mirror of
https://github.com/nzp-team/fteqw.git
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d17ca9286b
git-svn-id: https://svn.code.sf.net/p/fteqw/code/trunk@1622 fc73d0e0-1445-4013-8a0c-d673dee63da5
404 lines
9.6 KiB
C
404 lines
9.6 KiB
C
//voice chat routines.
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//needs quite a bit of work.
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//it needs a proper protocol.
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//the server needs to be able to shutdown again.
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//options about who gets the sound data is also needed.
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#include "bothdefs.h"
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#ifdef VOICECHAT
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#include "quakedef.h"
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#ifdef _WIN32
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#include "winquake.h"
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#endif
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#include "netinc.h"
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#include "voicechat.h"
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static int CLVS_socket;
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static int SVVS_socket;
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static qboolean SVVS_inited;
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static qbyte inputbuffer[44100];
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static int readpoint;
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static qbyte outputbuffer[44100];
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static int sendpoint;
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/*
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Protocol:
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Sound chunk:
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(char) data begins with codec id.
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(short) followed by number of samples
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(short) then size in bytes of chunk.
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*/
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#ifndef CLIENTONLY
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void SVVC_ServerInit(void)
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{
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netadr_t adr;
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struct sockaddr_in address;
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unsigned long _true = true;
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int i;
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int port = PORT_SERVER;
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if ((SVVS_socket = socket (PF_INET, SOCK_STREAM, IPPROTO_TCP)) == -1)
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{
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Sys_Error ("FTP_TCP_OpenSocket: socket:", strerror(qerrno));
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}
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if (ioctlsocket (SVVS_socket, FIONBIO, &_true) == -1)
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{
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Sys_Error ("FTP_TCP_OpenSocket: ioctl FIONBIO:", strerror(qerrno));
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}
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address.sin_family = AF_INET;
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//ZOID -- check for interface binding option
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if ((i = COM_CheckParm("-ip")) != 0 && i < com_argc) {
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address.sin_addr.s_addr = inet_addr(com_argv[i+1]);
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Con_TPrintf(TL_NETBINDINTERFACE,
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inet_ntoa(address.sin_addr));
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} else
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address.sin_addr.s_addr = INADDR_ANY;
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if (port == PORT_ANY)
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address.sin_port = 0;
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else
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address.sin_port = htons((short)port);
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if( bind (SVVS_socket, (void *)&address, sizeof(address)) == -1)
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{
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closesocket(SVVS_socket);
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return;
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}
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listen(SVVS_socket, 3);
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SVVS_inited = true;
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Con_Printf("VC server is running\n");
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SockadrToNetadr((struct sockaddr_qstorage*)&address, &adr);
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Info_SetValueForKey(svs.info, "voiceaddress", NET_AdrToString(adr), MAX_SERVERINFO_STRING);
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return;
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}
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//currently a dum forwarding/broadcasting mechanism
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void SVVC_Frame (qboolean running)
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{
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struct sockaddr_in frm;
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int size = sizeof(frm);
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int newcl;
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int i, j;
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char buffer[1400];
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if (!running)
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return;
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if (!SVVS_socket)
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{
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SVVC_ServerInit();
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return;
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}
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newcl = accept(SVVS_socket, (struct sockaddr *)&frm, &size);
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if (newcl != INVALID_SOCKET)
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{
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for (i = 0; i < MAX_CLIENTS; i++)
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{
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if (!svs.clients[i].voicechat.socket) //this really isn't the right way...
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{
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svs.clients[i].voicechat.socket = newcl;
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break;
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}
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}
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}
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for (i = 0; i < MAX_CLIENTS; i++)
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{
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host_client = &svs.clients[i];
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if (host_client->voicechat.socket)
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{
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size = recv(host_client->voicechat.socket, buffer, sizeof(buffer), 0);
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if (size > 0)
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{
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for (j = 0; j < MAX_CLIENTS; j++)
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{
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if (j != i && svs.clients[j].voicechat.socket) //gotta be capable of receiving, and not the sender (that would be dumb).
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send(svs.clients[j].voicechat.socket, buffer, size, 0);
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}
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}
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}
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}
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}
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#endif
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#ifndef SERVERONLY
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sfxcache_t *voicesoundbuffer[2];
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sfx_t recordaudio[2] = {
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{"recordaudio1",
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{NULL, false},
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NULL},
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{"recordaudio2",
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{NULL, false},
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NULL}
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};
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int audiobuffer;
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void SNDVC_Submit(int codec, qbyte *buffer, int samples, int freq, int width)
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{
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S_RawAudio(0, buffer, freq, samples, 1, width);
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/*
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soundcardinfo_t *cursndcard;
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audiobuffer=0;
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if (!recordaudio[audiobuffer].cache.data)
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{
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voicesoundbuffer[audiobuffer] = BZ_Malloc(44100*2+sizeof(sfxcache_t));
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recordaudio[audiobuffer].cache.data = voicesoundbuffer[audiobuffer];
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recordaudio[audiobuffer].cache.fake = true;
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}
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cursndcard = sndcardinfo;
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if (!cursndcard)
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{
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Con_Printf("Accepting voice chat with no sound card\n");
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return;
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}
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voicesoundbuffer[audiobuffer]->length = samples;
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voicesoundbuffer[audiobuffer]->stereo = false;
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voicesoundbuffer[audiobuffer]->speed = sndcardinfo->sn.speed;
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voicesoundbuffer[audiobuffer]->width = width;
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voicesoundbuffer[audiobuffer]->loopstart=-1;
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// Con_DPrintf("Submit %i\n", (int)samples);
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if (codec == 0) //codec 0 is special. (A straight copy)
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ResampleSfx(&recordaudio[audiobuffer], freq, width, buffer);
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else
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{
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qbyte *temp = BZ_Malloc(samples*width);
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audiocodecs[codec].decode(buffer, (short*)temp, samples);
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ResampleSfx(&recordaudio[audiobuffer], freq, width, temp);
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BZ_Free(temp);
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}
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for (cursndcard = sndcardinfo; cursndcard; cursndcard=cursndcard->next)
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{
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if (0&&cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+1-audiobuffer].sfx == &recordaudio[1-audiobuffer]) //other buffer is playing.
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{
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].sfx = &recordaudio[audiobuffer];
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].pos = cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+1-audiobuffer].end - voicesoundbuffer[1-audiobuffer]->length- cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+1-audiobuffer].pos;
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].end = cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].end + samples;
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if (cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].pos >= voicesoundbuffer[audiobuffer]->length)
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{
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+1-audiobuffer].pos = voicesoundbuffer[1-audiobuffer]->length;
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].pos = 0;
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Con_Printf("Sound out of sync\n");
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}
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}
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else
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{
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].sfx = &recordaudio[audiobuffer];
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].pos = 0;
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cursndcard->channel[MAX_DYNAMIC_CHANNELS + NUM_AMBIENTS+audiobuffer].end = cursndcard->paintedtime + samples;
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}
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}
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audiobuffer = 1-audiobuffer;*/
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}
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void CLVC_SetServer (char *addy)
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{
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unsigned long _true = true;
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struct sockaddr_qstorage from;
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if ((CLVS_socket = socket (PF_INET, SOCK_STREAM, IPPROTO_TCP)) == -1)
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{
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Sys_Error ("FTP_UDP_OpenSocket: socket: %s\n", strerror(qerrno));
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}
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{//quake routines using dns and stuff (Really, I wanna keep quake and ftp fairly seperate)
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netadr_t qaddy;
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if (!NET_StringToAdr (addy, &qaddy)) //server doesn't exist.
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return;
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if (qaddy.type != NA_IP) //Only TCP is supported.
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return;
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if (!qaddy.port)
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qaddy.port = htons(PORT_SERVER);
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NetadrToSockadr(&qaddy, &from);
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}
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//not yet non blocking.
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if (connect(CLVS_socket, (struct sockaddr*)&from, sizeof(from)) == -1)
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{
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Con_Printf ("FTP_TCP_OpenSocket: connect: %i %s\n", qerrno, strerror(qerrno));
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closesocket(CLVS_socket);
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CLVS_socket = 0;
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return;
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}
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if (ioctlsocket (CLVS_socket, FIONBIO, &_true) == -1) //now make it non blocking.
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{
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Sys_Error ("FTP_TCP_OpenSocket: ioctl FIONBIO: %s\n", strerror(qerrno));
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}
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}
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void CLVC_Disconnect (void)
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{
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closesocket(CLVS_socket);
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CLVS_socket = 0;
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}
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void CLVC_Poll (void)
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{
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int codec;
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int size;
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if (!CLVS_socket)
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return;
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while (1)
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{
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size = recv(CLVS_socket, &inputbuffer[readpoint], sizeof(inputbuffer) - readpoint, 0);
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if (size>0)
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{
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int samps;
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int bytes;
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readpoint+=size;
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if (readpoint >= 1)
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{
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codec = *inputbuffer;
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if (codec >= 0 && codec <= 127 && readpoint>=5) //just in case.
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{
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samps = LittleLong(*(signed short *)(inputbuffer+1));
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bytes = LittleLong(*(unsigned short *)(inputbuffer+3));
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// Con_DPrintf("read %i\n", size);
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if (samps < 0) //something special
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{
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readpoint=0;
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}
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else
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{
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if (readpoint >= bytes+5)
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{
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if (codec == 1)
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Con_Printf("Reading\n");
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if (codec < audionumcodecs && audiocodecs[codec].decode)
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{
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SNDVC_Submit(codec, ((qbyte *)inputbuffer)+5, samps, 11025, 2);
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readpoint -= bytes+5;
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memmove(inputbuffer, &inputbuffer[readpoint+bytes+5], readpoint);
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}
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else
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{
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Con_Printf("Bad codec %i\n", (int)codec);
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readpoint=0;
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closesocket(CLVS_socket);
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CLVS_socket = 0;
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}
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}
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}
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}
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}
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}
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else if (readpoint >= sizeof(inputbuffer) || readpoint < 0)
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{
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Con_Printf("Too small buffer or extended client %i\n", (int)readpoint);
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readpoint=0;
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closesocket(CLVS_socket);
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CLVS_socket = 0;
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}
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else
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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 SNDVC_MicInput(qbyte *buffer, int samples, int freq, int width) //this correctly buffers data ready to be sent.
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{
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int sent;
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qbyte codec;
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unsigned short *sampleswritten;
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samples/=width;
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if (!CLVS_socket)
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{
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if (cls.state)
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{
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char *server;
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server = Info_ValueForKey(cl.serverinfo, "voiceaddress");
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if (*server)
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CLVC_SetServer(server);
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}
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SNDVC_Submit(0, buffer, samples, freq, width);
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return;
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}
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else if (!cls.state)
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{
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readpoint = 0;
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sendpoint= 0;
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SNDVC_Submit(0, buffer, samples, freq, width);
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return;
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}
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SNDVC_Submit(0, buffer, samples, freq, width); //remembering at all times that we will not be allowed to hear it ourselves.
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//add to send buffer.
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if (samples > 0x7ffe)
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samples = 0x7ffe;
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if (sendpoint + samples*width+sizeof(unsigned char)+sizeof(short)+sizeof(*sampleswritten) < sizeof(outputbuffer))
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{
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// Con_DPrintf("sending %i\n", (int)samples);
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codec = 1;
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outputbuffer[sendpoint] = codec; sendpoint += sizeof(unsigned char);
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*(unsigned short*)(&outputbuffer[sendpoint]) = samples; sendpoint += sizeof(unsigned short);
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sampleswritten = (short *)&outputbuffer[sendpoint]; sendpoint += sizeof(*sampleswritten);
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*sampleswritten = audiocodecs[codec].encode((short *)buffer, &outputbuffer[sendpoint], samples);
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sendpoint += *sampleswritten;
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}
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else
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{
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Con_Printf("Connection overflowing\n");
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}
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//try and send it
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sent = send(CLVS_socket, outputbuffer, sendpoint, 0);
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if (sent > 0)
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{
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// Con_DPrintf("sent %i\n", (int)sent);
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sendpoint -= sent;
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}
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else
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{
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CLVS_socket=0;
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}
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// SNDVC_Submit(buffer, samples, freq, width);
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}
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#endif
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#endif
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