mirror of
https://git.code.sf.net/p/quake/quakeforge
synced 2024-11-10 23:32:09 +00:00
ce745c8078
all (or most, there are limits still) of the maps on a server with many maps. move the optional progs funcs into sv_funcs_t and add UserInfoChanged, ChatMessage and LocalinfoChanged callback support. clean up PF_setinfo (and SV_SetInfo_f and SV_Localinfo_f) using shared code where possible und to use the UserInfoChanged and LocalinfoChanged callbacks. add chat message callback to SV_Say. if it returns zero, normal chat handling is done, otherwise it's assumed to have been handled by the progs. provide a hook for unkown user commands. non-zero return means it's been handled.
243 lines
5.4 KiB
C
243 lines
5.4 KiB
C
/*
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sv_nchan.c
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user reliable data stream writes
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Copyright (C) 1996-1997 Id Software, Inc.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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*/
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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static __attribute__ ((unused)) const char rcsid[] =
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"$Id$";
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#ifdef HAVE_STRING_H
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# include <string.h>
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#endif
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#ifdef HAVE_STRINGS_H
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# include <strings.h>
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#endif
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#include "QF/msg.h"
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#include "server.h"
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static void
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PushBackbuf (client_t *cl)
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{
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memset (&cl->backbuf, 0, sizeof (cl->backbuf));
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cl->backbuf.allowoverflow = true;
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cl->backbuf.data = cl->backbuf_data[cl->num_backbuf];
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cl->backbuf.maxsize = sizeof (cl->backbuf_data[cl->num_backbuf]);
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cl->backbuf_size[cl->num_backbuf] = 0;
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cl->num_backbuf++;
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}
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int
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ClientReliableCheckSize (client_t *cl, int maxsize, int minsize)
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{
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sizebuf_t *msg = &cl->netchan.message;
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if (cl->num_backbuf)
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msg = &cl->backbuf;
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if (maxsize <= msg->maxsize - msg->cursize - 1)
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return maxsize;
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if (minsize <= msg->maxsize - msg->cursize - 1)
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return msg->maxsize - msg->cursize - 1;
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if (cl->num_backbuf == MAX_BACK_BUFFERS)
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return 0;
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return cl->backbuf.maxsize;
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}
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// check to see if client block will fit, if not, rotate buffers
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void
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ClientReliableCheckBlock (client_t *cl, int maxsize)
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{
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sizebuf_t *msg = &cl->netchan.message;
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if (cl->num_backbuf || msg->cursize > msg->maxsize - maxsize - 1) {
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// we would probably overflow the buffer, save it for next
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if (!cl->num_backbuf) {
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PushBackbuf (cl);
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}
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if (cl->backbuf.cursize > cl->backbuf.maxsize - maxsize - 1) {
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if (cl->num_backbuf == MAX_BACK_BUFFERS) {
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SV_Printf ("WARNING: MAX_BACK_BUFFERS for %s\n", cl->name);
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cl->backbuf.cursize = 0; // don't overflow without
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// allowoverflow set
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msg->overflowed = true; // this will drop the client
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return;
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}
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PushBackbuf (cl);
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}
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}
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}
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// begin a client block, estimated maximum size
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void
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ClientReliableWrite_Begin (client_t *cl, int c, int maxsize)
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{
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ClientReliableCheckBlock (cl, maxsize);
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ClientReliableWrite_Byte (cl, c);
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}
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void
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ClientReliable_FinishWrite (client_t *cl)
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{
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if (cl->num_backbuf) {
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cl->backbuf_size[cl->num_backbuf - 1] = cl->backbuf.cursize;
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if (cl->backbuf.overflowed) {
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SV_Printf ("WARNING: backbuf [%d] reliable overflow for %s\n",
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cl->num_backbuf, cl->name);
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cl->netchan.message.overflowed = true; // this will drop the
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// client
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}
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}
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}
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void
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ClientReliableWrite_Angle (client_t *cl, float f)
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{
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if (cl->num_backbuf) {
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MSG_WriteAngle (&cl->backbuf, f);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteAngle (&cl->netchan.message, f);
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}
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void
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ClientReliableWrite_Angle16 (client_t *cl, float f)
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{
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if (cl->num_backbuf) {
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MSG_WriteAngle16 (&cl->backbuf, f);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteAngle16 (&cl->netchan.message, f);
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}
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void
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ClientReliableWrite_Byte (client_t *cl, int c)
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{
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if (cl->num_backbuf) {
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MSG_WriteByte (&cl->backbuf, c);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteByte (&cl->netchan.message, c);
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}
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void
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ClientReliableWrite_Char (client_t *cl, int c)
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{
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if (cl->num_backbuf) {
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MSG_WriteByte (&cl->backbuf, c);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteByte (&cl->netchan.message, c);
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}
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void
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ClientReliableWrite_Float (client_t *cl, float f)
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{
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if (cl->num_backbuf) {
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MSG_WriteFloat (&cl->backbuf, f);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteFloat (&cl->netchan.message, f);
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}
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void
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ClientReliableWrite_Coord (client_t *cl, float f)
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{
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if (cl->num_backbuf) {
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MSG_WriteCoord (&cl->backbuf, f);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteCoord (&cl->netchan.message, f);
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}
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void
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ClientReliableWrite_Long (client_t *cl, int c)
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{
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if (cl->num_backbuf) {
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MSG_WriteLong (&cl->backbuf, c);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteLong (&cl->netchan.message, c);
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}
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void
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ClientReliableWrite_Short (client_t *cl, int c)
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{
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if (cl->num_backbuf) {
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MSG_WriteShort (&cl->backbuf, c);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteShort (&cl->netchan.message, c);
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}
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void
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ClientReliableWrite_String (client_t *cl, const char *s)
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{
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if (cl->num_backbuf) {
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MSG_WriteString (&cl->backbuf, s);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteString (&cl->netchan.message, s);
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}
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void
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ClientReliableWrite_SZ (client_t *cl, const void *data, int len)
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{
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if (cl->num_backbuf) {
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SZ_Write (&cl->backbuf, data, len);
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ClientReliable_FinishWrite (cl);
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} else
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SZ_Write (&cl->netchan.message, data, len);
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}
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void
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ClientReliableWrite_AngleV (client_t *cl, const vec3_t v)
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{
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if (cl->num_backbuf) {
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MSG_WriteAngleV (&cl->backbuf, v);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteAngleV (&cl->netchan.message, v);
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}
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void
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ClientReliableWrite_CoordV (client_t *cl, const vec3_t v)
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{
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if (cl->num_backbuf) {
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MSG_WriteCoordV (&cl->backbuf, v);
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ClientReliable_FinishWrite (cl);
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} else
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MSG_WriteCoordV (&cl->netchan.message, v);
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}
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