Files
clang-p2996/lldb/source/API/SBSymbol.cpp
Greg Clayton e1cd1be6d6 Switching back to using std::tr1::shared_ptr. We originally switched away
due to RTTI worries since llvm and clang don't use RTTI, but I was able to 
switch back with no issues as far as I can tell. Once the RTTI issue wasn't
an issue, we were looking for a way to properly track weak pointers to objects
to solve some of the threading issues we have been running into which naturally
led us back to std::tr1::weak_ptr. We also wanted the ability to make a shared 
pointer from just a pointer, which is also easily solved using the 
std::tr1::enable_shared_from_this class. 

The main reason for this move back is so we can start properly having weak
references to objects. Currently a lldb_private::Thread class has a refrence
to its parent lldb_private::Process. This doesn't work well when we now hand
out a SBThread object that contains a shared pointer to a lldb_private::Thread
as this SBThread can be held onto by external clients and if they end up
using one of these objects we can easily crash.

So the next task is to start adopting std::tr1::weak_ptr where ever it makes
sense which we can do with lldb_private::Debugger, lldb_private::Target,
lldb_private::Process, lldb_private::Thread, lldb_private::StackFrame, and
many more objects now that they are no longer using intrusive ref counted
pointer objects (you can't do std::tr1::weak_ptr functionality with intrusive
pointers).

llvm-svn: 149207
2012-01-29 20:56:30 +00:00

210 lines
4.7 KiB
C++

//===-- SBSymbol.cpp --------------------------------------------*- C++ -*-===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
#include "lldb/API/SBSymbol.h"
#include "lldb/API/SBStream.h"
#include "lldb/Core/Disassembler.h"
#include "lldb/Core/Log.h"
#include "lldb/Core/Module.h"
#include "lldb/Symbol/Symbol.h"
#include "lldb/Target/ExecutionContext.h"
#include "lldb/Target/Target.h"
using namespace lldb;
using namespace lldb_private;
SBSymbol::SBSymbol () :
m_opaque_ptr (NULL)
{
}
SBSymbol::SBSymbol (lldb_private::Symbol *lldb_object_ptr) :
m_opaque_ptr (lldb_object_ptr)
{
}
SBSymbol::SBSymbol (const lldb::SBSymbol &rhs) :
m_opaque_ptr (rhs.m_opaque_ptr)
{
}
const SBSymbol &
SBSymbol::operator = (const SBSymbol &rhs)
{
m_opaque_ptr = rhs.m_opaque_ptr;
return *this;
}
SBSymbol::~SBSymbol ()
{
m_opaque_ptr = NULL;
}
void
SBSymbol::SetSymbol (lldb_private::Symbol *lldb_object_ptr)
{
m_opaque_ptr = lldb_object_ptr;
}
bool
SBSymbol::IsValid () const
{
return m_opaque_ptr != NULL;
}
const char *
SBSymbol::GetName() const
{
const char *name = NULL;
if (m_opaque_ptr)
name = m_opaque_ptr->GetMangled().GetName().AsCString();
LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_API));
if (log)
log->Printf ("SBSymbol(%p)::GetName () => \"%s\"", m_opaque_ptr, name ? name : "");
return name;
}
const char *
SBSymbol::GetMangledName () const
{
const char *name = NULL;
if (m_opaque_ptr)
name = m_opaque_ptr->GetMangled().GetMangledName().AsCString();
LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_API));
if (log)
log->Printf ("SBSymbol(%p)::GetMangledName () => \"%s\"", m_opaque_ptr, name ? name : "");
return name;
}
bool
SBSymbol::operator == (const SBSymbol &rhs) const
{
return m_opaque_ptr == rhs.m_opaque_ptr;
}
bool
SBSymbol::operator != (const SBSymbol &rhs) const
{
return m_opaque_ptr != rhs.m_opaque_ptr;
}
bool
SBSymbol::GetDescription (SBStream &description)
{
Stream &strm = description.ref();
if (m_opaque_ptr)
{
m_opaque_ptr->GetDescription (&strm,
lldb::eDescriptionLevelFull, NULL);
}
else
strm.PutCString ("No value");
return true;
}
SBInstructionList
SBSymbol::GetInstructions (SBTarget target)
{
SBInstructionList sb_instructions;
if (m_opaque_ptr)
{
Mutex::Locker api_locker;
ExecutionContext exe_ctx;
if (target.IsValid())
{
api_locker.Reset (target->GetAPIMutex().GetMutex());
target->CalculateExecutionContext (exe_ctx);
}
const AddressRange *symbol_range = m_opaque_ptr->GetAddressRangePtr();
if (symbol_range)
{
ModuleSP module_sp = symbol_range->GetBaseAddress().GetModuleSP();
if (module_sp)
{
sb_instructions.SetDisassembler (Disassembler::DisassembleRange (module_sp->GetArchitecture (),
NULL,
exe_ctx,
*symbol_range));
}
}
}
return sb_instructions;
}
lldb_private::Symbol *
SBSymbol::get ()
{
return m_opaque_ptr;
}
void
SBSymbol::reset (lldb_private::Symbol *symbol)
{
m_opaque_ptr = symbol;
}
SBAddress
SBSymbol::GetStartAddress ()
{
SBAddress addr;
if (m_opaque_ptr)
{
// Make sure the symbol is an address based symbol first:
AddressRange *symbol_arange_ptr = m_opaque_ptr->GetAddressRangePtr();
if (symbol_arange_ptr)
{
addr.SetAddress (&symbol_arange_ptr->GetBaseAddress());
}
}
return addr;
}
SBAddress
SBSymbol::GetEndAddress ()
{
SBAddress addr;
if (m_opaque_ptr)
{
AddressRange *symbol_arange_ptr = m_opaque_ptr->GetAddressRangePtr();
if (symbol_arange_ptr)
{
addr_t byte_size = symbol_arange_ptr->GetByteSize();
if (byte_size > 0)
{
addr.SetAddress (&symbol_arange_ptr->GetBaseAddress());
addr->Slide (byte_size);
}
}
}
return addr;
}
uint32_t
SBSymbol::GetPrologueByteSize ()
{
if (m_opaque_ptr)
return m_opaque_ptr->GetPrologueByteSize();
return 0;
}
SymbolType
SBSymbol::GetType ()
{
if (m_opaque_ptr)
return m_opaque_ptr->GetType();
return eSymbolTypeInvalid;
}