cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
169 lines
6.1 KiB
OpenEdge ABL
169 lines
6.1 KiB
OpenEdge ABL
%feature("docstring",
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"Represents one of the stack frames associated with a thread.
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SBThread contains SBFrame(s). For example (from test/lldbutil.py), ::
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def print_stacktrace(thread, string_buffer = False):
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'''Prints a simple stack trace of this thread.'''
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...
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for i in range(depth):
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frame = thread.GetFrameAtIndex(i)
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function = frame.GetFunction()
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load_addr = addrs[i].GetLoadAddress(target)
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if not function:
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file_addr = addrs[i].GetFileAddress()
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start_addr = frame.GetSymbol().GetStartAddress().GetFileAddress()
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symbol_offset = file_addr - start_addr
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print >> output, ' frame #{num}: {addr:#016x} {mod}`{symbol} + {offset}'.format(
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num=i, addr=load_addr, mod=mods[i], symbol=symbols[i], offset=symbol_offset)
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else:
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print >> output, ' frame #{num}: {addr:#016x} {mod}`{func} at {file}:{line} {args}'.format(
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num=i, addr=load_addr, mod=mods[i],
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func='%s [inlined]' % funcs[i] if frame.IsInlined() else funcs[i],
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file=files[i], line=lines[i],
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args=get_args_as_string(frame, showFuncName=False) if not frame.IsInlined() else '()')
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...
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And, ::
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for frame in thread:
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print frame
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See also SBThread."
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) lldb::SBFrame;
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%feature("docstring", "
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Get the Canonical Frame Address for this stack frame.
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This is the DWARF standard's definition of a CFA, a stack address
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that remains constant throughout the lifetime of the function.
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Returns an lldb::addr_t stack address, or LLDB_INVALID_ADDRESS if
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the CFA cannot be determined."
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) lldb::SBFrame::GetCFA;
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%feature("docstring", "
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Gets the deepest block that contains the frame PC.
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See also GetFrameBlock()."
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) lldb::SBFrame::GetBlock;
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%feature("docstring", "
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Get the appropriate function name for this frame. Inlined functions in
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LLDB are represented by Blocks that have inlined function information, so
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just looking at the SBFunction or SBSymbol for a frame isn't enough.
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This function will return the appropriate function, symbol or inlined
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function name for the frame.
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This function returns:
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- the name of the inlined function (if there is one)
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- the name of the concrete function (if there is one)
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- the name of the symbol (if there is one)
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- NULL
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See also IsInlined()."
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) lldb::SBFrame::GetFunctionName;
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%feature("docstring", "
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Returns the language of the frame's SBFunction, or if there.
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is no SBFunction, guess the language from the mangled name.
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."
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) lldb::SBFrame::GuessLanguage;
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%feature("docstring", "
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Return true if this frame represents an inlined function.
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See also GetFunctionName()."
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) lldb::SBFrame::IsInlined;
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%feature("docstring", "
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Returns an SBValueList which is an array of one or more register
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sets that exist for this thread.
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Each SBValue in the SBValueList represents one register-set.
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The first register-set will be the general purpose registers --
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the registers printed by the `register read` command-line in lldb, with
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no additional arguments.
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The register-set SBValue will have a name, e.g.
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SBFrame::GetRegisters().GetValueAtIndex(0).GetName()
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By convention, certain stubs choose to name their general-purpose
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register-set the 'General Purpose Registers', but that is not required.
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A register-set SBValue will have children, one child per register
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in the register-set."
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) lldb::SBFrame::GetRegisters;
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%feature("docstring", "
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Return true if this frame is artificial (e.g a frame synthesized to
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capture a tail call). Local variables may not be available in an artificial
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frame."
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) lldb::SBFrame::IsArtificial;
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%feature("docstring", "
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The version that doesn't supply a 'use_dynamic' value will use the
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target's default."
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) lldb::SBFrame::EvaluateExpression;
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%feature("docstring", "
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Gets the lexical block that defines the stack frame. Another way to think
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of this is it will return the block that contains all of the variables
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for a stack frame. Inlined functions are represented as SBBlock objects
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that have inlined function information: the name of the inlined function,
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where it was called from. The block that is returned will be the first
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block at or above the block for the PC (SBFrame::GetBlock()) that defines
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the scope of the frame. When a function contains no inlined functions,
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this will be the top most lexical block that defines the function.
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When a function has inlined functions and the PC is currently
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in one of those inlined functions, this method will return the inlined
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block that defines this frame. If the PC isn't currently in an inlined
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function, the lexical block that defines the function is returned."
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) lldb::SBFrame::GetFrameBlock;
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%feature("docstring", "
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The version that doesn't supply a 'use_dynamic' value will use the
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target's default."
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) lldb::SBFrame::GetVariables;
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%feature("docstring", "
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The version that doesn't supply a 'use_dynamic' value will use the
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target's default."
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) lldb::SBFrame::FindVariable;
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%feature("docstring", "
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Get a lldb.SBValue for a variable path.
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Variable paths can include access to pointer or instance members: ::
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rect_ptr->origin.y
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pt.x
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Pointer dereferences: ::
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*this->foo_ptr
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**argv
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Address of: ::
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&pt
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&my_array[3].x
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Array accesses and treating pointers as arrays: ::
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int_array[1]
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pt_ptr[22].x
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Unlike `EvaluateExpression()` which returns :py:class:`SBValue` objects
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with constant copies of the values at the time of evaluation,
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the result of this function is a value that will continue to
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track the current value of the value as execution progresses
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in the current frame."
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) lldb::SBFrame::GetValueForVariablePath;
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%feature("docstring", "
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Find variables, register sets, registers, or persistent variables using
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the frame as the scope.
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The version that doesn't supply a ``use_dynamic`` value will use the
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target's default."
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) lldb::SBFrame::FindValue;
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