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407 lines (345 loc) · 9.4 KB
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/**
* =============================================================================
* Source Python
* Copyright (C) 2012-2015 Source Python Development Team. All rights reserved.
* =============================================================================
*
* This program is free software; you can redistribute it and/or modify it under
* the terms of the GNU General Public License, version 3.0, as published by the
* Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
* FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
* details.
*
* You should have received a copy of the GNU General Public License along with
* this program. If not, see <http://www.gnu.org/licenses/>.
*
* As a special exception, the Source Python Team gives you permission
* to link the code of this program (as well as its derivative works) to
* "Half-Life 2," the "Source Engine," and any Game MODs that run on software
* by the Valve Corporation. You must obey the GNU General Public License in
* all respects for all other code used. Additionally, the Source.Python
* Development Team grants this exception to all derivative works.
*/
#include "memory_rtti.h"
#include "utilities/call_python.h"
#include <assert.h>
#include <ctype.h>
#include <new>
#include <stdlib.h>
#include <string>
#ifdef WIN32
struct _s_RTTIBaseClassDescriptor;
typedef _s_RTTIBaseClassDescriptor ClassDescriptor;
#else
class __class_type_info;
typedef __class_type_info ClassDescriptor;
#endif
class CBaseType : public IBaseType
{
public:
CBaseType(const ClassDescriptor *descriptor, size_t offset);
~CBaseType()
{
for (size_t i=0; i<m_BaseTypes; i++)
{
m_Bases[i].~CBaseType();
}
free(m_Bases);
}
ptrdiff_t GetOffset()
{
return m_Offset;
}
const std::type_info &GetTypeInfo()
{
return *m_TypeInfo;
}
size_t GetNumBaseClasses()
{
return m_BaseTypes;
}
IBaseType *GetBaseClass(size_t num)
{
assert(num < GetNumBaseClasses());
return &m_Bases[num];
}
const char* GetName()
{
return GetTypeName(GetTypeInfo());
}
bool IsDerivedFrom(const char* name)
{
return IsClassDerivedFrom(this, name);
}
bool IsDerivedFrom(IBaseType* pType)
{
return IsDerivedFrom(pType->GetName());
}
void Dump()
{
Dump(0);
}
void Dump(int level)
{
std::string x = "";
for (int i=0; i < level; ++i)
x += "-";
PythonLog(-1, "%s%s", x.c_str(), GetName());
for (unsigned int i=0; i < GetNumBaseClasses(); ++i) {
GetBaseClass(i)->Dump(level + 1);
}
}
private:
ptrdiff_t m_Offset;
size_t m_BaseTypes;
CBaseType *m_Bases;
const std::type_info *m_TypeInfo;
};
/* OS Specific Implementations */
const char *GetTypeName(const std::type_info &type)
{
const char *temp = type.name();
#ifdef WIN32
/* WIN32 uses 'class <classname>' */
while (*temp != ' ')
{
temp++;
}
return ++temp;
#else
/* GCC uses '<length><classname>' */
while (isdigit(*temp))
{
temp++;
}
return temp;
#endif
}
#ifdef WIN32
#include <windows.h>
using namespace std;
using std::type_info;
typedef std::type_info TypeDescriptor;
struct PMD
{
ptrdiff_t mdisp; //vftable offset
ptrdiff_t pdisp; //vbtable offset
ptrdiff_t vdisp; //vftable offset (for virtual base class)
};
struct _s_RTTICompleteObjectLocator;
struct _s_RTTIClassHierarchyDescriptor;
struct _s_RTTIBaseClassDescriptor;
struct _s_RTTICompleteObjectLocator
{
DWORD signature;
DWORD offset; //vftable offset to this
DWORD cdOffset;
TypeDescriptor *pTypeDescriptor;
_s_RTTIClassHierarchyDescriptor *pClassHierarchyDescriptor;
};
struct _s_RTTIClassHierarchyDescriptor
{
DWORD signature;
DWORD attributes; //bit 0 multiple inheritance, bit 1 virtual inheritance
size_t numBaseClasses; //at least 1 (all base classes, including itself)
_s_RTTIBaseClassDescriptor **pBaseClassArray;
};
struct _s_RTTIBaseClassDescriptor
{
TypeDescriptor *pTypeDescriptor;
size_t numBaseClasses; //direct base classes
PMD pmd; //Len=0xC
DWORD attributes;
_s_RTTIClassHierarchyDescriptor *pClassHierarchyDescriptor; //of this base class
};
template <typename R> // only ptrdiff_t and size_t allowed
R ReadData(size_t ptr)
{
return *(( const R *)ptr);
}
template < typename R, typename T>
R ReadData( const T *ptr)
{
return ReadData<R>((size_t)ptr);
}
//We assume the vftable is at offset 0
//If it is not the case, we assume the vbtable should be at offset 0, and with its first entry equal to 0 (point to itself).
//Then its second entry should contain the offset of vftable
template < typename T>
_s_RTTICompleteObjectLocator *GetCompleteObjectLocator( const T *ptr) //not have vbtable
{
ptrdiff_t offset=0;
if (ReadData<ptrdiff_t>(ReadData<size_t>(ptr))==0) offset=ReadData<ptrdiff_t>(ReadData<size_t>(ptr)+4);
return (_s_RTTICompleteObjectLocator *)(ReadData<size_t>(ReadData<size_t>((size_t)ptr+offset)-4));
}
CBaseType::CBaseType(const ClassDescriptor *descriptor, size_t offset)
{
m_BaseTypes = 0;
int basecount = descriptor->numBaseClasses;
int current = 1;
while (current <= basecount)
{
_s_RTTIBaseClassDescriptor *temp = descriptor->pClassHierarchyDescriptor->pBaseClassArray[current];
current+= temp->numBaseClasses;
current++;
m_BaseTypes++;
}
m_Offset = descriptor->pmd.mdisp + offset;
m_TypeInfo = descriptor->pTypeDescriptor;
m_Bases = (CBaseType *)malloc(sizeof(CBaseType) * m_BaseTypes);
current = 1;
int count = 0;
while (current <= basecount)
{
_s_RTTIBaseClassDescriptor *temp = descriptor->pClassHierarchyDescriptor->pBaseClassArray[current];
current+= temp->numBaseClasses;
current++;
new (&m_Bases[count]) CBaseType(temp, m_Offset);
count++;
}
}
#else
class __class_type_info;
/* helper class for __vmi_class_type */
class __base_class_info
{
/* abi defined member variables */
public:
const __class_type_info *__base; /* base class type */
long __offset_flags; /* offset and info */
/* implementation defined types */
public:
enum __offset_flags_masks {
__virtual_mask = 0x1,
__public_mask = 0x2,
hwm_bit = 2,
offset_shift = 8 /* bits to shift offset by */
};
/* implementation defined member functions */
public:
bool __is_virtual_p () const
{
return __offset_flags & __virtual_mask;
}
bool __is_public_p () const
{
return __offset_flags & __public_mask;
}
__PTRDIFF_TYPE__ __offset () const
{
// This shift, being of a signed type, is implementation defined. GCC
// implements such shifts as arithmetic, which is what we want.
return static_cast<__PTRDIFF_TYPE__> (__offset_flags) >> offset_shift;
}
};
class __class_type_info
: public std::type_info
{
};
class __si_class_type_info
: public __class_type_info
{
public:
const __class_type_info *__base_type;
};
class __vmi_class_type_info : public __class_type_info
{
/* abi defined member variables */
public:
unsigned int __flags; /* details about the class hierarchy */
unsigned int __base_count; /* number of direct bases */
__base_class_info const __base_info[1]; /* array of bases */
};
struct vtable_prefix {
ptrdiff_t whole_object; // offset to most derived object
const __class_type_info *whole_type; // pointer to most derived type_info
const void *origin; // what a class's vptr points to
};
template <typename T>
inline const T *
adjust_pointer (const void *base, ptrdiff_t offset)
{
return reinterpret_cast <const T *>
(reinterpret_cast <const char *> (base) + offset);
}
const __class_type_info *typeid2(const void *ptr)
{
const void *pVtable = *(const void **)(ptr);
const vtable_prefix *prefix = adjust_pointer <vtable_prefix> (pVtable, -offsetof (vtable_prefix, origin));
return prefix->whole_type;
}
enum InheritanceType
{
Inheritance_None, /* Doubles as unknown */
Inheritance_Single,
Inheritance_VirtualMultiple,
};
InheritanceType GetInheritanceType(const __class_type_info *ptr)
{
const __class_type_info *typeinfo = typeid2(ptr);
if (strcmp(typeinfo->name(), "N10__cxxabiv120__si_class_type_infoE") == 0)
{
return Inheritance_Single;
}
else if (strcmp(typeinfo->name(), "N10__cxxabiv121__vmi_class_type_infoE") == 0)
{
return Inheritance_VirtualMultiple;
}
return Inheritance_None;
}
CBaseType::CBaseType(const ClassDescriptor *descriptor, size_t offset)
{
InheritanceType type = GetInheritanceType(descriptor);
switch (type)
{
case Inheritance_Single:
{
m_BaseTypes = 1;
break;
}
case Inheritance_VirtualMultiple:
{
__vmi_class_type_info *vmiObject = (__vmi_class_type_info *)descriptor;
m_BaseTypes = vmiObject->__base_count;
break;
}
default:
{
m_BaseTypes = 0;
}
}
m_Offset = offset;
m_TypeInfo = descriptor;
if (type == Inheritance_None)
{
m_Bases = NULL;
return;
}
m_Bases = (CBaseType *)malloc(sizeof(CBaseType) * m_BaseTypes);
if (type == Inheritance_Single)
{
__si_class_type_info *siObject = (__si_class_type_info *)descriptor;
new (m_Bases) CBaseType(siObject->__base_type, offset);
return;
}
__vmi_class_type_info *vmiObject = (__vmi_class_type_info *)descriptor;
for (size_t i=0; i<m_BaseTypes; i++)
{
new (&m_Bases[i]) CBaseType(vmiObject->__base_info[i].__base, offset + vmiObject->__base_info[i].__offset());
}
}
#endif
IBaseType *GetType(const void *ptr)
{
#ifdef _WIN32
_s_RTTICompleteObjectLocator *locator = GetCompleteObjectLocator(ptr);
return new CBaseType(locator->pClassHierarchyDescriptor->pBaseClassArray[0], 0);
#elif __linux__
return new CBaseType(typeid2(ptr), 0);
#else
#error Unsupported platform.
#endif
}