KeyValues::WriteAsBinary
0x00b6e3b0 · 1875 bytes · __thiscall
_ZN9KeyValues13WriteAsBinaryER10CUtlBuffer
Decompiled
undefined (2 params)
/* KeyValues::WriteAsBinary(CUtlBuffer&) */
bool __thiscall KeyValues::WriteAsBinary(KeyValues *this,CUtlBuffer *param_1)
{
float fVar1;
CUtlBuffer CVar2;
undefined4 uVar3;
int iVar4;
char cVar5;
char *pcVar6;
void *pvVar7;
undefined4 *puVar8;
KeyValues KVar9;
int iVar10;
int iVar11;
bool bVar12;
int local_40;
undefined1 local_3c;
undefined1 uStack_3b;
undefined1 local_3a;
undefined1 uStack_39;
undefined1 local_38;
undefined1 uStack_37;
undefined1 uStack_36;
undefined1 uStack_35;
undefined1 local_34;
undefined1 uStack_33;
undefined1 uStack_32;
undefined1 uStack_31;
undefined1 local_30;
undefined1 uStack_2f;
undefined1 uStack_2e;
undefined1 uStack_2d;
undefined1 local_2c [4];
undefined4 local_28;
undefined4 local_24;
undefined4 local_20;
CVar2 = param_1[0x15];
bVar12 = false;
if ((((byte)CVar2 & 1) == 0) &&
(bVar12 = (bool)((byte)CVar2 & 1), param_1[0x14] == (CUtlBuffer)0x0)) {
if (this != (KeyValues *)0x0) {
KVar9 = this[0x10];
if (((byte)CVar2 & 1) == 0) goto LAB_00b6e51b;
do {
CUtlBuffer::Printf(param_1,"%u",(uint)(byte)KVar9);
LAB_00b6e40c:
pcVar6 = (char *)GetName(this);
CUtlBuffer::PutString(param_1,pcVar6);
switch(this[0x10]) {
case (KeyValues)0x0:
WriteAsBinary(*(KeyValues **)(this + 0x20),param_1);
break;
case (KeyValues)0x1:
pcVar6 = *(char **)(this + 4);
if ((pcVar6 == (char *)0x0) || (*pcVar6 == '\0')) {
CUtlBuffer::PutString(param_1,"");
}
else {
CUtlBuffer::PutString(param_1,pcVar6);
}
break;
case (KeyValues)0x2:
uVar3 = *(undefined4 *)(this + 0xc);
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,4);
if (cVar5 != '\0') {
if (((byte)param_1[0x34] & 1) == 0) {
*(undefined4 *)
(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = uVar3;
iVar11 = *(int *)(param_1 + 0x10);
}
else {
iVar11 = *(int *)(param_1 + 0x10);
pvVar7 = (void *)((iVar11 - *(int *)(param_1 + 0x20)) + *(int *)param_1);
if (pvVar7 != (void *)0x0) {
uStack_35 = (undefined1)((uint)uVar3 >> 0x18);
uStack_36 = (undefined1)((uint)uVar3 >> 0x10);
local_24._0_2_ = CONCAT11(uStack_36,uStack_35);
uStack_37 = (undefined1)((uint)uVar3 >> 8);
local_24._0_3_ = CONCAT12(uStack_37,(undefined2)local_24);
local_38 = (undefined1)uVar3;
local_30 = local_38;
LAB_00b6ea61:
local_24 = CONCAT13(local_30,(undefined3)local_24);
_V_memcpy(pvVar7,&local_24,4);
iVar11 = *(int *)(param_1 + 0x10);
}
}
LAB_00b6e7dc:
*(int *)(param_1 + 0x10) = iVar11 + 4;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%d",uVar3);
}
break;
case (KeyValues)0x3:
fVar1 = *(float *)(this + 0xc);
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,4);
if (cVar5 != '\0') {
if (((byte)param_1[0x34] & 1) == 0) {
*(float *)(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20)))
= fVar1;
iVar11 = *(int *)(param_1 + 0x10);
}
else {
iVar11 = *(int *)(param_1 + 0x10);
pvVar7 = (void *)((iVar11 - *(int *)(param_1 + 0x20)) + *(int *)param_1);
if (pvVar7 != (void *)0x0) {
uStack_31 = (undefined1)((uint)fVar1 >> 0x18);
uStack_32 = (undefined1)((uint)fVar1 >> 0x10);
local_24._0_2_ = CONCAT11(uStack_32,uStack_31);
uStack_33 = (undefined1)((uint)fVar1 >> 8);
local_24._0_3_ = CONCAT12(uStack_33,(undefined2)local_24);
local_34 = SUB41(fVar1,0);
local_30 = local_34;
goto LAB_00b6ea61;
}
}
goto LAB_00b6e7dc;
}
}
else {
CUtlBuffer::Printf(param_1,"%f",(double)fVar1);
}
break;
case (KeyValues)0x4:
uVar3 = *(undefined4 *)(this + 0xc);
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,4);
if (cVar5 != '\0') {
if (((byte)param_1[0x34] & 1) == 0) {
*(undefined4 *)
(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = uVar3;
iVar11 = *(int *)(param_1 + 0x10);
}
else {
iVar11 = *(int *)(param_1 + 0x10);
pvVar7 = (void *)((iVar11 - *(int *)(param_1 + 0x20)) + *(int *)param_1);
if (pvVar7 != (void *)0x0) {
uStack_2d = (undefined1)((uint)uVar3 >> 0x18);
uStack_2e = (undefined1)((uint)uVar3 >> 0x10);
local_24._0_2_ = CONCAT11(uStack_2e,uStack_2d);
uStack_2f = (undefined1)((uint)uVar3 >> 8);
local_24._0_3_ = CONCAT12(uStack_2f,(undefined2)local_24);
local_30 = (undefined1)uVar3;
goto LAB_00b6ea61;
}
}
goto LAB_00b6e7dc;
}
}
else {
CUtlBuffer::Printf(param_1,"%u",uVar3);
}
break;
case (KeyValues)0x5:
if (*(wchar_t **)(this + 8) == (wchar_t *)0x0) {
local_40 = 0;
}
else {
local_40 = _V_wcslen(*(wchar_t **)(this + 8));
}
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,2);
if (cVar5 != '\0') {
if (((byte)param_1[0x34] & 1) == 0) {
*(short *)(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20)))
= (short)local_40;
iVar11 = *(int *)(param_1 + 0x10);
}
else {
iVar11 = *(int *)(param_1 + 0x10);
pvVar7 = (void *)((iVar11 - *(int *)(param_1 + 0x20)) + *(int *)param_1);
if (pvVar7 != (void *)0x0) {
uStack_3b = (undefined1)((uint)local_40 >> 8);
local_3c = (undefined1)local_40;
local_24._0_2_ = CONCAT11(local_3c,uStack_3b);
_V_memcpy(pvVar7,&local_24,2);
iVar11 = *(int *)(param_1 + 0x10);
}
}
*(int *)(param_1 + 0x10) = iVar11 + 2;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%d",(int)(short)local_40);
}
iVar11 = 0;
if (0 < local_40) {
do {
uVar3 = *(undefined4 *)(*(int *)(this + 8) + iVar11 * 4);
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,2);
if (cVar5 != '\0') {
if (((byte)param_1[0x34] & 1) == 0) {
*(short *)(*(int *)param_1 +
(*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = (short)uVar3;
iVar10 = *(int *)(param_1 + 0x10);
}
else {
iVar10 = *(int *)(param_1 + 0x10);
pvVar7 = (void *)((iVar10 - *(int *)(param_1 + 0x20)) + *(int *)param_1);
if (pvVar7 != (void *)0x0) {
uStack_39 = (undefined1)((uint)uVar3 >> 8);
local_3a = (undefined1)uVar3;
local_24._0_2_ = CONCAT11(local_3a,uStack_39);
_V_memcpy(pvVar7,&local_24,2);
iVar10 = *(int *)(param_1 + 0x10);
}
}
*(int *)(param_1 + 0x10) = iVar10 + 2;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%d",(int)(short)uVar3);
}
iVar11 = iVar11 + 1;
} while (iVar11 != local_40);
}
break;
case (KeyValues)0x6:
KVar9 = this[0xc];
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,1);
if (cVar5 != '\0') {
*(KeyValues *)
(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = KVar9;
*(int *)(param_1 + 0x10) = *(int *)(param_1 + 0x10) + 1;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%u",(uint)(byte)KVar9);
}
KVar9 = this[0xd];
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,1);
if (cVar5 != '\0') {
*(KeyValues *)
(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = KVar9;
*(int *)(param_1 + 0x10) = *(int *)(param_1 + 0x10) + 1;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%u",(uint)(byte)KVar9);
}
KVar9 = this[0xe];
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,1);
if (cVar5 != '\0') {
*(KeyValues *)
(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = KVar9;
*(int *)(param_1 + 0x10) = *(int *)(param_1 + 0x10) + 1;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%u",(uint)(byte)KVar9);
}
KVar9 = this[0xf];
if (((byte)param_1[0x15] & 1) == 0) {
cVar5 = CUtlBuffer::CheckPut(param_1,1);
if (cVar5 != '\0') {
*(KeyValues *)
(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = KVar9;
*(int *)(param_1 + 0x10) = *(int *)(param_1 + 0x10) + 1;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%u",(uint)(byte)KVar9);
}
break;
case (KeyValues)0x7:
uVar3 = **(undefined4 **)(this + 4);
if (((byte)param_1[0x15] & 1) == 0) {
local_28 = (*(undefined4 **)(this + 4))[1];
cVar5 = CUtlBuffer::CheckPut(param_1,8);
if (cVar5 != '\0') {
if (((byte)param_1[0x34] & 1) == 0) {
iVar11 = *(int *)(param_1 + 0x10);
iVar10 = *(int *)param_1;
iVar4 = *(int *)(param_1 + 0x20);
*(undefined4 *)(iVar10 + (iVar11 - iVar4)) = uVar3;
*(undefined4 *)(iVar10 + 4 + (iVar11 - iVar4)) = local_28;
iVar11 = *(int *)(param_1 + 0x10);
}
else {
iVar11 = *(int *)(param_1 + 0x10);
puVar8 = (undefined4 *)((iVar11 - *(int *)(param_1 + 0x20)) + *(int *)param_1);
if (puVar8 != (undefined4 *)0x0) {
local_20 = puVar8[1];
local_24 = *puVar8;
iVar11 = 0;
do {
iVar10 = iVar11 + 1;
*(undefined1 *)((int)&local_24 + iVar11) =
*(undefined1 *)((int)&local_28 + (3 - iVar11));
iVar11 = iVar10;
} while (iVar10 != 8);
_V_memcpy(puVar8,&local_24,8);
iVar11 = *(int *)(param_1 + 0x10);
}
}
*(int *)(param_1 + 0x10) = iVar11 + 8;
CUtlBuffer::AddNullTermination(param_1);
}
}
else {
CUtlBuffer::Printf(param_1,"%I64d",uVar3);
}
}
this = *(KeyValues **)(this + 0x1c);
if (this == (KeyValues *)0x0) {
if (((byte)param_1[0x15] & 1) == 0) goto LAB_00b6e9d8;
CUtlBuffer::Printf(param_1,"%u",0xb);
goto LAB_00b6e45a;
}
KVar9 = this[0x10];
} while (((byte)param_1[0x15] & 1) != 0);
LAB_00b6e51b:
cVar5 = CUtlBuffer::CheckPut(param_1,1);
if (cVar5 != '\0') {
*(KeyValues *)(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) =
KVar9;
*(int *)(param_1 + 0x10) = *(int *)(param_1 + 0x10) + 1;
CUtlBuffer::AddNullTermination(param_1);
}
goto LAB_00b6e40c;
}
LAB_00b6e9d8:
cVar5 = CUtlBuffer::CheckPut(param_1,1);
if (cVar5 != '\0') {
*(undefined1 *)(*(int *)param_1 + (*(int *)(param_1 + 0x10) - *(int *)(param_1 + 0x20))) = 0xb
;
*(int *)(param_1 + 0x10) = *(int *)(param_1 + 0x10) + 1;
CUtlBuffer::AddNullTermination(param_1);
}
LAB_00b6e45a:
bVar12 = param_1[0x14] == (CUtlBuffer)0x0;
}
return bVar12;
}
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.