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2023-05-25[NFC][Py Reformat] Reformat python files in lldbJonas Devlieghere
This is an ongoing series of commits that are reformatting our Python code. Reformatting is done with `black` (23.1.0). If you end up having problems merging this commit because you have made changes to a python file, the best way to handle that is to run `git checkout --ours <yourfile>` and then reformat it with black. RFC: https://discourse.llvm.org/t/rfc-document-and-standardize-python-code-style Differential revision: https://reviews.llvm.org/D151460
2022-06-17[lldb][tests] Automatically call compute_mydir (NFC)Dave Lee
Eliminate boilerplate of having each test manually assign to `mydir` by calling `compute_mydir` in lldbtest.py. Differential Revision: https://reviews.llvm.org/D128077
2020-11-16[lldb] Add support for using variables with C++ keywords names in non-C++ ↵Raphael Isemann
expressions LLDB is currently always activating C++ when parsing expressions as LLDB itself is using C++ features when creating the final AST that will be codegen'd (specifically, references to variables, namespaces and using declarations are used). This is causing problems for users that have variables in non-C++ programs (e.g. plain C or Objective-C) that have names which are keywords in C++. Expressions referencing those variables fail to parse as LLDB's Clang parser thinks those identifiers are C++ keywords and not identifiers that may belong to a declaration. We can't just disable C++ in the expression parser for those situations as replacing the functionality of the injected C++ code isn't trivial. So this patch is just disabling most keywords that are exclusive to C++ in LLDB's Clang parser when we are in a non-C++ expression. There are a few keywords we can't disable for now: * `using` as that's currently used in some situations to inject variables into the expression function. * `__null` as that's used by LLDB to define `NULL`/`Nil`/`nil`. Getting rid of these last two keywords is possible but is a large enough change that this will be handled in follow up patches. Note that this only changes the keyword status of those tokens but this patch does not remove any C++ functionality from the expression parser. The type system still follows C++ rules and so does the rest of the expression parser. There is another small change that gives the hardcoded macro definitions in LLDB a higher precedence than the macros imported from the Objective-C modules. The reason for this is that the Objective-C modules in LLDB are actually parsed in Objective-C++ mode and they end up providing the C++ definitions of certain system macros (like `NULL` being defined as `nullptr`). So we have to move the LLDB definition forward and surround the definition from the module with an `#ifdef` to make sure that we use the correct LLDB definition that doesn't reference C++ keywords. Or to give an example, this is how the expression source code changes: Before: ``` #define NULL (nullptr) // injected module definition #ifndef NULL #define NULL (__null) // hardcoded LLDB definition #endif ``` After: ``` #ifndef NULL #define NULL (__null) // hardcoded LLDB definition #endif #ifndef NULL #define NULL (nullptr) // injected module definition #endif ``` Fixes rdar://10356912 Reviewed By: shafik Differential Revision: https://reviews.llvm.org/D82770