"DP_EF_BLUE "
"DP_EF_FLAME "
"DP_EF_FULLBRIGHT "
+"DP_EF_NODEPTHTEST "
"DP_EF_NODRAW "
"DP_EF_NOSHADOW "
"DP_EF_RED "
"DP_HALFLIFE_MAP "
"DP_HALFLIFE_MAP_CVAR "
"DP_INPUTBUTTONS "
+"DP_LITSPRITES "
"DP_LITSUPPORT "
"DP_MONSTERWALK "
"DP_MOVETYPEBOUNCEMISSILE "
"DP_QC_FS_SEARCH " // Black: same as in the menu qc
"DP_QC_GETLIGHT "
"DP_QC_GETSURFACE "
+"DP_QC_GETTAGINFO "
"DP_QC_MINMAXBOUND "
"DP_QC_MULTIPLETEMPSTRINGS "
"DP_QC_RANDOMVEC "
"KRIMZON_SV_PARSECLIENTCOMMAND "
"NEH_CMD_PLAY2 "
"NEH_RESTOREGAME "
+"NXQ_GFX_LETTERBOX "
"TENEBRAE_GFX_DLIGHTS "
"TW_SV_STEPCONTROL "
;
break;
if (!*check)
- PF_WARNING("setmodel: no precache\n");
+ PF_WARNING(va("setmodel: no precache for model \"%s\"\n", m));
e->v->model = PR_SetString(*check);
yaw = 0;
else
{
- yaw = (int) (atan2(value1[1], value1[0]) * 180 / M_PI);
+ yaw = (atan2(value1[1], value1[0]) * 180 / M_PI);
if (yaw < 0)
yaw += 360;
}
*/
void PF_vectoangles (void)
{
- float *value1;
- float forward;
- float yaw, pitch;
+ double value1[3], forward, yaw, pitch;
- value1 = G_VECTOR(OFS_PARM0);
+ VectorCopy(G_VECTOR(OFS_PARM0), value1);
if (value1[1] == 0 && value1[0] == 0)
{
yaw = 270;
forward = sqrt(value1[0]*value1[0] + value1[1]*value1[1]);
- pitch = (int) (atan2(value1[2], forward) * 180 / M_PI);
+ pitch = (atan2(value1[2], forward) * 180 / M_PI);
if (pitch < 0)
pitch += 360;
}
- G_FLOAT(OFS_RETURN+0) = pitch;
- G_FLOAT(OFS_RETURN+1) = yaw;
- G_FLOAT(OFS_RETURN+2) = 0;
+ VectorSet(G_VECTOR(OFS_RETURN), pitch, yaw, 0);
}
/*
char *samp;
float *pos;
float vol, attenuation;
- int i, soundnum, large;
+ int soundnum, large;
pos = G_VECTOR (OFS_PARM0);
samp = G_STRING(OFS_PARM1);
else
MSG_WriteByte (&sv.signon, svc_spawnstaticsound);
- for (i=0 ; i<3 ; i++)
- MSG_WriteDPCoord(&sv.signon, pos[i]);
+ MSG_WriteVector(&sv.signon, pos, sv.protocol);
if (large)
MSG_WriteShort (&sv.signon, soundnum);
void PF_findradius (void)
{
edict_t *ent, *chain;
- float radius;
- float radius2;
- float *org;
- float eorg[3];
+ vec_t radius, radius2;
+ vec3_t org, eorg, mins, maxs;
int i;
+ int numtouchedicts;
+ edict_t *touchedicts[MAX_EDICTS];
chain = (edict_t *)sv.edicts;
- org = G_VECTOR(OFS_PARM0);
+ VectorCopy(G_VECTOR(OFS_PARM0), org);
radius = G_FLOAT(OFS_PARM1);
radius2 = radius * radius;
- ent = NEXT_EDICT(sv.edicts);
- for (i=1 ; i<sv.num_edicts ; i++, ent = NEXT_EDICT(ent))
+ mins[0] = org[0] - radius;
+ mins[1] = org[1] - radius;
+ mins[2] = org[2] - radius;
+ maxs[0] = org[0] + radius;
+ maxs[1] = org[1] + radius;
+ maxs[2] = org[2] + radius;
+ numtouchedicts = SV_EntitiesInBox(mins, maxs, MAX_EDICTS, touchedicts);
+ if (numtouchedicts > MAX_EDICTS)
+ {
+ // this never happens
+ Con_Printf("SV_EntitiesInBox returned %i edicts, max was %i\n", numtouchedicts, MAX_EDICTS);
+ numtouchedicts = MAX_EDICTS;
+ }
+ for (i = 0;i < numtouchedicts;i++)
{
+ ent = touchedicts[i];
pr_xfunction->builtinsprofile++;
- if (ent->e->free)
- continue;
- if (ent->v->solid == SOLID_NOT)
- continue;
-
- // LordHavoc: compare against bounding box rather than center,
- // and use DotProduct instead of Length, major speedup
+ // LordHavoc: compare against bounding box rather than center so it
+ // doesn't miss large objects, and use DotProduct instead of Length
+ // for a major speedup
eorg[0] = (org[0] - ent->v->origin[0]) - bound(ent->v->mins[0], (org[0] - ent->v->origin[0]), ent->v->maxs[0]);
eorg[1] = (org[1] - ent->v->origin[1]) - bound(ent->v->mins[1], (org[1] - ent->v->origin[1]), ent->v->maxs[1]);
eorg[2] = (org[2] - ent->v->origin[2]) - bound(ent->v->mins[2], (org[2] - ent->v->origin[2]), ent->v->maxs[2]);
- if (DotProduct(eorg, eorg) > radius2)
- continue;
-
- ent->v->chain = EDICT_TO_PROG(chain);
- chain = ent;
+ if (DotProduct(eorg, eorg) < radius2)
+ {
+ ent->v->chain = EDICT_TO_PROG(chain);
+ chain = ent;
+ }
}
RETURN_EDICT(chain);
{
char *s;
int i;
+ int limit = (sv.protocol == PROTOCOL_QUAKE ? 256 : MAX_SOUNDS);
if (sv.state != ss_loading)
PF_ERROR("PF_Precache_*: Precache can only be done in spawn functions");
G_INT(OFS_RETURN) = G_INT(OFS_PARM0);
PR_CheckEmptyString (s);
- for (i=0 ; i<MAX_SOUNDS ; i++)
+ for (i=0 ; i<limit ; i++)
{
if (!sv.sound_precache[i])
{
{
char *s;
int i;
+ int limit = (sv.protocol == PROTOCOL_QUAKE ? 256 : MAX_MODELS);
if (sv.state != ss_loading)
PF_ERROR("PF_Precache_*: Precache can only be done in spawn functions");
G_INT(OFS_RETURN) = G_INT(OFS_PARM0);
PR_CheckEmptyString (s);
- for (i=0 ; i<MAX_MODELS ; i++)
+ for (i = 0;i < limit;i++)
{
if (!sv.model_precache[i])
{
float speed;
// assume failure if it returns early
- VectorClear(G_VECTOR(OFS_RETURN));
+ VectorCopy(pr_global_struct->v_forward, G_VECTOR(OFS_RETURN));
+ // if sv_aim is so high it can't possibly accept anything, skip out early
+ if (sv_aim.value >= 1)
+ return;
ent = G_EDICT(OFS_PARM0);
if (ent == sv.edicts)
void PF_WriteAngle (void)
{
- MSG_WriteAngle (WriteDest(), G_FLOAT(OFS_PARM1));
+ MSG_WriteAngle (WriteDest(), G_FLOAT(OFS_PARM1), sv.protocol);
}
void PF_WriteCoord (void)
{
- MSG_WriteDPCoord (WriteDest(), G_FLOAT(OFS_PARM1));
+ MSG_WriteCoord (WriteDest(), G_FLOAT(OFS_PARM1), sv.protocol);
}
void PF_WriteString (void)
MSG_WriteByte (&sv.signon, ent->v->skin);
for (i=0 ; i<3 ; i++)
{
- MSG_WriteDPCoord(&sv.signon, ent->v->origin[i]);
- MSG_WriteAngle(&sv.signon, ent->v->angles[i]);
+ MSG_WriteCoord(&sv.signon, ent->v->origin[i], sv.protocol);
+ MSG_WriteAngle(&sv.signon, ent->v->angles[i], sv.protocol);
}
// throw the entity away now
VectorMA(ambientcolor, 0.5, diffusecolor, G_VECTOR(OFS_RETURN));
}
-#define MAX_QC_CVARS 128
-cvar_t qc_cvar[MAX_QC_CVARS];
-int currentqc_cvar;
-
void PF_registercvar (void)
{
char *name, *value;
- cvar_t *variable;
name = G_STRING(OFS_PARM0);
value = G_STRING(OFS_PARM1);
G_FLOAT(OFS_RETURN) = 0;
+
// first check to see if it has already been defined
if (Cvar_FindVar (name))
return;
return;
}
- if (currentqc_cvar >= MAX_QC_CVARS)
- PF_ERROR("PF_registercvar: ran out of cvar slots\n");
+ Cvar_Get(name, value, 0);
-// copy the name and value
- variable = &qc_cvar[currentqc_cvar++];
- variable->name = Z_Malloc (strlen(name)+1);
- strcpy (variable->name, name);
- variable->string = Z_Malloc (strlen(value)+1);
- strcpy (variable->string, value);
- variable->value = atof (value);
-
- Cvar_RegisterVariable(variable);
G_FLOAT(OFS_RETURN) = 1; // success
}
*/
void PF_effect (void)
{
+ int i;
char *s;
s = G_STRING(OFS_PARM1);
if (!s || !s[0])
PF_WARNING("effect: no model specified\n");
- SV_StartEffect(G_VECTOR(OFS_PARM0), SV_ModelIndex(s), G_FLOAT(OFS_PARM2), G_FLOAT(OFS_PARM3), G_FLOAT(OFS_PARM4));
+ i = SV_ModelIndex(s);
+ if (i < 0)
+ PF_WARNING("effect: model not precached\n");
+ SV_StartEffect(G_VECTOR(OFS_PARM0), i, G_FLOAT(OFS_PARM2), G_FLOAT(OFS_PARM3), G_FLOAT(OFS_PARM4));
}
void PF_te_blood (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_BLOOD);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// velocity
MSG_WriteByte(&sv.datagram, bound(-128, (int) G_VECTOR(OFS_PARM1)[0], 127));
MSG_WriteByte(&sv.datagram, bound(-128, (int) G_VECTOR(OFS_PARM1)[1], 127));
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_BLOODSHOWER);
// min
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// max
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// speed
- MSG_WriteDPCoord(&sv.datagram, G_FLOAT(OFS_PARM2));
+ MSG_WriteCoord(&sv.datagram, G_FLOAT(OFS_PARM2), sv.protocol);
// count
MSG_WriteShort(&sv.datagram, bound(0, G_FLOAT(OFS_PARM3), 65535));
}
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_EXPLOSIONRGB);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// color
MSG_WriteByte(&sv.datagram, bound(0, (int) (G_VECTOR(OFS_PARM1)[0] * 255), 255));
MSG_WriteByte(&sv.datagram, bound(0, (int) (G_VECTOR(OFS_PARM1)[1] * 255), 255));
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_PARTICLECUBE);
// min
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// max
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// velocity
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2], sv.protocol);
// count
MSG_WriteShort(&sv.datagram, bound(0, G_FLOAT(OFS_PARM3), 65535));
// color
// gravity true/false
MSG_WriteByte(&sv.datagram, ((int) G_FLOAT(OFS_PARM5)) != 0);
// randomvel
- MSG_WriteDPCoord(&sv.datagram, G_FLOAT(OFS_PARM6));
+ MSG_WriteCoord(&sv.datagram, G_FLOAT(OFS_PARM6), sv.protocol);
}
void PF_te_particlerain (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_PARTICLERAIN);
// min
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// max
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// velocity
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2], sv.protocol);
// count
MSG_WriteShort(&sv.datagram, bound(0, G_FLOAT(OFS_PARM3), 65535));
// color
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_PARTICLESNOW);
// min
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// max
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// velocity
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2], sv.protocol);
// count
MSG_WriteShort(&sv.datagram, bound(0, G_FLOAT(OFS_PARM3), 65535));
// color
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_SPARK);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// velocity
MSG_WriteByte(&sv.datagram, bound(-128, (int) G_VECTOR(OFS_PARM1)[0], 127));
MSG_WriteByte(&sv.datagram, bound(-128, (int) G_VECTOR(OFS_PARM1)[1], 127));
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_GUNSHOTQUAD);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_spikequad (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_SPIKEQUAD);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_superspikequad (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_SUPERSPIKEQUAD);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_explosionquad (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_EXPLOSIONQUAD);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_smallflash (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_SMALLFLASH);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_customflash (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_CUSTOMFLASH);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// radius
MSG_WriteByte(&sv.datagram, bound(0, G_FLOAT(OFS_PARM1) / 8 - 1, 255));
// lifetime
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_GUNSHOT);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_spike (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_SPIKE);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_superspike (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_SUPERSPIKE);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_explosion (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_EXPLOSION);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_tarexplosion (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_TAREXPLOSION);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_wizspike (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_WIZSPIKE);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_knightspike (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_KNIGHTSPIKE);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_lavasplash (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_LAVASPLASH);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_teleport (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_TELEPORT);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
void PF_te_explosion2 (void)
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_EXPLOSION2);
// origin
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
// color
MSG_WriteByte(&sv.datagram, G_FLOAT(OFS_PARM1));
MSG_WriteByte(&sv.datagram, G_FLOAT(OFS_PARM2));
// owner entity
MSG_WriteShort(&sv.datagram, G_EDICTNUM(OFS_PARM0));
// start
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// end
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2], sv.protocol);
}
void PF_te_lightning2 (void)
// owner entity
MSG_WriteShort(&sv.datagram, G_EDICTNUM(OFS_PARM0));
// start
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// end
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2], sv.protocol);
}
void PF_te_lightning3 (void)
// owner entity
MSG_WriteShort(&sv.datagram, G_EDICTNUM(OFS_PARM0));
// start
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// end
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2], sv.protocol);
}
void PF_te_beam (void)
// owner entity
MSG_WriteShort(&sv.datagram, G_EDICTNUM(OFS_PARM0));
// start
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM1)[2], sv.protocol);
// end
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM2)[2], sv.protocol);
}
void PF_te_plasmaburn (void)
{
MSG_WriteByte(&sv.datagram, svc_temp_entity);
MSG_WriteByte(&sv.datagram, TE_PLASMABURN);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1]);
- MSG_WriteDPCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2]);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[0], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[1], sv.protocol);
+ MSG_WriteCoord(&sv.datagram, G_VECTOR(OFS_PARM0)[2], sv.protocol);
}
static void clippointtosurface(msurface_t *surf, vec3_t p, vec3_t out)
}
}
+/////////////////////////////////////////
+// DP_MD3_TAGINFO extension coded by VorteX
+
+//float(entity ent, string tagname) gettagindex;
+void PF_gettagindex (void)
+{
+ edict_t *e = G_EDICT(OFS_PARM0);
+ const char *tagname = G_STRING(OFS_PARM1);
+ int modelindex, tagindex, i;
+ model_t *model;
+
+ if (e == sv.edicts)
+ PF_WARNING("gettagindex: can't affect world entity\n");
+ if (e->e->free)
+ PF_WARNING("gettagindex: can't affect free entity\n");
+
+ modelindex = (int)e->v->modelindex;
+ if (modelindex <= 0 || modelindex > MAX_MODELS)
+ {
+ Con_DPrintf("gettagindex(entity #%i): null or non-precached model\n", NUM_FOR_EDICT(e));
+ return;
+ }
+ model = sv.models[modelindex];
+
+ tagindex = -1;
+ if (model->data_overridetagnamesforskin && (unsigned int)e->v->skin < (unsigned int)model->numskins && model->data_overridetagnamesforskin[(unsigned int)e->v->skin].num_overridetagnames)
+ {
+ for (i = 0; i < model->data_overridetagnamesforskin[(unsigned int)e->v->skin].num_overridetagnames; i++)
+ {
+ if (!strcmp(tagname, model->data_overridetagnamesforskin[(unsigned int)e->v->skin].data_overridetagnames[i].name))
+ {
+ tagindex = i;
+ break;
+ }
+ }
+ }
+ if (tagindex == -1)
+ {
+ for (i = 0;i < model->alias.aliasnum_tags; i++)
+ {
+ if (!(strcmp(tagname, model->alias.aliasdata_tags[i].name)))
+ {
+ tagindex = i;
+ break;
+ }
+ }
+ }
+ if (tagindex == -1)
+ Con_DPrintf("gettagindex(entity #%i): tag \"%s\" not found\n", NUM_FOR_EDICT(e), tagname);
+ G_FLOAT(OFS_RETURN) = tagindex + 1;
+};
+
+// Warnings/errors code:
+// 0 - normal (everything all-right)
+// 1 - world entity
+// 2 - free entity
+// 3 - null or non-precached model
+// 4 - no tags with requested index
+int SV_GetTagMatrix (matrix4x4_t *out, edict_t *ent, int tagindex)
+{
+ eval_t *val;
+ float scale;
+ int modelindex, tagsnum, reqframe;
+ matrix4x4_t entitymatrix, tagmatrix;
+ model_t *model;
+
+ Matrix4x4_CreateIdentity(out); // warnings and errors return identical matrix
+
+ if (ent == sv.edicts)
+ return 1;
+ if (ent->e->free)
+ return 2;
+
+ modelindex = (int)ent->v->modelindex;
+ if (modelindex <= 0 || modelindex > MAX_MODELS)
+ return 3;
+
+ model = sv.models[modelindex];
+ tagsnum = model->alias.aliasnum_tags;
+
+ if (tagindex <= 0 || tagindex > tagsnum)
+ {
+ if (tagsnum && tagindex) // Only appear if model has no tags or not-null tag requested
+ return 4;
+ return 0;
+ }
+
+ if (ent->v->frame < 0 || ent->v->frame > model->alias.aliasnum_tagframes)
+ reqframe = 0; // if model has wrong frame, engine automatically switches to model first frame
+ else
+ reqframe = ent->v->frame;
+
+ // just reusing a temp
+ modelindex = (tagindex - 1) + ent->v->frame*tagsnum;
+
+ // transform tag by its own entity matrix
+ Matrix4x4_Copy(&tagmatrix, &model->alias.aliasdata_tags[modelindex].matrix);
+ // FIXME: add scale parameter
+ scale = 1;
+ // Alias models have inverse pitch, bmodels can't have tags, so don't check for modeltype...
+ Matrix4x4_CreateFromQuakeEntity(&entitymatrix, ent->v->origin[0], ent->v->origin[1], ent->v->origin[2], -ent->v->angles[0], ent->v->angles[1], ent->v->angles[2], scale);
+ Matrix4x4_Concat(out, &entitymatrix, &tagmatrix);
+ // True origin for rotation (Matrix4x4_Concat creates wrong), this is done using all rotation matrix
+ out->m[0][3] = entitymatrix.m[0][3] + scale*tagmatrix.m[0][3]*(entitymatrix.m[0][0] + entitymatrix.m[0][1] + entitymatrix.m[0][2]);
+ out->m[1][3] = entitymatrix.m[1][3] + scale*tagmatrix.m[1][3]*(entitymatrix.m[1][0] + entitymatrix.m[1][1] + entitymatrix.m[1][2]);
+ out->m[2][3] = entitymatrix.m[2][3] + scale*tagmatrix.m[2][3]*(entitymatrix.m[2][0] + entitymatrix.m[2][1] + entitymatrix.m[2][2]);
+ /* Optimised variant with only v_forward using
+ out->m[0][3] = entitymatrix.m[0][3] + scale*entitymatrix.m[0][0]*tagmatrix.m[0][3];
+ out->m[1][3] = entitymatrix.m[1][3] + scale*entitymatrix.m[1][0]*tagmatrix.m[1][3];
+ out->m[2][3] = entitymatrix.m[2][3] + scale*entitymatrix.m[2][0]*tagmatrix.m[2][3];
+ */
+
+ // additional actions for render-view entities
+ if ((val = GETEDICTFIELDVALUE(ent, eval_viewmodelforclient)) && val->edict)
+ {// RENDER_VIEWMODEL
+ ent = EDICT_NUM(val->edict);
+ // FIXME: "circle" bug, add bobbing (cl_bob), add scale parameter
+ scale = 1;
+ Matrix4x4_CreateFromQuakeEntity(&entitymatrix, ent->v->origin[0], ent->v->origin[1], ent->v->origin[2] + ent->v->view_ofs[2], ent->v->v_angle[0], ent->v->v_angle[1], ent->v->v_angle[2], scale);
+ Matrix4x4_Concat(out, &entitymatrix, out);
+ out->m[0][3] = entitymatrix.m[0][3] + scale*entitymatrix.m[0][0]*out->m[0][3];
+ out->m[1][3] = entitymatrix.m[1][3] + scale*entitymatrix.m[1][0]*out->m[1][3];
+ out->m[2][3] = entitymatrix.m[2][3] + scale*entitymatrix.m[2][0]*out->m[2][3];
+ Con_DPrintf("SV_GetTagMatrix: returned origin is %f %f %f\n", out->m[0][3], out->m[1][3], out->m[2][3]);
+ return 0;
+ }
+ // RENDER_VIEWMODEL can't be attached by tag, right?
+ val = GETEDICTFIELDVALUE(ent, eval_tag_entity);
+ if (val->edict)
+ {// DP_GFX_QUAKE3MODELTAGS
+ do
+ {
+ ent = EDICT_NUM(val->edict);
+ // FIXME: add scale parameter
+ Matrix4x4_CreateFromQuakeEntity(&entitymatrix, ent->v->origin[0], ent->v->origin[1], ent->v->origin[2], -ent->v->angles[0], ent->v->angles[1], ent->v->angles[2], scale);
+ Matrix4x4_Concat(out, &entitymatrix, &tagmatrix);
+ // True origin for rotation (Matrix4x4_Concat creates wrong), this is done using all rotation matrix
+ out->m[0][3] = entitymatrix.m[0][3] + scale*tagmatrix.m[0][3]*(entitymatrix.m[0][0] + entitymatrix.m[0][1] + entitymatrix.m[0][2]);
+ out->m[1][3] = entitymatrix.m[1][3] + scale*tagmatrix.m[1][3]*(entitymatrix.m[1][0] + entitymatrix.m[1][1] + entitymatrix.m[1][2]);
+ out->m[2][3] = entitymatrix.m[2][3] + scale*tagmatrix.m[2][3]*(entitymatrix.m[2][0] + entitymatrix.m[2][1] + entitymatrix.m[2][2]);
+ }
+ while ((val = GETEDICTFIELDVALUE(ent, eval_tag_entity)) && val->edict);
+ }
+ return 0;
+}
+
+//vector(entity ent, float tagindex) gettaginfo;
+void PF_gettaginfo (void)
+{
+ edict_t *e = G_EDICT(OFS_PARM0);
+ int tagindex = (int)G_FLOAT(OFS_PARM1);
+ matrix4x4_t tag_matrix;
+ int returncode;
+
+ returncode = SV_GetTagMatrix(&tag_matrix, e, tagindex);
+ Matrix4x4_ToVectors(&tag_matrix, pr_global_struct->v_forward, pr_global_struct->v_right, pr_global_struct->v_up, G_VECTOR(OFS_RETURN));
+
+ switch(returncode)
+ {
+ case 1:
+ PF_WARNING("gettagindex: can't affect world entity\n");
+ break;
+ case 2:
+ PF_WARNING("gettagindex: can't affect free entity\n");
+ break;
+ case 3:
+ Con_DPrintf("SV_GetTagMatrix(entity #%i): null or non-precached model\n", NUM_FOR_EDICT(e));
+ break;
+ case 4:
+ Con_DPrintf("SV_GetTagMatrix(entity #%i): model has no tag with requested index %i\n", NUM_FOR_EDICT(e), tagindex);
+ break;
+ }
+}
+
/////////////////////////////////////////
// DP_QC_FS_SEARCH extension
str = G_STRING(OFS_PARM0);
var = Cvar_FindVar (str);
-
- tmp = PR_GetTempString();
- strcpy(tmp, var->string);
-
+ if (var)
+ {
+ tmp = PR_GetTempString();
+ strcpy(tmp, var->string);
+ }
+ else
+ tmp = "";
G_INT(OFS_RETURN) = PR_SetString(tmp);
}
PF_cvar_string, // #448 string(string s) cvar_string (DP_QC_CVAR_STRING)
PF_findflags, // #449 entity(entity start, .float fld, float match) findflags (DP_QC_FINDFLAGS)
PF_findchainflags, // #450 entity(.float fld, float match) findchainflags (DP_QC_FINDCHAINFLAGS)
-NULL, // #451
-NULL, // #452
+PF_gettagindex, // #451 float(entity ent, string tagname) gettagindex (DP_QC_GETTAGINFO)
+PF_gettaginfo, // #452 vector(entity ent, float tagindex) gettaginfo (DP_QC_GETTAGINFO)
NULL, // #453
NULL, // #454
NULL, // #455