Files
llvm/lldb/scripts/interface/SBFunction.i
Jason Molenda 6ab659a922 First part of an attempt to indicate to the user when they are
debugging optimized code.  Adds new methods on Function/SBFunction
to query whether a given function is optimized.  Adds a new
function.is-optimized format entity and changes the default 
frame-format to append "[opt]" if the function was built with
optimization.

The only indication that a binary was built with optimization
that we have right now is the presence of the DW_AT_APPLE_optimized
attribute (DW_FORM_flag value 1) in the DW_TAG_compile_unit.
The absence of this flag may mean that the compile_unit was not
compiled with optimization, or it may mean that the producer 
does not generate this attribute.

Currently this only works for dSYM debugging.  When we create
the CompileUnit with dwarf-in-.o-file debugging we don't have
the attribute value yet so it's not set.  I need to find the
flag value when we do start to read the .o file DWARF and 
set the CompileUnit's status at that point - but haven't 
done it yet.

I'm also going to add a mechanism for issuing warnings to users
such that they're only issued once in a debug session and 
there is away for users to suppress these warnings altogether
via .lldbinit file settings.  But I want to get this changeset
committed now that it's at a useful state.

<rdar://problem/19281172> 

llvm-svn: 243508
2015-07-29 00:42:47 +00:00

143 lines
5.2 KiB
C++

//===-- SWIG Interface for SBFunction ---------------------------*- C++ -*-===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
namespace lldb {
%feature("docstring",
"Represents a generic function, which can be inlined or not.
For example (from test/lldbutil.py, but slightly modified for doc purpose),
...
frame = thread.GetFrameAtIndex(i)
addr = frame.GetPCAddress()
load_addr = addr.GetLoadAddress(target)
function = frame.GetFunction()
mod_name = frame.GetModule().GetFileSpec().GetFilename()
if not function:
# No debug info for 'function'.
symbol = frame.GetSymbol()
file_addr = addr.GetFileAddress()
start_addr = symbol.GetStartAddress().GetFileAddress()
symbol_name = symbol.GetName()
symbol_offset = file_addr - start_addr
print >> output, ' frame #{num}: {addr:#016x} {mod}`{symbol} + {offset}'.format(
num=i, addr=load_addr, mod=mod_name, symbol=symbol_name, offset=symbol_offset)
else:
# Debug info is available for 'function'.
func_name = frame.GetFunctionName()
file_name = frame.GetLineEntry().GetFileSpec().GetFilename()
line_num = frame.GetLineEntry().GetLine()
print >> output, ' frame #{num}: {addr:#016x} {mod}`{func} at {file}:{line} {args}'.format(
num=i, addr=load_addr, mod=mod_name,
func='%s [inlined]' % func_name] if frame.IsInlined() else func_name,
file=file_name, line=line_num, args=get_args_as_string(frame, showFuncName=False))
...
") SBFunction;
class SBFunction
{
public:
SBFunction ();
SBFunction (const lldb::SBFunction &rhs);
~SBFunction ();
bool
IsValid () const;
const char *
GetName() const;
const char *
GetDisplayName() const;
const char *
GetMangledName () const;
lldb::SBInstructionList
GetInstructions (lldb::SBTarget target);
lldb::SBInstructionList
GetInstructions (lldb::SBTarget target, const char *flavor);
lldb::SBAddress
GetStartAddress ();
lldb::SBAddress
GetEndAddress ();
uint32_t
GetPrologueByteSize ();
lldb::SBType
GetType ();
lldb::SBBlock
GetBlock ();
lldb::LanguageType
GetLanguage ();
%feature("docstring", "
Returns true if the function was compiled with optimization.
Optimization, in this case, is meant to indicate that the debugger
experience may be confusing for the user -- variables optimized away,
stepping jumping between source lines -- and the driver may want to
provide some guidance to the user about this.
Returns false if unoptimized, or unknown.") GetIsOptimized;
bool
GetIsOptimized();
bool
GetDescription (lldb::SBStream &description);
bool
operator == (const lldb::SBFunction &rhs) const;
bool
operator != (const lldb::SBFunction &rhs) const;
%pythoncode %{
def get_instructions_from_current_target (self):
return self.GetInstructions (target)
__swig_getmethods__["addr"] = GetStartAddress
if _newclass: addr = property(GetStartAddress, None, doc='''A read only property that returns an lldb object that represents the start address (lldb.SBAddress) for this function.''')
__swig_getmethods__["end_addr"] = GetEndAddress
if _newclass: end_addr = property(GetEndAddress, None, doc='''A read only property that returns an lldb object that represents the end address (lldb.SBAddress) for this function.''')
__swig_getmethods__["block"] = GetBlock
if _newclass: block = property(GetBlock, None, doc='''A read only property that returns an lldb object that represents the top level lexical block (lldb.SBBlock) for this function.''')
__swig_getmethods__["instructions"] = get_instructions_from_current_target
if _newclass: instructions = property(get_instructions_from_current_target, None, doc='''A read only property that returns an lldb object that represents the instructions (lldb.SBInstructionList) for this function.''')
__swig_getmethods__["mangled"] = GetMangledName
if _newclass: mangled = property(GetMangledName, None, doc='''A read only property that returns the mangled (linkage) name for this function as a string.''')
__swig_getmethods__["name"] = GetName
if _newclass: name = property(GetName, None, doc='''A read only property that returns the name for this function as a string.''')
__swig_getmethods__["prologue_size"] = GetPrologueByteSize
if _newclass: prologue_size = property(GetPrologueByteSize, None, doc='''A read only property that returns the size in bytes of the prologue instructions as an unsigned integer.''')
__swig_getmethods__["type"] = GetType
if _newclass: type = property(GetType, None, doc='''A read only property that returns an lldb object that represents the return type (lldb.SBType) for this function.''')
%}
};
} // namespace lldb