:
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initmsg = (struct rfb_server_init *)uip_appdata;
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initmsg->width = uip_htons(vs->width);
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initmsg->height = uip_htons(vs->height);
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/* BGR233 pixel format. */
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initmsg->format.bps = 8;
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initmsg->format.depth = 8;
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initmsg->format.endian = 1;
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initmsg->format.truecolor = 1;
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initmsg->format.red_max = uip_htons(7);
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initmsg->format.green_max = uip_htons(7);
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initmsg->format.blue_max = uip_htons(3);
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initmsg->format.red_shift = 0;
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initmsg->format.green_shift = 3;
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initmsg->format.blue_shift = 6;
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initmsg->namelength[0] = 0;
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initmsg->namelength[1] = 0;
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initmsg->namelength[2] = 0;
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initmsg->namelength[3] = 4;
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memcpy(&((char *)uip_appdata)[sizeof(struct rfb_server_init)], uvnc_name, 4);
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/* ((char *)uip_appdata)[sizeof(struct rfb_server_init)+0] = 'u';
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((char *)uip_appdata)[sizeof(struct rfb_server_init)+1] = 'V';
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((char *)uip_appdata)[sizeof(struct rfb_server_init)+2] = 'N';
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((char *)uip_appdata)[sizeof(struct rfb_server_init)+3] = 'C';*/
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uip_send(uip_appdata, sizeof(struct rfb_server_init) + 4);
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break;
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case VNC_RUNNING:
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switch(vs->sendmsg) {
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case SEND_NONE:
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PRINTF(("Sending none\n"));
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break;
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case SEND_BLANK:
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case SENT_BLANK:
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PRINTF(("Sending blank\n"));
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vnc_send_blank(vs);
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break;
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case SEND_SCREEN:
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PRINTF(("Sending screen\n"));
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vnc_send_screen(vs);
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break;
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case SEND_UPDATE:
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PRINTF(("Sending update\n"));
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vnc_send_update(vs);
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break;
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}
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break;
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default:
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break;
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}
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}
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/*-----------------------------------------------------------------------------------*/
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static void
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vnc_key_event(struct vnc_server_state *vs)
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{
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switch(vs->type) {
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case 0:
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vnc_out_key_event(vs);
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break;
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/* case 1:
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vnc_stats_key_event(vs);
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break;*/
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}
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}
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/*-----------------------------------------------------------------------------------*/
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static void
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vnc_pointer_event(struct vnc_server_state *vs)
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{
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switch(vs->type) {
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case 0:
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vnc_out_pointer_event(vs);
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break;
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/* case 1:
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vnc_stats_pointer_event(vs);
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break;*/
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}
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}
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/*-----------------------------------------------------------------------------------*/
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static u8_t
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vnc_read_data(CC_REGISTER_ARG struct vnc_server_state *vs)
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{
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u8_t *appdata;
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u16_t len;
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struct rfb_fb_update_request *req;
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/* u8_t niter;*/
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len = uip_datalen();
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appdata = (u8_t *)uip_appdata;
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/* First, check if there is data left to discard since last read. */
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if(vs->readlen > 0) {
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appdata += vs->readlen;
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if(len > vs->readlen) {
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len -= vs->readlen;
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vs->readlen = 0;
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} else {
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vs->readlen -= len;
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len = 0;
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}
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}
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if(vs->readlen != 0) {
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return 1;
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}
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/* All data read and ignored, parse next message. */
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/* for(niter = 32; niter > 0 && len > 0; --niter) {*/
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while(len > 0) {
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switch(vs->state) {
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case VNC_VERSION:
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case VNC_VERSION2:
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PRINTF(("Read in version\n"));
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/* Receive and ignore client version string (12 bytes). */
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vs->state = VNC_AUTH;
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vs->readlen = 12;
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break;
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case VNC_AUTH:
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case VNC_AUTH2:
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PRINTF(("Read in auth \n"));
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/* Read and discard initialization from client (1 byte). */
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vs->readlen = 1;
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vs->state = VNC_INIT;
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break;
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case VNC_INIT:
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case VNC_INIT2:
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PRINTF(("Read in init \n"));
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vs->readlen = 0;
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vs->state = VNC_RUNNING;
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case VNC_RUNNING:
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/* Handle all client events. */
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switch(*appdata) {
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case RFB_SET_PIXEL_FORMAT:
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PRINTF(("Set pixel format\n"));
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vs->readlen = sizeof(struct rfb_set_pixel_format);
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/* Check if client runs with BGR233 format. If not, abort the
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connection. */
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/* XXX: not implemented yet. */
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break;
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case RFB_FIX_COLORMAP_ENTRIES:
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PRINTF(("Fix colormap entries\n"));
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return 0;
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case RFB_SET_ENCODINGS:
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PRINTF(("Set encodings\n"));
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vs->readlen = sizeof(struct rfb_set_encoding);
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vs->readlen += uip_htons(((struct rfb_set_encoding *)appdata)->encodings) * 4;
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/* Make sure that client supports the encodings we use. */
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/* XXX: not implemented yet. */
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break;
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case RFB_FB_UPDATE_REQ:
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PRINTF(("Update request\n"));
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vs->update_requested = 1;
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vs->readlen = sizeof(struct rfb_fb_update_request);
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/* blank the screen initially */
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req = (struct rfb_fb_update_request *)appdata;
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if(req->incremental == 0) {
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/* vs->sendmsg = SEND_BLANK;*/
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vnc_out_update_area(vs, 0, 0, vs->w, vs->h);
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}
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break;
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case RFB_KEY_EVENT:
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vs->readlen = sizeof(struct rfb_key_event);
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vnc_key_event(vs);
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break;
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case RFB_POINTER_EVENT:
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vs->readlen = sizeof(struct rfb_pointer_event);
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vnc_pointer_event(vs);
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break;
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case RFB_CLIENT_CUT_TEXT:
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PRINTF(("Client cut text\n"));
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if(((struct rfb_client_cut_text *)appdata)->len[0] != 0 ||
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((struct rfb_client_cut_text *)appdata)->len[1] != 0) {
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return 0;
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}
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vs->readlen = sizeof(struct rfb_client_cut_text) +
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(((struct rfb_client_cut_text *)appdata)->len[2] << 8) +
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((struct rfb_client_cut_text *)appdata)->len[3];
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/* return 0;*/
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break;
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default:
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PRINTF(("Unknown message %d\n", *appdata));
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return 0;
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}
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break;
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default:
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return 0;
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}
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if(vs->readlen > 0) {
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if(len > vs->readlen) {
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len -= vs->readlen;
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appdata += vs->readlen;
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vs->readlen = 0;
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} else {
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vs->readlen -= len;
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len = 0;
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}
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} else {
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/* Lost data. */
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break;
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}
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}
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/* if(vs->readlen > 0) {
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printf("More data %d\n", vs->readlen);
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}*/
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/* uip_appdata = appdata;*/
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return 1;
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}
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/*-----------------------------------------------------------------------------------*/
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static void
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vnc_new(CC_REGISTER_ARG struct vnc_server_state *vs)
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{
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vs->counter = 0;
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vs->readlen = 0;
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vs->sendmsg = SEND_NONE;
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vs->update_requested = 1;
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switch(vs->type) {
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case 0:
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vnc_out_new(vs);
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break;
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/* case 1:
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vnc_stats_new(vs);
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break;*/
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}
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}
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/*-----------------------------------------------------------------------------------*/
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static void
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vnc_acked(CC_REGISTER_ARG struct vnc_server_state *vs)
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{
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switch(vs->state) {
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case VNC_VERSION:
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vs->state = VNC_VERSION2;
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break;
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case VNC_AUTH:
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vs->state = VNC_AUTH2;
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break;
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case VNC_INIT:
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vs->state = VNC_INIT2;
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break;
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case VNC_RUNNING:
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switch(vs->type) {
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case 0:
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vnc_out_acked(vs);
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break;
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/* case 1:
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vnc_stats_acked(vs);
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break;*/
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}
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break;
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}
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}
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/*-----------------------------------------------------------------------------------*/
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void
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vnc_server_appcall(struct vnc_server_state *vs)
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{
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vs->type = uip_htons(uip_conn->lport) - 5900;
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if(uip_connected()) {
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vnc_new(vs);
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vs->state = VNC_VERSION;
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vnc_server_send_data(vs);
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return;
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}
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if(uip_acked()) {
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PRINTF(("Acked\n"));
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vnc_acked(vs);
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}
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if(uip_newdata()) {
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PRINTF(("Newdata\n"));
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vs->counter = 0;
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if(vnc_read_data(vs) == 0) {
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uip_abort();
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return;
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}
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}
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if(uip_rexmit()) {
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PRINTF(("Rexmit\n"));
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}
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if(uip_newdata() ||
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uip_rexmit() ||
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uip_acked()) {
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vnc_server_send_data(vs);
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} else if(uip_poll()) {
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++vs->counter;
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/* Abort connection after about 20 seconds of inactivity. */
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if(vs->counter >= 40) {
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uip_abort();
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return;
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}
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vnc_out_poll(vs);
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}
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}
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/*-----------------------------------------------------------------------------------*/
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