DataMapInit<CCarProp>
0x007f7100 · 1578 bytes · __cdecl
_Z11DataMapInitI8CCarPropEP9datamap_tPT_
Decompiled
datamap_t * (1 param)
/* WARNING: Globals starting with '_' overlap smaller symbols at the same address */
/* datamap_t* DataMapInit<CCarProp>(CCarProp*) */
datamap_t * DataMapInit<CCarProp>(CCarProp *param_1)
{
int iVar1;
char *pcVar2;
char *pcVar3;
int iVar4;
int iVar5;
if ((DataMapInit<CCarProp>(CCarProp*)::nameHolder == '\0') &&
(iVar1 = __cxa_guard_acquire(&DataMapInit<CCarProp>(CCarProp*)::nameHolder), iVar1 != 0)) {
DataMapInit<CCarProp>(CCarProp*)::nameHolder = "CCarProp";
DAT_00ff2710 = (void *)0x0;
DAT_00ff2714 = 0;
DAT_00ff2718 = 0;
DAT_00ff271c = 0;
_DAT_00ff2720 = (void *)0x0;
DAT_00ff270c = 8;
__cxa_guard_release(&DataMapInit<CCarProp>(CCarProp*)::nameHolder);
__cxa_atexit(CDatadescGeneratedNameHolder::~CDatadescGeneratedNameHolder,
&DataMapInit<CCarProp>(CCarProp*)::nameHolder,&__dso_handle);
}
CCarProp::m_DataMap._12_4_ = CPhysicsProp::m_DataMap;
if ((DataMapInit<CCarProp>(CCarProp*)::dataDesc != '\0') ||
(iVar1 = __cxa_guard_acquire(&DataMapInit<CCarProp>(CCarProp*)::dataDesc), iVar1 == 0))
goto LAB_007f7129;
DataMapInit<CCarProp>(CCarProp*)::dataDesc._340_4_ = eventFuncs;
DataMapInit<CCarProp>(CCarProp*)::dataDesc._404_4_ = eventFuncs;
DataMapInit<CCarProp>(CCarProp*)::dataDesc._468_4_ = eventFuncs;
DataMapInit<CCarProp>(CCarProp*)::dataDesc._532_4_ = eventFuncs;
/* try { // try from 007f7184 to 007f7671 has its CatchHandler @ 007f7782 */
pcVar2 = operator_new__(DAT_00ff270c + 0xe);
pcVar3 = stpcpy(pcVar2,DataMapInit<CCarProp>(CCarProp*)::nameHolder);
builtin_strncpy(pcVar3,"AlarmEndThink",0xe);
iVar4 = DAT_00ff271c;
iVar1 = DAT_00ff271c + 1;
if ((DAT_00ff2714 < iVar1) && (-1 < DAT_00ff2718)) {
if (DAT_00ff2718 == 0) {
if (DAT_00ff2714 == 0) {
if (iVar1 < 9) {
DAT_00ff2714 = 8;
goto LAB_007f747f;
}
DAT_00ff2714 = 8;
}
do {
DAT_00ff2714 = DAT_00ff2714 * 2;
} while (DAT_00ff2714 < iVar1);
}
else {
for (DAT_00ff2714 = (DAT_00ff271c / DAT_00ff2718 + 1) * DAT_00ff2718; DAT_00ff2714 < iVar1;
DAT_00ff2714 = (DAT_00ff2714 + iVar1) / 2) {
}
}
LAB_007f747f:
if (DAT_00ff2710 == (void *)0x0) {
DAT_00ff2710 = malloc(DAT_00ff2714 << 2);
}
else {
DAT_00ff2710 = realloc(DAT_00ff2710,DAT_00ff2714 << 2);
iVar1 = DAT_00ff271c + 1;
}
}
iVar5 = iVar4 * 4;
iVar4 = (iVar1 - iVar4) + -1;
DAT_00ff271c = iVar1;
_DAT_00ff2720 = DAT_00ff2710;
if (0 < iVar4) {
_V_memmove((void *)((int)DAT_00ff2710 + iVar5 + 4),(void *)((int)DAT_00ff2710 + iVar5),iVar4 * 4
);
}
if ((undefined4 *)(iVar5 + (int)DAT_00ff2710) != (undefined4 *)0x0) {
*(undefined4 *)(iVar5 + (int)DAT_00ff2710) = pcVar2;
}
DataMapInit<CCarProp>(CCarProp*)::dataDesc._580_4_ = pcVar2;
pcVar2 = operator_new__(DAT_00ff270c + 0x10);
pcVar3 = stpcpy(pcVar2,DataMapInit<CCarProp>(CCarProp*)::nameHolder);
builtin_strncpy(pcVar3,"ChirpStartThink",0x10);
iVar4 = DAT_00ff271c;
iVar1 = DAT_00ff271c + 1;
if ((DAT_00ff2714 < iVar1) && (-1 < DAT_00ff2718)) {
if (DAT_00ff2718 == 0) {
if (DAT_00ff2714 == 0) {
if (iVar1 < 9) {
DAT_00ff2714 = 8;
goto LAB_007f74ef;
}
DAT_00ff2714 = 8;
}
do {
DAT_00ff2714 = DAT_00ff2714 * 2;
} while (DAT_00ff2714 < iVar1);
}
else {
for (DAT_00ff2714 = (DAT_00ff271c / DAT_00ff2718 + 1) * DAT_00ff2718; DAT_00ff2714 < iVar1;
DAT_00ff2714 = (DAT_00ff2714 + iVar1) / 2) {
}
}
LAB_007f74ef:
if (DAT_00ff2710 == (void *)0x0) {
DAT_00ff2710 = malloc(DAT_00ff2714 << 2);
}
else {
DAT_00ff2710 = realloc(DAT_00ff2710,DAT_00ff2714 << 2);
iVar1 = DAT_00ff271c + 1;
}
}
iVar5 = iVar4 * 4;
iVar4 = (iVar1 - iVar4) + -1;
DAT_00ff271c = iVar1;
_DAT_00ff2720 = DAT_00ff2710;
if (0 < iVar4) {
_V_memmove((void *)((int)DAT_00ff2710 + iVar5 + 4),(void *)((int)DAT_00ff2710 + iVar5),iVar4 * 4
);
}
if ((undefined4 *)(iVar5 + (int)DAT_00ff2710) != (undefined4 *)0x0) {
*(undefined4 *)(iVar5 + (int)DAT_00ff2710) = pcVar2;
}
DataMapInit<CCarProp>(CCarProp*)::dataDesc._644_4_ = pcVar2;
pcVar2 = operator_new__(DAT_00ff270c + 0xe);
pcVar3 = stpcpy(pcVar2,DataMapInit<CCarProp>(CCarProp*)::nameHolder);
builtin_strncpy(pcVar3,"ChirpEndThink",0xe);
iVar4 = DAT_00ff271c;
iVar1 = DAT_00ff271c + 1;
if ((DAT_00ff2714 < iVar1) && (-1 < DAT_00ff2718)) {
if (DAT_00ff2718 == 0) {
if (DAT_00ff2714 == 0) {
if (iVar1 < 9) {
DAT_00ff2714 = 8;
goto LAB_007f761f;
}
DAT_00ff2714 = 8;
}
do {
DAT_00ff2714 = DAT_00ff2714 * 2;
} while (DAT_00ff2714 < iVar1);
}
else {
for (DAT_00ff2714 = (DAT_00ff271c / DAT_00ff2718 + 1) * DAT_00ff2718; DAT_00ff2714 < iVar1;
DAT_00ff2714 = (DAT_00ff2714 + iVar1) / 2) {
}
}
LAB_007f761f:
if (DAT_00ff2710 == (void *)0x0) {
DAT_00ff2710 = malloc(DAT_00ff2714 << 2);
}
else {
DAT_00ff2710 = realloc(DAT_00ff2710,DAT_00ff2714 << 2);
iVar1 = DAT_00ff271c + 1;
}
}
iVar5 = iVar4 * 4;
iVar4 = (iVar1 - iVar4) + -1;
DAT_00ff271c = iVar1;
_DAT_00ff2720 = DAT_00ff2710;
if (0 < iVar4) {
_V_memmove((void *)((int)DAT_00ff2710 + iVar5 + 4),(void *)((int)DAT_00ff2710 + iVar5),iVar4 * 4
);
}
if ((undefined4 *)(iVar5 + (int)DAT_00ff2710) != (undefined4 *)0x0) {
*(undefined4 *)(iVar5 + (int)DAT_00ff2710) = pcVar2;
}
DataMapInit<CCarProp>(CCarProp*)::dataDesc._708_4_ = pcVar2;
pcVar2 = operator_new__(DAT_00ff270c + 0xb);
pcVar3 = stpcpy(pcVar2,DataMapInit<CCarProp>(CCarProp*)::nameHolder);
builtin_strncpy(pcVar3,"AlarmTouch",0xb);
iVar4 = DAT_00ff271c;
iVar1 = DAT_00ff271c + 1;
if ((DAT_00ff2714 < iVar1) && (-1 < DAT_00ff2718)) {
if (DAT_00ff2718 == 0) {
if (DAT_00ff2714 == 0) {
if (iVar1 < 9) {
DAT_00ff2714 = 8;
goto LAB_007f7587;
}
DAT_00ff2714 = 8;
}
do {
DAT_00ff2714 = DAT_00ff2714 * 2;
} while (DAT_00ff2714 < iVar1);
}
else {
for (DAT_00ff2714 = (DAT_00ff271c / DAT_00ff2718 + 1) * DAT_00ff2718; DAT_00ff2714 < iVar1;
DAT_00ff2714 = (DAT_00ff2714 + iVar1) / 2) {
}
}
LAB_007f7587:
if (DAT_00ff2710 == (void *)0x0) {
DAT_00ff2710 = malloc(DAT_00ff2714 << 2);
}
else {
DAT_00ff2710 = realloc(DAT_00ff2710,DAT_00ff2714 << 2);
iVar1 = DAT_00ff271c + 1;
}
}
iVar5 = iVar4 * 4;
iVar4 = (iVar1 - iVar4) + -1;
DAT_00ff271c = iVar1;
_DAT_00ff2720 = DAT_00ff2710;
if (0 < iVar4) {
_V_memmove((void *)((int)DAT_00ff2710 + iVar5 + 4),(void *)((int)DAT_00ff2710 + iVar5),iVar4 * 4
);
}
if ((undefined4 *)(iVar5 + (int)DAT_00ff2710) != (undefined4 *)0x0) {
*(undefined4 *)(iVar5 + (int)DAT_00ff2710) = pcVar2;
}
DataMapInit<CCarProp>(CCarProp*)::dataDesc._772_4_ = pcVar2;
__cxa_guard_release(&DataMapInit<CCarProp>(CCarProp*)::dataDesc);
LAB_007f7129:
CCarProp::m_DataMap._4_4_ = 0xc;
CCarProp::m_DataMap._0_4_ = 0xf51a20;
return (datamap_t *)CCarProp::m_DataMap;
}
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.