MiAddMdlToPartitionTree
INT64 __stdcall MiAddMdlToPartitionTree(PEX_SPIN_LOCK SpinLock, INT64 a2){
char v2;
unsigned __int64 v3;
int v4;
unsigned __int64 v5;
__int64 v6;
__int64 v8;
unsigned __int64 *v9;
unsigned int v10;
__int64 v11;
v3 = (unsigned __int64)*(unsigned int *)(a2 + 40) >> 12;
v4 = (v2 & 1) == 0;
v5 = 0i64;
v6 = -1i64;
v8 = 0i64;
v9 = (unsigned __int64 *)SpinLock;
v10 = 1;
do
{
v11 = (unsigned int)v8;
if( (unsigned int)v8 == v3 )
{
if( !v5 )
return v10;
LABEL_4:
if( v10 )
{
if( !MiAddRangeToPartitionTree(v9, v6, v5, v4) )
{
LODWORD(v8) = -1;
v3 = v11 - v5;
v5 = 0i64;
v10 = 0;
LABEL_8:
v9 = (unsigned __int64 *)SpinLock;
goto LABEL_9;
}
}
else
{
MiClearRangeInPartitionTree((RTL_BALANCED_NODE **)v9, v6, v5);
}
if( (unsigned int)v8 == v3 )
return v10;
v5 = 0i64;
LODWORD(v8) = v8 - 1;
goto LABEL_8;
}
if( v5 )
{
v9 = (unsigned __int64 *)SpinLock;
if( *(_QWORD *)(a2 + 8 * v8 + 40) + 1i64 != *(_QWORD *)(a2 + 8 * v8 + 48) )
goto LABEL_4;
++v5;
}
else
{
v6 = *(_QWORD *)(a2 + 8 * v8 + 48);
v5 = 1i64;
}
LABEL_9:
v8 = (unsigned int)(v8 + 1);
}
while( (unsigned int)v8 <= v3 );
return v10;
}Referenced by:
MiAllocatePartitionPhysicalPages