Base_CmdKeyValues::ReadFromBuffer
0x000b6780 · 981 bytes · __thiscall
_ZN17Base_CmdKeyValues14ReadFromBufferER7bf_read
Decompiled
undefined (2 params)
/* WARNING: Globals starting with '_' overlap smaller symbols at the same address */
/* Base_CmdKeyValues::ReadFromBuffer(bf_read&) */
uint __thiscall Base_CmdKeyValues::ReadFromBuffer(Base_CmdKeyValues *this,bf_read *param_1)
{
int iVar1;
code *pcVar2;
uint *puVar3;
undefined4 *puVar4;
int iVar5;
char cVar6;
uint uVar7;
int iVar8;
KeyValues *this_00;
int *piVar9;
uint uVar10;
int in_GS_OFFSET;
undefined4 uStackY_b0;
char *in_stack_ffffff58;
uint local_70;
int local_6c;
int local_68;
int local_64;
int local_60;
int local_5c;
undefined1 local_58 [56];
int local_20;
piVar9 = (int *)&stack0xffffff54;
local_6c = 0;
local_20 = *(int *)(in_GS_OFFSET + 0x14);
local_68 = 0;
if (_exit == 0) {
local_5c = 0;
}
else {
in_stack_ffffff58 = (char *)&local_6c;
uStackY_b0 = 0xb6815;
(**(code **)(_exit + 0x50))();
local_5c = _exit;
}
iVar1 = _DAT_0040b9d4;
local_64 = local_6c;
local_60 = local_68;
if ((_DAT_0040b028 == 0) && (DAT_0040b02c != '\0')) {
LAB_000b6845:
this_00 = *(KeyValues **)(this + 0x48);
}
else {
/* try { // try from 000b69c6 to 000b6a14 has its CatchHandler @ 000b6bc7 */
uStackY_b0 = 0xb69cb;
iVar8 = ThreadGetCurrentId();
if (iVar1 != iVar8) goto LAB_000b6845;
if ((char *)*_DAT_0040b030 != "Base_CmdKeyValues::ReadFromBuffer") {
in_stack_ffffff58 = "Base_CmdKeyValues::ReadFromBuffer";
uStackY_b0 = 0xb6a08;
_DAT_0040b030 =
(int *)CVProfNode::GetSubNode((char *)_DAT_0040b030,0x2a0b50,&DAT_00000001,0x2a054b);
}
uStackY_b0 = 0xb6a15;
CVProfNode::EnterScope();
DAT_0040b02c = '\0';
this_00 = *(KeyValues **)(this + 0x48);
}
if (this_00 == (KeyValues *)0x0) {
/* try { // try from 000b6a2e to 000b6a32 has its CatchHandler @ 000b6bc3 */
uStackY_b0 = 0xb6a33;
this_00 = KeyValues::operator_new((KeyValues *)0x2c,(uint)in_stack_ffffff58);
/* try { // try from 000b6a48 to 000b6a4c has its CatchHandler @ 000b6b8e */
uStackY_b0 = 0xb6a4d;
KeyValues::KeyValues();
*(KeyValues **)(this + 0x48) = this_00;
}
/* try { // try from 000b6853 to 000b6910 has its CatchHandler @ 000b6bc3 */
uStackY_b0 = 0xb6858;
KeyValues::Clear(this_00);
iVar1 = *(int *)(param_1 + 0x14);
if (iVar1 < 0x20) {
local_70 = *(uint *)(param_1 + 0x10);
puVar3 = *(uint **)(param_1 + 0x18);
if (puVar3 == *(uint **)(param_1 + 0x1c)) {
*(undefined4 *)(param_1 + 0x14) = 1;
uVar7 = 0;
*(undefined4 *)(param_1 + 0x10) = 0;
*(uint **)(param_1 + 0x18) = puVar3 + 1;
param_1[4] = (bf_read)0x1;
goto LAB_000b6945;
}
if (*(uint **)(param_1 + 0x1c) < puVar3) {
param_1[4] = (bf_read)0x1;
*(undefined4 *)(param_1 + 0x10) = 0;
}
else {
*(uint **)(param_1 + 0x18) = puVar3 + 1;
uVar7 = *puVar3;
*(uint *)(param_1 + 0x10) = uVar7;
if (param_1[4] == (bf_read)0x0) {
*(int *)(param_1 + 0x14) = iVar1;
uVar10 = ((&CBitBuffer::s_nMaskTable)[0x20 - iVar1] & uVar7) << ((byte)iVar1 & 0x1f) |
local_70;
*(uint *)(param_1 + 0x10) = uVar7 >> ((byte)(0x20 - iVar1) & 0x1f);
goto LAB_000b6882;
}
}
}
else {
*(int *)(param_1 + 0x14) = iVar1 + -0x20;
uVar10 = *(uint *)(param_1 + 0x10);
if (iVar1 + -0x20 == 0) {
puVar4 = *(undefined4 **)(param_1 + 0x18);
*(undefined4 *)(param_1 + 0x14) = 0x20;
if (puVar4 == *(undefined4 **)(param_1 + 0x1c)) {
*(undefined4 *)(param_1 + 0x14) = 1;
*(undefined4 *)(param_1 + 0x10) = 0;
*(undefined4 **)(param_1 + 0x18) = puVar4 + 1;
}
else {
if (*(undefined4 **)(param_1 + 0x1c) < puVar4) {
param_1[4] = (bf_read)0x1;
goto LAB_000b687b;
}
*(undefined4 **)(param_1 + 0x18) = puVar4 + 1;
*(undefined4 *)(param_1 + 0x10) = *puVar4;
}
}
else {
LAB_000b687b:
*(undefined4 *)(param_1 + 0x10) = 0;
}
LAB_000b6882:
if (0 < (int)uVar10) {
iVar1 = *(int *)(param_1 + 8);
if (*(int *)(param_1 + 0x20) == 0) {
iVar8 = 0;
}
else {
iVar8 = (((uint)(*(int *)(param_1 + 0x18) - *(int *)(param_1 + 0x20)) >> 2) * 0x20 -
*(int *)(param_1 + 0x14)) + (*(uint *)(param_1 + 0xc) & 3) * 8;
if (iVar1 < iVar8) {
iVar8 = iVar1;
}
}
if ((int)uVar10 <= iVar1 - iVar8 >> 3) {
iVar1 = -((uVar10 + 0xf & 0xfffffff0) + 0x10);
*(bf_read **)(&stack0xffffff54 + iVar1) = param_1;
local_70 = (int)&local_70 + iVar1;
*(uint *)(&stack0xffffff5c + iVar1) = uVar10 * 8;
*(uint *)(&stack0xffffff58 + iVar1) = local_70;
*(undefined4 *)((int)&uStackY_b0 + iVar1) = 0xb68f3;
CBitRead::ReadBits(*(CBitRead **)(&stack0xffffff54 + iVar1),
*(void **)(&stack0xffffff58 + iVar1),*(int *)(&stack0xffffff5c + iVar1));
uVar7 = local_70;
*(uint *)(&stack0xffffff5c + iVar1) = uVar10;
*(undefined4 *)(&stack0xffffff60 + iVar1) = 8;
*(undefined1 **)(&stack0xffffff54 + iVar1) = local_58;
*(uint *)(&stack0xffffff58 + iVar1) = uVar7;
*(undefined4 *)((int)&uStackY_b0 + iVar1) = 0xb6911;
CUtlBuffer::CUtlBuffer
(*(CUtlBuffer **)(&stack0xffffff54 + iVar1),*(void **)(&stack0xffffff58 + iVar1),
*(int *)(&stack0xffffff5c + iVar1),*(int *)(&stack0xffffff60 + iVar1));
*(undefined4 *)(&stack0xffffff58 + iVar1) = 1;
*(undefined1 **)(&stack0xffffff54 + iVar1) = local_58;
/* try { // try from 000b691c to 000b692f has its CatchHandler @ 000b6bb7 */
*(undefined4 *)((int)&uStackY_b0 + iVar1) = 0xb6921;
CUtlBuffer::ActivateByteSwapping
(*(CUtlBuffer **)(&stack0xffffff54 + iVar1),(bool)(&stack0xffffff58)[iVar1]);
*(undefined1 **)(&stack0xffffff58 + iVar1) = local_58;
*(undefined4 *)(&stack0xffffff54 + iVar1) = *(undefined4 *)(this + 0x48);
*(undefined4 *)((int)&uStackY_b0 + iVar1) = 0xb6930;
uVar7 = KeyValues::ReadAsBinary
(*(KeyValues **)(&stack0xffffff54 + iVar1),
*(CUtlBuffer **)(&stack0xffffff58 + iVar1));
if ((char)uVar7 != '\0') {
uVar7 = (byte)param_1[4] ^ 1;
}
*(undefined1 **)(&stack0xffffff54 + iVar1) = local_58;
*(undefined4 *)((int)&uStackY_b0 + iVar1) = 0xb6945;
CUtlMemory<unsigned_char,int>::Purge
(*(CUtlMemory<unsigned_char,int> **)(&stack0xffffff54 + iVar1));
piVar9 = (int *)(&stack0xffffff54 + iVar1);
goto LAB_000b6945;
}
}
}
uVar7 = 0;
piVar9 = (int *)&stack0xffffff54;
LAB_000b6945:
iVar1 = _DAT_0040b9d4;
if ((DAT_0040b02c == '\0') || (_DAT_0040b028 != 0)) {
piVar9[-1] = 0xb6962;
iVar8 = ThreadGetCurrentId();
if (iVar1 == iVar8) {
*piVar9 = (int)_DAT_0040b030;
piVar9[-1] = 0xb6b3d;
cVar6 = CVProfNode::ExitScope();
if (cVar6 != '\0') {
_DAT_0040b030 = (int *)_DAT_0040b030[0x19];
}
DAT_0040b02c = _DAT_0040b030 == (int *)0x40b034;
}
}
iVar8 = local_5c;
iVar1 = local_64;
if (local_5c != 0) {
piVar9[5] = 0;
iVar5 = local_60;
piVar9[4] = 0;
piVar9[3] = 0;
*piVar9 = iVar8;
piVar9[1] = iVar1;
piVar9[2] = iVar5;
pcVar2 = *(code **)(iVar8 + 0x54);
piVar9[-1] = 0xb699d;
(*pcVar2)();
}
if (local_20 != *(int *)(in_GS_OFFSET + 0x14)) {
/* WARNING: Subroutine does not return */
piVar9[-1] = (int)&LAB_000b6b8e;
__stack_chk_fail();
}
return uVar7;
}
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.