mirror of
https://git.code.sf.net/p/quake/newtree
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846 lines
19 KiB
C
846 lines
19 KiB
C
/*
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r_view.c
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player eye positioning
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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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$Id$
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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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#include <stdlib.h>
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#include <math.h>
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#include "host.h"
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#include "view.h"
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#include "bothdefs.h"
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#include "screen.h"
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#include "cmd.h"
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#include "r_local.h"
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#include "msg.h"
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#include "commdef.h"
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/*
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The view is allowed to move slightly from it's true position for bobbing,
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but if it exceeds 8 pixels linear distance (spherical, not box), the list of
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entities sent from the server may not include everything in the pvs, especially
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when crossing a water boudnary.
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*/
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cvar_t *cl_rollspeed;
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cvar_t *cl_rollangle;
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cvar_t *cl_bob;
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cvar_t *cl_bobcycle;
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cvar_t *cl_bobup;
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cvar_t *v_kicktime;
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cvar_t *v_kickroll;
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cvar_t *v_kickpitch;
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cvar_t *v_iyaw_cycle;
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cvar_t *v_iroll_cycle;
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cvar_t *v_ipitch_cycle;
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cvar_t *v_iyaw_level;
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cvar_t *v_iroll_level;
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cvar_t *v_ipitch_level;
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cvar_t *v_idlescale;
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float v_dmg_time, v_dmg_roll, v_dmg_pitch;
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extern int in_forward, in_forward2, in_back;
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frame_t *view_frame;
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player_state_t *view_message;
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void BuildGammaTable (float, float);
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/*
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===============
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V_CalcRoll
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===============
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*/
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float
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V_CalcRoll (vec3_t angles, vec3_t velocity)
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{
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vec3_t forward, right, up;
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float sign;
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float side;
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float value;
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AngleVectors (angles, forward, right, up);
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side = DotProduct (velocity, right);
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sign = side < 0 ? -1 : 1;
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side = fabs (side);
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value = cl_rollangle->value;
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if (side < cl_rollspeed->value)
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side = side * value / cl_rollspeed->value;
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else
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side = value;
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return side * sign;
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}
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/*
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===============
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V_CalcBob
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===============
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*/
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float
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V_CalcBob (void)
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{
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static double bobtime;
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static float bob;
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float cycle;
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if (cl.spectator)
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return 0;
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if (onground == -1)
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return bob; // just use old value
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bobtime += host_frametime;
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cycle = bobtime - (int) (bobtime / cl_bobcycle->value) * cl_bobcycle->value;
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cycle /= cl_bobcycle->value;
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if (cycle < cl_bobup->value)
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cycle = M_PI * cycle / cl_bobup->value;
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else
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cycle =
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M_PI + M_PI * (cycle - cl_bobup->value) / (1.0 - cl_bobup->value);
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// bob is proportional to simulated velocity in the xy plane
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// (don't count Z, or jumping messes it up)
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bob =
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sqrt (cl.simvel[0] * cl.simvel[0] +
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cl.simvel[1] * cl.simvel[1]) * cl_bob->value;
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bob = bob * 0.3 + bob * 0.7 * sin (cycle);
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if (bob > 4)
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bob = 4;
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else if (bob < -7)
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bob = -7;
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return bob;
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}
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//=============================================================================
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cvar_t *v_centermove;
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cvar_t *v_centerspeed;
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void
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V_StartPitchDrift (void)
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{
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#if 1
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if (cl.laststop == cl.time) {
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return; // something else is keeping it from
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// drifting
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}
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#endif
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if (cl.nodrift || !cl.pitchvel) {
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cl.pitchvel = v_centerspeed->value;
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cl.nodrift = false;
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cl.driftmove = 0;
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}
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}
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void
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V_StopPitchDrift (void)
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{
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cl.laststop = cl.time;
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cl.nodrift = true;
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cl.pitchvel = 0;
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}
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/*
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===============
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V_DriftPitch
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Moves the client pitch angle towards cl.idealpitch sent by the server.
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If the user is adjusting pitch manually, either with lookup/lookdown,
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mlook and mouse, or klook and keyboard, pitch drifting is constantly stopped.
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Drifting is enabled when the center view key is hit, mlook is released and
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lookspring is non 0, or when
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===============
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*/
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void
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V_DriftPitch (void)
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{
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float delta, move;
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if (view_message->onground == -1 || cls.demoplayback) {
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cl.driftmove = 0;
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cl.pitchvel = 0;
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return;
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}
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// don't count small mouse motion
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if (cl.nodrift) {
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if (fabs
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(cl.frames[(cls.netchan.outgoing_sequence - 1) & UPDATE_MASK].cmd.
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forwardmove) < 200)
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cl.driftmove = 0;
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else
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cl.driftmove += host_frametime;
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if (cl.driftmove > v_centermove->value) {
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V_StartPitchDrift ();
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}
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return;
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}
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delta = 0 - cl.viewangles[PITCH];
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if (!delta) {
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cl.pitchvel = 0;
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return;
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}
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move = host_frametime * cl.pitchvel;
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cl.pitchvel += host_frametime * v_centerspeed->value;
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//Con_Printf ("move: %f (%f)\n", move, host_frametime);
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if (delta > 0) {
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if (move > delta) {
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cl.pitchvel = 0;
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move = delta;
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}
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cl.viewangles[PITCH] += move;
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} else if (delta < 0) {
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if (move > -delta) {
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cl.pitchvel = 0;
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move = -delta;
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}
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cl.viewangles[PITCH] -= move;
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}
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}
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/*
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==============================================================================
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PALETTE FLASHES
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==============================================================================
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*/
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extern cvar_t *cl_cshift_bonus;
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extern cvar_t *cl_cshift_contents;
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extern cvar_t *cl_cshift_damage;
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extern cvar_t *cl_cshift_powerup;
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cshift_t cshift_empty = { {130, 80, 50}, 0 };
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cshift_t cshift_water = { {130, 80, 50}, 128 };
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cshift_t cshift_slime = { {0, 25, 5}, 150 };
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cshift_t cshift_lava = { {255, 80, 0}, 150 };
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cvar_t *brightness;
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cvar_t *contrast;
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byte gammatable[256]; // palette is sent through this
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/*
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=================
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V_CheckGamma
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=================
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*/
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qboolean
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V_CheckGamma (void)
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{
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static float oldbrightness;
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static float oldcontrast;
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if ((brightness->value == oldbrightness) && contrast->value == oldcontrast)
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return false;
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oldbrightness = brightness->value;
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oldcontrast = contrast->value;
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BuildGammaTable (brightness->value, contrast->value);
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vid.recalc_refdef = 1; // force a surface cache flush
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return true;
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}
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/*
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===============
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V_ParseDamage
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===============
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*/
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void
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V_ParseDamage (void)
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{
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int armor, blood;
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vec3_t from;
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int i;
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vec3_t forward, right, up;
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float side;
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float count;
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armor = MSG_ReadByte ();
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blood = MSG_ReadByte ();
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for (i = 0; i < 3; i++)
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from[i] = MSG_ReadCoord ();
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count = blood * 0.5 + armor * 0.5;
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if (count < 10)
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count = 10;
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cl.faceanimtime = cl.time + 0.2; // but sbar face into pain frame
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if (cl_cshift_damage->int_val
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|| (atoi (Info_ValueForKey (cl.serverinfo, "cshifts")) & INFO_CSHIFT_DAMAGE)) {
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cl.cshifts[CSHIFT_DAMAGE].percent += 3 * count;
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cl.cshifts[CSHIFT_DAMAGE].percent = bound (0, cl.cshifts[CSHIFT_DAMAGE].percent, 150);
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if (armor > blood) {
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cl.cshifts[CSHIFT_DAMAGE].destcolor[0] = 200;
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cl.cshifts[CSHIFT_DAMAGE].destcolor[1] = 100;
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cl.cshifts[CSHIFT_DAMAGE].destcolor[2] = 100;
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} else if (armor) {
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cl.cshifts[CSHIFT_DAMAGE].destcolor[0] = 220;
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cl.cshifts[CSHIFT_DAMAGE].destcolor[1] = 50;
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cl.cshifts[CSHIFT_DAMAGE].destcolor[2] = 50;
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} else {
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cl.cshifts[CSHIFT_DAMAGE].destcolor[0] = 255;
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cl.cshifts[CSHIFT_DAMAGE].destcolor[1] = 0;
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cl.cshifts[CSHIFT_DAMAGE].destcolor[2] = 0;
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}
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}
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//
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// calculate view angle kicks
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//
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VectorSubtract (from, cl.simorg, from);
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VectorNormalize (from);
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AngleVectors (cl.simangles, forward, right, up);
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side = DotProduct (from, right);
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v_dmg_roll = count * side * v_kickroll->value;
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side = DotProduct (from, forward);
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v_dmg_pitch = count * side * v_kickpitch->value;
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v_dmg_time = v_kicktime->value;
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}
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/*
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==================
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V_cshift_f
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==================
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*/
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void
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V_cshift_f (void)
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{
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cshift_empty.destcolor[0] = atoi (Cmd_Argv (1));
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cshift_empty.destcolor[1] = atoi (Cmd_Argv (2));
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cshift_empty.destcolor[2] = atoi (Cmd_Argv (3));
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cshift_empty.percent = atoi (Cmd_Argv (4));
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}
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/*
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==================
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V_BonusFlash_f
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When you run over an item, the server sends this command
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==================
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*/
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void
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V_BonusFlash_f (void)
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{
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if (!cl_cshift_bonus->int_val
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&& !(atoi (Info_ValueForKey (cl.serverinfo, "cshifts")) & INFO_CSHIFT_BONUS))
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return;
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cl.cshifts[CSHIFT_BONUS].destcolor[0] = 215;
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cl.cshifts[CSHIFT_BONUS].destcolor[1] = 186;
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cl.cshifts[CSHIFT_BONUS].destcolor[2] = 69;
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cl.cshifts[CSHIFT_BONUS].percent = 50;
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}
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/*
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=============
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V_SetContentsColor
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Underwater, lava, etc each has a color shift
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=============
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*/
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void
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V_SetContentsColor (int contents)
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{
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if (!cl_cshift_contents->int_val
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&& !(atoi (Info_ValueForKey (cl.serverinfo, "cshifts")) & INFO_CSHIFT_CONTENTS)) {
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cl.cshifts[CSHIFT_CONTENTS] = cshift_empty;
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return;
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}
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switch (contents) {
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case CONTENTS_EMPTY:
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cl.cshifts[CSHIFT_CONTENTS] = cshift_empty;
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break;
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case CONTENTS_LAVA:
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cl.cshifts[CSHIFT_CONTENTS] = cshift_lava;
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break;
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case CONTENTS_SOLID:
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case CONTENTS_SLIME:
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cl.cshifts[CSHIFT_CONTENTS] = cshift_slime;
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break;
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default:
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cl.cshifts[CSHIFT_CONTENTS] = cshift_water;
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}
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}
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/*
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=============
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V_CalcPowerupCshift
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=============
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*/
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void
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V_CalcPowerupCshift (void)
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{
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if (!cl_cshift_powerup->int_val
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|| (atoi (Info_ValueForKey (cl.serverinfo, "cshifts")) & INFO_CSHIFT_POWERUP))
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return;
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if (cl.stats[STAT_ITEMS] & IT_QUAD) {
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cl.cshifts[CSHIFT_POWERUP].destcolor[0] = 0;
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cl.cshifts[CSHIFT_POWERUP].destcolor[1] = 0;
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cl.cshifts[CSHIFT_POWERUP].destcolor[2] = 255;
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cl.cshifts[CSHIFT_POWERUP].percent = 30;
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} else if (cl.stats[STAT_ITEMS] & IT_SUIT) {
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cl.cshifts[CSHIFT_POWERUP].destcolor[0] = 0;
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cl.cshifts[CSHIFT_POWERUP].destcolor[1] = 255;
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cl.cshifts[CSHIFT_POWERUP].destcolor[2] = 0;
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cl.cshifts[CSHIFT_POWERUP].percent = 20;
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} else if (cl.stats[STAT_ITEMS] & IT_INVISIBILITY) {
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cl.cshifts[CSHIFT_POWERUP].destcolor[0] = 100;
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cl.cshifts[CSHIFT_POWERUP].destcolor[1] = 100;
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cl.cshifts[CSHIFT_POWERUP].destcolor[2] = 100;
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cl.cshifts[CSHIFT_POWERUP].percent = 100;
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} else if (cl.stats[STAT_ITEMS] & IT_INVULNERABILITY) {
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cl.cshifts[CSHIFT_POWERUP].destcolor[0] = 255;
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cl.cshifts[CSHIFT_POWERUP].destcolor[1] = 255;
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cl.cshifts[CSHIFT_POWERUP].destcolor[2] = 0;
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cl.cshifts[CSHIFT_POWERUP].percent = 30;
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} else
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cl.cshifts[CSHIFT_POWERUP].percent = 0;
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}
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/*
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==============================================================================
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VIEW RENDERING
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==============================================================================
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*/
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float
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angledelta (float a)
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{
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a = anglemod (a);
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if (a > 180)
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a -= 360;
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return a;
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}
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/*
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==================
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CalcGunAngle
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==================
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*/
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void
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CalcGunAngle (void)
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{
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float yaw, pitch, move;
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static float oldyaw = 0;
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static float oldpitch = 0;
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yaw = r_refdef.viewangles[YAW];
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pitch = -r_refdef.viewangles[PITCH];
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yaw = angledelta (yaw - r_refdef.viewangles[YAW]) * 0.4;
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yaw = bound (-10, yaw, 10);
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pitch = angledelta (-pitch - r_refdef.viewangles[PITCH]) * 0.4;
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pitch = bound (-10, pitch, 10);
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move = host_frametime * 20;
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if (yaw > oldyaw) {
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if (oldyaw + move < yaw)
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yaw = oldyaw + move;
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} else {
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if (oldyaw - move > yaw)
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yaw = oldyaw - move;
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}
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if (pitch > oldpitch) {
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if (oldpitch + move < pitch)
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pitch = oldpitch + move;
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} else {
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if (oldpitch - move > pitch)
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pitch = oldpitch - move;
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}
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oldyaw = yaw;
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oldpitch = pitch;
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cl.viewent.angles[YAW] = r_refdef.viewangles[YAW] + yaw;
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cl.viewent.angles[PITCH] = -(r_refdef.viewangles[PITCH] + pitch);
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}
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/*
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==============
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V_BoundOffsets
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==============
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*/
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void
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V_BoundOffsets (void)
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{
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// absolutely bound refresh reletive to entity clipping hull
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// so the view can never be inside a solid wall
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if (r_refdef.vieworg[0] < cl.simorg[0] - 14)
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r_refdef.vieworg[0] = cl.simorg[0] - 14;
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else if (r_refdef.vieworg[0] > cl.simorg[0] + 14)
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r_refdef.vieworg[0] = cl.simorg[0] + 14;
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if (r_refdef.vieworg[1] < cl.simorg[1] - 14)
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r_refdef.vieworg[1] = cl.simorg[1] - 14;
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else if (r_refdef.vieworg[1] > cl.simorg[1] + 14)
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r_refdef.vieworg[1] = cl.simorg[1] + 14;
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if (r_refdef.vieworg[2] < cl.simorg[2] - 22)
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r_refdef.vieworg[2] = cl.simorg[2] - 22;
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else if (r_refdef.vieworg[2] > cl.simorg[2] + 30)
|
|
r_refdef.vieworg[2] = cl.simorg[2] + 30;
|
|
}
|
|
|
|
/*
|
|
==============
|
|
V_AddIdle
|
|
|
|
Idle swaying
|
|
==============
|
|
*/
|
|
void
|
|
V_AddIdle (void)
|
|
{
|
|
r_refdef.viewangles[ROLL] +=
|
|
v_idlescale->value * sin (cl.time * v_iroll_cycle->value) *
|
|
v_iroll_level->value;
|
|
r_refdef.viewangles[PITCH] +=
|
|
v_idlescale->value * sin (cl.time * v_ipitch_cycle->value) *
|
|
v_ipitch_level->value;
|
|
r_refdef.viewangles[YAW] +=
|
|
v_idlescale->value * sin (cl.time * v_iyaw_cycle->value) *
|
|
v_iyaw_level->value;
|
|
|
|
cl.viewent.angles[ROLL] -=
|
|
v_idlescale->value * sin (cl.time * v_iroll_cycle->value) *
|
|
v_iroll_level->value;
|
|
cl.viewent.angles[PITCH] -=
|
|
v_idlescale->value * sin (cl.time * v_ipitch_cycle->value) *
|
|
v_ipitch_level->value;
|
|
cl.viewent.angles[YAW] -=
|
|
v_idlescale->value * sin (cl.time * v_iyaw_cycle->value) *
|
|
v_iyaw_level->value;
|
|
}
|
|
|
|
|
|
/*
|
|
==============
|
|
V_CalcViewRoll
|
|
|
|
Roll is induced by movement and damage
|
|
==============
|
|
*/
|
|
void
|
|
V_CalcViewRoll (void)
|
|
{
|
|
float side;
|
|
|
|
side = V_CalcRoll (cl.simangles, cl.simvel);
|
|
r_refdef.viewangles[ROLL] += side;
|
|
|
|
if (v_dmg_time > 0) {
|
|
r_refdef.viewangles[ROLL] +=
|
|
v_dmg_time / v_kicktime->value * v_dmg_roll;
|
|
r_refdef.viewangles[PITCH] +=
|
|
v_dmg_time / v_kicktime->value * v_dmg_pitch;
|
|
v_dmg_time -= host_frametime;
|
|
}
|
|
|
|
}
|
|
|
|
|
|
/*
|
|
==================
|
|
V_CalcIntermissionRefdef
|
|
|
|
==================
|
|
*/
|
|
void
|
|
V_CalcIntermissionRefdef (void)
|
|
{
|
|
entity_t *view;
|
|
float old;
|
|
|
|
// view is the weapon model
|
|
view = &cl.viewent;
|
|
|
|
VectorCopy (cl.simorg, r_refdef.vieworg);
|
|
VectorCopy (cl.simangles, r_refdef.viewangles);
|
|
view->model = NULL;
|
|
|
|
// allways idle in intermission
|
|
old = v_idlescale->value;
|
|
Cvar_SetValue (v_idlescale, 1);
|
|
V_AddIdle ();
|
|
Cvar_SetValue (v_idlescale, old);
|
|
}
|
|
|
|
/*
|
|
==================
|
|
V_CalcRefdef
|
|
|
|
==================
|
|
*/
|
|
void
|
|
V_CalcRefdef (void)
|
|
{
|
|
entity_t *view;
|
|
int i;
|
|
vec3_t forward, right, up;
|
|
float bob;
|
|
static float oldz = 0;
|
|
int zofs = 22;
|
|
|
|
if (cl.stdver)
|
|
zofs = cl.stats[STAT_VIEWHEIGHT];
|
|
|
|
V_DriftPitch ();
|
|
|
|
// view is the weapon model (only visible from inside body)
|
|
view = &cl.viewent;
|
|
|
|
bob = V_CalcBob ();
|
|
|
|
// refresh position from simulated origin
|
|
VectorCopy (cl.simorg, r_refdef.vieworg);
|
|
|
|
r_refdef.vieworg[2] += bob;
|
|
|
|
// never let it sit exactly on a node line, because a water plane can
|
|
// dissapear when viewed with the eye exactly on it.
|
|
// the server protocol only specifies to 1/8 pixel, so add 1/16 in each axis
|
|
r_refdef.vieworg[0] += 1.0 / 16;
|
|
r_refdef.vieworg[1] += 1.0 / 16;
|
|
r_refdef.vieworg[2] += 1.0 / 16;
|
|
|
|
VectorCopy (cl.simangles, r_refdef.viewangles);
|
|
V_CalcViewRoll ();
|
|
V_AddIdle ();
|
|
|
|
if (view_message->flags & PF_GIB)
|
|
r_refdef.vieworg[2] += 8; // gib view height
|
|
else if (view_message->flags & PF_DEAD)
|
|
r_refdef.vieworg[2] -= 16; // corpse view height
|
|
else
|
|
r_refdef.vieworg[2] += zofs; // view height
|
|
|
|
if (view_message->flags & PF_DEAD) // PF_GIB will also set PF_DEAD
|
|
r_refdef.viewangles[ROLL] = 80; // dead view angle
|
|
|
|
|
|
// offsets
|
|
AngleVectors (cl.simangles, forward, right, up);
|
|
|
|
// set up gun position
|
|
VectorCopy (cl.simangles, view->angles);
|
|
|
|
CalcGunAngle ();
|
|
|
|
VectorCopy (cl.simorg, view->origin);
|
|
view->origin[2] += zofs;
|
|
|
|
for (i = 0; i < 3; i++) {
|
|
view->origin[i] += forward[i] * bob * 0.4;
|
|
// view->origin[i] += right[i]*bob*0.4;
|
|
// view->origin[i] += up[i]*bob*0.8;
|
|
}
|
|
view->origin[2] += bob;
|
|
|
|
// fudge position around to keep amount of weapon visible
|
|
// roughly equal with different FOV
|
|
if (scr_viewsize->int_val == 110)
|
|
view->origin[2] += 1;
|
|
else if (scr_viewsize->int_val == 100)
|
|
view->origin[2] += 2;
|
|
else if (scr_viewsize->int_val == 90)
|
|
view->origin[2] += 1;
|
|
else if (scr_viewsize->int_val == 80)
|
|
view->origin[2] += 0.5;
|
|
|
|
if (view_message->flags & (PF_GIB | PF_DEAD))
|
|
view->model = NULL;
|
|
else
|
|
view->model = cl.model_precache[cl.stats[STAT_WEAPON]];
|
|
view->frame = view_message->weaponframe;
|
|
view->colormap = vid.colormap;
|
|
// LordHavoc: make gun visible
|
|
view->alpha = 1;
|
|
view->colormod[0] = view->colormod[1] = view->colormod[2] = 1;
|
|
|
|
// set up the refresh position
|
|
r_refdef.viewangles[PITCH] += cl.punchangle;
|
|
|
|
// smooth out stair step ups
|
|
if ((cl.onground != -1) && (cl.simorg[2] - oldz > 0)) {
|
|
float steptime;
|
|
|
|
steptime = host_frametime;
|
|
|
|
oldz += steptime * 80;
|
|
if (oldz > cl.simorg[2])
|
|
oldz = cl.simorg[2];
|
|
if (cl.simorg[2] - oldz > 12)
|
|
oldz = cl.simorg[2] - 12;
|
|
r_refdef.vieworg[2] += oldz - cl.simorg[2];
|
|
view->origin[2] += oldz - cl.simorg[2];
|
|
} else
|
|
oldz = cl.simorg[2];
|
|
}
|
|
|
|
/*
|
|
=============
|
|
DropPunchAngle
|
|
=============
|
|
*/
|
|
void
|
|
DropPunchAngle (void)
|
|
{
|
|
cl.punchangle -= 10 * host_frametime;
|
|
if (cl.punchangle < 0)
|
|
cl.punchangle = 0;
|
|
}
|
|
|
|
/*
|
|
==================
|
|
V_RenderView
|
|
|
|
The player's clipping box goes from (-16 -16 -24) to (16 16 32) from
|
|
the entity origin, so any view position inside that will be valid
|
|
==================
|
|
*/
|
|
extern vrect_t scr_vrect;
|
|
|
|
void
|
|
V_RenderView (void)
|
|
{
|
|
// if (cl.simangles[ROLL])
|
|
// Sys_Error ("cl.simangles[ROLL]"); // DEBUG
|
|
cl.simangles[ROLL] = 0; // FIXME @@@
|
|
|
|
if (cls.state != ca_active)
|
|
return;
|
|
|
|
view_frame = &cl.frames[cls.netchan.incoming_sequence & UPDATE_MASK];
|
|
view_message = &view_frame->playerstate[cl.playernum];
|
|
|
|
DropPunchAngle ();
|
|
if (cl.intermission) { // intermission / finale rendering
|
|
V_CalcIntermissionRefdef ();
|
|
} else {
|
|
V_CalcRefdef ();
|
|
}
|
|
|
|
R_PushDlights (vec3_origin);
|
|
|
|
R_RenderView ();
|
|
}
|
|
|
|
//============================================================================
|
|
|
|
/*
|
|
=============
|
|
V_Init
|
|
=============
|
|
*/
|
|
void
|
|
V_Init (void)
|
|
{
|
|
Cmd_AddCommand ("v_cshift", V_cshift_f);
|
|
Cmd_AddCommand ("bf", V_BonusFlash_f);
|
|
Cmd_AddCommand ("centerview", V_StartPitchDrift);
|
|
|
|
BuildGammaTable (1.0, 1.0); // no gamma yet
|
|
}
|
|
|
|
void
|
|
V_Init_Cvars (void)
|
|
{
|
|
v_centermove = Cvar_Get ("v_centermove", "0.15", CVAR_NONE, "None");
|
|
v_centerspeed = Cvar_Get ("v_centerspeed", "500", CVAR_NONE, "None");
|
|
|
|
v_iyaw_cycle = Cvar_Get ("v_iyaw_cycle", "2", CVAR_NONE, "None");
|
|
v_iroll_cycle = Cvar_Get ("v_iroll_cycle", "0.5", CVAR_NONE, "None");
|
|
v_ipitch_cycle = Cvar_Get ("v_ipitch_cycle", "1", CVAR_NONE, "None");
|
|
v_iyaw_level = Cvar_Get ("v_iyaw_level", "0.3", CVAR_NONE, "None");
|
|
v_iroll_level = Cvar_Get ("v_iroll_level", "0.1", CVAR_NONE, "None");
|
|
v_ipitch_level = Cvar_Get ("v_ipitch_level", "0.3", CVAR_NONE, "None");
|
|
|
|
v_idlescale = Cvar_Get ("v_idlescale", "0", CVAR_NONE, "None");
|
|
|
|
cl_rollspeed = Cvar_Get ("cl_rollspeed", "200", CVAR_NONE, "None");
|
|
cl_rollangle = Cvar_Get ("cl_rollangle", "2.0", CVAR_NONE, "None");
|
|
|
|
cl_bob = Cvar_Get ("cl_bob", "0.02", CVAR_NONE, "None");
|
|
cl_bobcycle = Cvar_Get ("cl_bobcycle", "0.6", CVAR_NONE, "None");
|
|
cl_bobup = Cvar_Get ("cl_bobup", "0.5", CVAR_NONE, "None");
|
|
|
|
v_kicktime = Cvar_Get ("v_kicktime", "0.5", CVAR_NONE, "None");
|
|
v_kickroll = Cvar_Get ("v_kickroll", "0.6", CVAR_NONE, "None");
|
|
v_kickpitch = Cvar_Get ("v_kickpitch", "0.6", CVAR_NONE, "None");
|
|
|
|
brightness = Cvar_Get ("brightness", "1", CVAR_ARCHIVE, "None");
|
|
contrast = Cvar_Get ("contrast", "1", CVAR_ARCHIVE, "None");
|
|
}
|