NET_Tick::WriteToBuffer
0x000a9470 · 553 bytes · __thiscall
_ZN8NET_Tick13WriteToBufferER8bf_write
Decompiled
undefined (2 params)
/* NET_Tick::WriteToBuffer(bf_write&) */
byte __thiscall NET_Tick::WriteToBuffer(NET_Tick *this,bf_write *param_1)
{
int iVar1;
uint uVar2;
int iVar3;
uint uVar4;
uint uVar5;
uint uVar6;
uint *puVar7;
sbyte local_20;
uVar2 = (**(code **)(*(int *)this + 0x24))(this);
uVar4 = *(uint *)(param_1 + 0xc);
if (*(int *)(param_1 + 8) < (int)(uVar4 + 6)) {
*(int *)(param_1 + 0xc) = *(int *)(param_1 + 8);
param_1[0x10] = (bf_write)0x1;
}
else {
iVar1 = ((int)uVar4 >> 5) * 4;
uVar4 = uVar4 & 0x1f;
puVar7 = (uint *)(iVar1 + *(int *)param_1);
local_20 = (sbyte)uVar4;
*puVar7 = uVar2 << local_20 | *puVar7 & *(uint *)(&DAT_003f2db8 + uVar4 * 0x84);
iVar3 = 0x20 - uVar4;
if (iVar3 < 6) {
puVar7 = (uint *)(*(int *)param_1 + 4 + iVar1);
*puVar7 = uVar2 >> ((byte)iVar3 & 0x1f) | (&g_BitWriteMasks)[6 - iVar3] & *puVar7;
}
*(int *)(param_1 + 0xc) = *(int *)(param_1 + 0xc) + 6;
}
bf_write::WriteLong(param_1,*(long *)(this + 0x4c));
uVar2 = (uint)(*(float *)(this + 0x50) * 100000.0);
uVar4 = 0xffff;
if (((int)uVar2 < 0x10000) && (uVar4 = 0, -1 < (int)uVar2)) {
uVar4 = uVar2;
}
uVar5 = *(uint *)(param_1 + 0xc);
uVar2 = *(uint *)(param_1 + 8);
if ((int)uVar2 < (int)(uVar5 + 0x10)) {
*(uint *)(param_1 + 0xc) = uVar2;
param_1[0x10] = (bf_write)0x1;
uVar4 = uVar2;
}
else {
iVar1 = ((int)uVar5 >> 5) * 4;
uVar5 = uVar5 & 0x1f;
puVar7 = (uint *)(iVar1 + *(int *)param_1);
local_20 = (sbyte)uVar5;
*puVar7 = uVar4 << local_20 | *puVar7 & *(uint *)(&DAT_003f2de0 + uVar5 * 0x84);
iVar3 = 0x20 - uVar5;
if (iVar3 < 0x10) {
puVar7 = (uint *)(*(int *)param_1 + 4 + iVar1);
*puVar7 = uVar4 >> ((byte)iVar3 & 0x1f) | (&g_BitWriteMasks)[0x10 - iVar3] & *puVar7;
}
uVar2 = *(int *)(param_1 + 0xc) + 0x10;
*(uint *)(param_1 + 0xc) = uVar2;
uVar4 = *(uint *)(param_1 + 8);
}
uVar6 = (uint)(*(float *)(this + 0x54) * 100000.0);
uVar5 = 0xffff;
if (((int)uVar6 < 0x10000) && (uVar5 = 0, -1 < (int)uVar6)) {
uVar5 = uVar6;
}
if ((int)(uVar2 + 0x10) <= (int)uVar4) {
iVar1 = ((int)uVar2 >> 5) * 4;
uVar2 = uVar2 & 0x1f;
puVar7 = (uint *)(*(int *)param_1 + iVar1);
*puVar7 = *puVar7 & *(uint *)(&DAT_003f2de0 + uVar2 * 0x84) | uVar5 << (sbyte)uVar2;
iVar3 = 0x20 - uVar2;
if (iVar3 < 0x10) {
puVar7 = (uint *)(*(int *)param_1 + 4 + iVar1);
*puVar7 = uVar5 >> ((byte)iVar3 & 0x1f) | (&g_BitWriteMasks)[0x10 - iVar3] & *puVar7;
}
*(int *)(param_1 + 0xc) = *(int *)(param_1 + 0xc) + 0x10;
return (byte)param_1[0x10] ^ 1;
}
*(uint *)(param_1 + 0xc) = uVar4;
param_1[0x10] = (bf_write)0x1;
return 0;
}
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.