Vector_Encode
0x0014a120 · 2223 bytes · __cdecl
_Z13Vector_EncodePKhP8DVariantPK8SendPropP8bf_writei
Decompiled
undefined (5 params)
/* Vector_Encode(unsigned char const*, DVariant*, SendProp const*, bf_write*, int) */
void Vector_Encode(uchar *param_1,DVariant *param_2,SendProp *param_3,bf_write *param_4,int param_5)
{
byte *pbVar1;
int iVar2;
undefined4 uVar3;
int iVar4;
int iVar5;
uint uVar6;
int iVar7;
undefined4 uVar8;
uint uVar9;
byte bVar10;
uint *puVar11;
int in_GS_OFFSET;
float fVar12;
uint local_34;
uint local_30;
iVar2 = *(int *)(in_GS_OFFSET + 0x14);
uVar6 = *(uint *)(param_3 + 0x3c);
fVar12 = *(float *)param_2;
if ((uVar6 & 2) == 0) {
if ((uVar6 & 0x1000) != 0) {
bf_write::WriteBitCoordMP(param_4,fVar12,0);
goto LAB_0014a300;
}
if ((uVar6 & 0x2000) != 0) {
bf_write::WriteBitCoordMP(param_4,fVar12,1);
goto LAB_0014a300;
}
if ((uVar6 & 0x4000) != 0) {
bf_write::WriteBitCoordMP(param_4,fVar12,2);
goto LAB_0014a300;
}
if ((uVar6 & 4) != 0) {
bf_write::WriteBitFloat(param_4,fVar12);
goto LAB_0014a300;
}
if ((uVar6 & 0x20) != 0) {
bf_write::WriteBitNormal(param_4,fVar12);
goto LAB_0014a300;
}
if ((((uVar6 & 0x8000) != 0) || ((uVar6 & 0x10000) != 0)) || ((uVar6 & 0x20000) != 0)) {
bf_write::WriteBitCellCoord(param_4,fVar12,*(undefined4 *)(param_3 + 0xc));
goto LAB_0014a300;
}
if (fVar12 < *(float *)(param_3 + 0x10)) {
if ((uVar6 & 0x10) == 0) {
uVar3 = *(undefined4 *)(param_3 + 0x30);
uVar8 = GetObjectClassName(param_5);
DataTable_Warning("(class %s): Out-of-range value (%f) in SendPropFloat \'%s\', clamping.\n"
,uVar8,(double)fVar12,uVar3);
}
local_30 = *(uint *)(param_3 + 0xc);
local_34 = 0;
iVar4 = *(int *)(param_4 + 8);
uVar6 = *(uint *)(param_4 + 0xc);
if (iVar4 < (int)(local_30 + uVar6)) goto LAB_0014a5e8;
}
else {
if (fVar12 < *(float *)(param_3 + 0x14) || fVar12 == *(float *)(param_3 + 0x14)) {
local_34 = (uint)ROUND((fVar12 - *(float *)(param_3 + 0x10)) * *(float *)(param_3 + 0x34));
local_30 = *(uint *)(param_3 + 0xc);
}
else {
local_30 = *(uint *)(param_3 + 0xc);
local_34 = (1 << ((byte)local_30 & 0x1f)) - 1;
if ((uVar6 & 8) == 0) {
uVar3 = *(undefined4 *)(param_3 + 0x30);
uVar8 = GetObjectClassName(param_5);
DataTable_Warning("%s: Out-of-range value (%f) in SendPropFloat \'%s\', clamping.\n",uVar8
,(double)fVar12,uVar3);
local_30 = *(uint *)(param_3 + 0xc);
}
}
uVar6 = *(uint *)(param_4 + 0xc);
iVar4 = *(int *)(param_4 + 8);
if (iVar4 < (int)(local_30 + uVar6)) {
LAB_0014a5e8:
*(int *)(param_4 + 0xc) = iVar4;
param_4[0x10] = (bf_write)0x1;
goto LAB_0014a300;
}
}
uVar9 = uVar6 & 0x1f;
iVar4 = ((int)uVar6 >> 5) * 4;
puVar11 = (uint *)(*(int *)param_4 + iVar4);
*puVar11 = (&g_BitWriteMasks)[uVar9 * 0x21 + local_30] & *puVar11 | local_34 << (sbyte)uVar9;
iVar5 = 0x20 - uVar9;
if (iVar5 < (int)local_30) {
puVar11 = (uint *)(*(int *)param_4 + 4 + iVar4);
*puVar11 = (&g_BitWriteMasks)[local_30 - iVar5] & *puVar11 | local_34 >> ((byte)iVar5 & 0x1f);
}
*(uint *)(param_4 + 0xc) = *(int *)(param_4 + 0xc) + local_30;
uVar6 = *(uint *)(param_3 + 0x3c);
fVar12 = *(float *)(param_2 + 4);
if ((uVar6 & 2) == 0) goto LAB_0014a310;
LAB_0014a266:
bf_write::WriteBitCoord(param_4,fVar12);
}
else {
bf_write::WriteBitCoord(param_4,fVar12);
LAB_0014a300:
uVar6 = *(uint *)(param_3 + 0x3c);
fVar12 = *(float *)(param_2 + 4);
if ((uVar6 & 2) != 0) goto LAB_0014a266;
LAB_0014a310:
if ((uVar6 & 0x1000) == 0) {
if ((uVar6 & 0x2000) == 0) {
if ((uVar6 & 0x4000) == 0) {
if ((uVar6 & 4) == 0) {
if ((uVar6 & 0x20) == 0) {
if ((((uVar6 & 0x8000) == 0) && ((uVar6 & 0x10000) == 0)) && ((uVar6 & 0x20000) == 0))
{
if (fVar12 < *(float *)(param_3 + 0x10)) {
if ((uVar6 & 0x10) == 0) {
uVar3 = *(undefined4 *)(param_3 + 0x30);
uVar8 = GetObjectClassName(param_5);
DataTable_Warning("(class %s): Out-of-range value (%f) in SendPropFloat \'%s\', clamping.\n"
,uVar8,(double)fVar12,uVar3);
}
local_30 = *(uint *)(param_3 + 0xc);
local_34 = 0;
iVar4 = *(int *)(param_4 + 8);
uVar6 = *(uint *)(param_4 + 0xc);
if (iVar4 < (int)(local_30 + uVar6)) goto LAB_0014a620;
}
else {
if (fVar12 < *(float *)(param_3 + 0x14) || fVar12 == *(float *)(param_3 + 0x14)) {
local_34 = (uint)ROUND((fVar12 - *(float *)(param_3 + 0x10)) *
*(float *)(param_3 + 0x34));
local_30 = *(uint *)(param_3 + 0xc);
}
else {
local_30 = *(uint *)(param_3 + 0xc);
local_34 = (1 << ((byte)local_30 & 0x1f)) - 1;
if ((uVar6 & 8) == 0) {
uVar3 = *(undefined4 *)(param_3 + 0x30);
uVar8 = GetObjectClassName(param_5);
DataTable_Warning("%s: Out-of-range value (%f) in SendPropFloat \'%s\', clamping.\n"
,uVar8,(double)fVar12,uVar3);
local_30 = *(uint *)(param_3 + 0xc);
}
}
uVar6 = *(uint *)(param_4 + 0xc);
iVar4 = *(int *)(param_4 + 8);
if (iVar4 < (int)(local_30 + uVar6)) {
LAB_0014a620:
*(int *)(param_4 + 0xc) = iVar4;
param_4[0x10] = (bf_write)0x1;
goto LAB_0014a278;
}
}
uVar9 = uVar6 & 0x1f;
iVar4 = ((int)uVar6 >> 5) * 4;
puVar11 = (uint *)(*(int *)param_4 + iVar4);
*puVar11 = (&g_BitWriteMasks)[uVar9 * 0x21 + local_30] & *puVar11 |
local_34 << (sbyte)uVar9;
iVar5 = 0x20 - uVar9;
if (iVar5 < (int)local_30) {
puVar11 = (uint *)(*(int *)param_4 + 4 + iVar4);
*puVar11 = (&g_BitWriteMasks)[local_30 - iVar5] & *puVar11 |
local_34 >> ((byte)iVar5 & 0x1f);
}
*(uint *)(param_4 + 0xc) = *(int *)(param_4 + 0xc) + local_30;
uVar6 = *(uint *)(param_3 + 0x3c);
fVar12 = *(float *)(param_2 + 8);
goto joined_r0x0014a427;
}
bf_write::WriteBitCellCoord(param_4,fVar12,*(undefined4 *)(param_3 + 0xc));
}
else {
bf_write::WriteBitNormal(param_4,fVar12);
}
}
else {
bf_write::WriteBitFloat(param_4,fVar12);
}
}
else {
bf_write::WriteBitCoordMP(param_4,fVar12,2);
}
}
else {
bf_write::WriteBitCoordMP(param_4,fVar12,1);
}
}
else {
bf_write::WriteBitCoordMP(param_4,fVar12,0);
}
}
LAB_0014a278:
uVar6 = *(uint *)(param_3 + 0x3c);
fVar12 = *(float *)(param_2 + 8);
joined_r0x0014a427:
if ((uVar6 & 0x20) == 0) {
if ((uVar6 & 2) == 0) {
if ((uVar6 & 0x1000) == 0) {
if ((uVar6 & 0x2000) == 0) {
if ((uVar6 & 0x4000) == 0) {
if ((uVar6 & 4) == 0) {
if ((((uVar6 & 0x8000) == 0) && ((uVar6 & 0x10000) == 0)) && ((uVar6 & 0x20000) == 0))
{
if (*(float *)(param_3 + 0x10) <= fVar12) {
if (fVar12 < *(float *)(param_3 + 0x14) || fVar12 == *(float *)(param_3 + 0x14)) {
local_30 = (uint)ROUND((fVar12 - *(float *)(param_3 + 0x10)) *
*(float *)(param_3 + 0x34));
iVar4 = *(int *)(param_3 + 0xc);
}
else {
iVar4 = *(int *)(param_3 + 0xc);
local_30 = (1 << ((byte)iVar4 & 0x1f)) - 1;
if ((uVar6 & 8) == 0) {
uVar3 = *(undefined4 *)(param_3 + 0x30);
uVar8 = GetObjectClassName(param_5);
DataTable_Warning("%s: Out-of-range value (%f) in SendPropFloat \'%s\', clamping.\n"
,uVar8,(double)fVar12,uVar3);
iVar4 = *(int *)(param_3 + 0xc);
}
}
}
else {
if ((uVar6 & 0x10) == 0) {
uVar3 = *(undefined4 *)(param_3 + 0x30);
uVar8 = GetObjectClassName(param_5);
DataTable_Warning("(class %s): Out-of-range value (%f) in SendPropFloat \'%s\', clamping.\n"
,uVar8,(double)fVar12,uVar3);
}
iVar4 = *(int *)(param_3 + 0xc);
local_30 = 0;
}
uVar6 = *(uint *)(param_4 + 0xc);
if (*(int *)(param_4 + 8) < (int)(uVar6 + iVar4)) {
*(int *)(param_4 + 0xc) = *(int *)(param_4 + 8);
param_4[0x10] = (bf_write)0x1;
}
else {
uVar9 = uVar6 & 0x1f;
iVar5 = ((int)uVar6 >> 5) * 4;
puVar11 = (uint *)(*(int *)param_4 + iVar5);
*puVar11 = (&g_BitWriteMasks)[uVar9 * 0x21 + iVar4] & *puVar11 |
local_30 << (sbyte)uVar9;
iVar7 = 0x20 - uVar9;
if (iVar7 < iVar4) {
puVar11 = (uint *)(*(int *)param_4 + 4 + iVar5);
*puVar11 = (&g_BitWriteMasks)[iVar4 - iVar7] & *puVar11 |
local_30 >> ((byte)iVar7 & 0x1f);
}
*(int *)(param_4 + 0xc) = *(int *)(param_4 + 0xc) + iVar4;
}
}
else {
bf_write::WriteBitCellCoord(param_4,fVar12,*(undefined4 *)(param_3 + 0xc));
}
}
else {
bf_write::WriteBitFloat(param_4,fVar12);
}
}
else {
bf_write::WriteBitCoordMP(param_4,fVar12,2);
}
}
else {
bf_write::WriteBitCoordMP(param_4,fVar12,1);
}
}
else {
bf_write::WriteBitCoordMP(param_4,fVar12,0);
}
}
else {
bf_write::WriteBitCoord(param_4,fVar12);
}
}
else {
iVar4 = *(int *)(param_4 + 0xc);
if (iVar4 < *(int *)(param_4 + 8)) {
if (param_4[0x10] == (bf_write)0x0) {
bVar10 = (byte)(1 << ((byte)iVar4 & 7));
if (fVar12 <= -0.0004885198) {
pbVar1 = (byte *)(*(int *)param_4 + (iVar4 >> 3));
*pbVar1 = *pbVar1 | bVar10;
}
else {
pbVar1 = (byte *)(*(int *)param_4 + (iVar4 >> 3));
*pbVar1 = *pbVar1 & ~bVar10;
}
*(int *)(param_4 + 0xc) = *(int *)(param_4 + 0xc) + 1;
}
}
else {
param_4[0x10] = (bf_write)0x1;
}
}
if (iVar2 == *(int *)(in_GS_OFFSET + 0x14)) {
return;
}
/* WARNING: Subroutine does not return */
__stack_chk_fail();
}
SourceMod gamedata
paste intoaddons/sourcemod/gamedata/<your_plugin>.txt
used as the SourceMod key — change to fit your plugin's convention
SourceMod library name (server / engine / matchmaking)
Just a Signatures{} block, ready to drop into a gamedata
file. Wire it up in your plugin however you like - SDKCall, DHooks,
raw memory ops, or anything else.
Signatures + Functions block. The plugin uses
DHookCreateFromConf - DHooks reads return type, this-type,
calling convention, and argument types straight from the gamedata. Less
boilerplate in the plugin, types travel with the gamedata.
Gamedata KeyValues
DHooks plugin example
Type inference is best-effort from the C signature - sanity-check the DHooks types before shipping.