Summary:
Use llvm_codesign to sign debugserver with entitlements.
Set global LLVM_CODESIGNING_IDENTITY from LLDB_CODESIGN_IDENTITY (if given).
Pass through ENTITLEMENTS from add_lldb_executable to add_llvm_executable.
Handle reconfigurations correctly.
We have a lot of cases, make them explicit:
(1) build and sign debugserver, if all conditions apply:
* LLDB_NO_DEBUGSERVER=OFF (default)
* On Darwin: LLDB_USE_SYSTEM_DEBUGSERVER=OFF (default)
* On Darwin: LLVM_CODESIGNING_IDENTITY == lldb_codesign
(2) use system debugserver, if on Darwin and any of:
* LLDB_USE_SYSTEM_DEBUGSERVER=ON and found on system (explicit case)
* LLVM_CODESIGNING_IDENTITY != lldb_codesign and found on system (fallback case)
(3) debugserver will not be available, in case of:
* LLDB_NO_DEBUGSERVER=ON
* On Darwin: LLVM_CODESIGNING_IDENTITY != lldb_codesign and not found on system
(4) error state, in case of:
* LLDB_USE_SYSTEM_DEBUGSERVER=ON and not found on system
* LLDB_USE_SYSTEM_DEBUGSERVER=ON and LLDB_NO_DEBUGSERVER=ON
Reviewers: xiaobai, beanz, vsk, JDevlieghere
Subscribers: mgorny, lldb-commits, llvm-commits
Differential Revision: https://reviews.llvm.org/D54476
llvm-svn: 347305
Summary:
This follows the approach in Clang. If no overrides are given, LLDB_VERSION_* is inferred from LLVM_VERSION_*. This mimics the current behaviour (PACKAGE_VERSION itself is generated from LLVM_VERSION_*).
For in-tree builds LLVM_VERSION_* will be defined at this point already. For standalone builds, LLDBConfig.cmake is included after LLDBStandalone.cmake which includes LLVMConfig.cmake.
Reviewers: labath, xiaobai
Subscribers: mgorny, friss, aprantl, lldb-commits
Differential Revision: https://reviews.llvm.org/D54333
llvm-svn: 346668
Add a "filecheck" method to the LLDB test base. This allows test authors
to pattern match command output using FileCheck, making it possible to
write stricter tests than what `self.expect` allows.
For context (motivation, examples of stricter checking, etc), see the
lldb-dev thread: "Using FileCheck in lldb inline tests".
Differential Revision: https://reviews.llvm.org/D50751
llvm-svn: 342508
Summary:
Previously, I thought that install-liblldb would fail because CMake had
a bug related to installing frameworks. In actuality, I misunderstood the
semantics of `add_custom_target`: the DEPENDS option refers to specific files,
not targets. Therefore `install-liblldb` should rely on the actual liblldb
getting generated rather than the target.
This means that the previous patch I committed (to stop relying on CMake's
framework support) is no longer needed and has been reverted. Using CMake's
framework support greatly simplifies the implementation.
`install-lldb-framework` (and the stripped variant) is as simple as
depending on `install-liblldb` because CMake knows that liblldb was built as a
framework and will install the whole framework for you. The stripped variant
will depend on the stripped variants of individual tools only to ensure they
actually are stripped as well.
Reviewers: labath, sas
Subscribers: mgorny, lldb-commits
Differential Revision: https://reviews.llvm.org/D50038
llvm-svn: 338594
This reverts r338154. This change is actually unnecessary, as the CMake
bug I referred to was actually not a bug but a misunderstanding of
CMake.
Original Differential Revision: https://reviews.llvm.org/D49888
llvm-svn: 338178
Summary:
Currently, if you build lldb-framework the entire framework doesn't
actually build. In order to build the entire framework, you need to actually
build lldb-suite. This abstraction doesn't feel quite right because
lldb-framework truly does depend on lldb-suite (liblldb + related tools).
In this change I want to invert their dependency. This will mean that lldb and
finish_swig will depend on lldb-framework in a framework build, and lldb-suite
otherwise. Instead of adding conditional logic everywhere to handle this, I
introduce LLDB_SUITE_TARGET to handle it.
Differential Revision: https://reviews.llvm.org/D49406
llvm-svn: 337311
Apparently there's a difference between using LLVM_RUNTIME_OUTPUT_INTDIR
and LLVM_BINARY_DIR. The former will point to the current binary
directory (i.e. that where lldb is built) while the former will always
point to LLVM's. This was causing trouble for the swift build but should
be a transparent for upstream lldb.
llvm-svn: 336278
This improves consistency by creating a CMake variable for the dsymutil
path. The motivation is that for Swift, the dsymutil binary and the lldb
binary live in different directories and we need an option to configure
this from the build script.
llvm-svn: 336272
The issue was that there was no dependency from lldb-suite target to liblldb in
the no-framework scenario. This caused the finish-swig target to be executed
prematurely and fail (because it cannot copy liblldb to the python folder). On
other platforms this did not matter because there just creates a symlink.
The extra lldb-suite -> liblldb edge should fix this. Technically, I could add
this just to the !framework case as the framework target will take care of the
transitive dep, but it seemed more clear to make the dep unconditional.
llvm-svn: 335047
Summary:
We weren't using the Info.plist template in resources previously.
When using that template, some of the key's values weren't being populated
because some variables were not being defined. In one case, CMake didn't
like the substring expansion syntax of CFBundleIdentifier so I got rid of that.
Differential Revision: https://reviews.llvm.org/D47792
llvm-svn: 335014
Summary:
In this patch I aim to do the following:
1) Create an lldb-framework target that acts as the target that handles generating LLDB.framework. Previously, liblldb acted as the target for generating the framework in addition to generating the actual lldb library. This made the target feel overloaded.
2) Centralize framework generation as much as it makes sense to do so.
3) Create a target lldb-suite, which depends on every tool and library that makes liblldb fully functional. One result of having this target is it makes tracking dependencies much clearer.
Differential Revision: https://reviews.llvm.org/D48060
llvm-svn: 334968
Instead of assuming that SWIG generated files (e.g. lldb.py) will live
in scripts, we should set it to $LLDB_PYTHON_TARGET_DIR. This variable is set to
scripts, except when building LLDB.framework when it is set to
LLDB_FRAMEWORK_DIR.
Differential Revision: https://reviews.llvm.org/D47742
llvm-svn: 333968
The framework argument was broken when I removed the generator
expressions upstream. I replaced $<TARGET_FILE_DIR:liblldb> with
${LLVM_LIBRARY_OUTPUT_INTDIR}) which is not correct.
rdar://40534649
llvm-svn: 333412
Use proper cmake techniques to detect where the libedit package resides.
This allows for the use of libedit from an alternative location which is
needed for supporting cross-compilation.
llvm-svn: 333041
This patch restructures part of LLDB's testing configuration:
1. I moved the test dependencies up the chain so every dotest dependency
becomes a lit dependency as well. It wouldn't make sense for dotest to
have other dependencies when it's being run by lit. Lit on the other
hand can still specify extra dependencies.
2. I replaced as much generator expressions with variables as possible.
This is consistent with the rest of LLVM and doesn't break generators
that support multiple targets (MSVC, Xcode). This wasn't a problem
before, but now we need to expand the dotest arguments in the lit
configuration and there's only one test suite even with multiple
targets.
3. I moved lldb-dotest into it's own directory under utils since there's
no need anymore for it to located under `test/`.
Differential revision: https://reviews.llvm.org/D46334
llvm-svn: 331463
Summary:
This is modeled after the clang and llvm lit tests.
Several properties have CMAKE_CFG_INTDIR as part of the path - this works correctly when the cmake generator only supports one configuration which is known at configuration time, but it does not work correctly when the cmake generator supports multiple configurations (for example, VS).
For VS, CMAKE_CFG_INTDIR ends up set as $Configuration and then it is never updated correctly. Instead, the lit configuration can use a property that can be overwritten at run time. AddLLVM does that for several properties (such as LLVM_TOOLS_DIR).
This change is also removing properties from the lit/CMakeLists.txt that are actually set during the call to configure_lit_site_cfg
Reviewers: zturner, lldb-commits
Reviewed By: zturner
Subscribers: llvm-commits, labath, stella.stamenova, mgorny, hintonda
Differential Revision: https://reviews.llvm.org/D43096
llvm-svn: 325652
Summary:
Consolidate LLDB_CODESIGN_IDENTITY logic in one place and use
SKIP_DEBUGSERVER, which can be set independently, to control
codesigning targets.
Currently, running cmake the first time in a clean directory, without
passing -DLLDB_CODESIGN_IDENTITY='', fails. However, subsequent runs
succeed. That's because LLDB_CODESIGN_IDENTITY gets added to the
CACHE after the initial test. To fix that, the default value must be
set before it's tested.
Here's the error produced on the first run:
CMake Error at tools/lldb/tools/debugserver/source/CMakeLists.txt:215 (add_custom_command):
No TARGET 'debugserver' has been created in this directory.
Differential Revision: https://reviews.llvm.org/D43432
llvm-svn: 325442
Summary:
This is a small change towards running the LLDB unit tests on Windows (still WIP).
Builds that use make do not point to specific configurations. However, builds with multiple configurations such as Visual Studio on Windows need the configuration (release/debug/etc) as part of the path so the binaries produced by clang are placed in the correct directory for the configuration.
Reviewers: zturner, lldb-commits, labath
Reviewed By: labath
Subscribers: labath, mgorny, hintonda, llvm-commits
Differential Revision: https://reviews.llvm.org/D42990
llvm-svn: 324555
Summary:
Using the in-tree clang should be the default test configuration as that
is the one compiler that we can be sure everyone has (better
reproducibility of test results). Also, it should hopefully reduce the
impact of pr35040.
This also reduces the number of settings which control the compiler
used. LLDB_TEST_C_COMPILER is used for C files and
LLDB_TEST_CXX_COMPILER for C++ files. Both of the settings default to
the in-tree clang.
Reviewers: zturner
Subscribers: mgorny, davide, lldb-commits
Differential Revision: https://reviews.llvm.org/D39215
llvm-svn: 316728
This behaves like the other *_INCLUDE_TESTS variables in CMake and is tied to LLVM_INCLUDE_TESTS so that if you're building in-tree and not building the LLVM tests, you also won't build the LLDB tests.
llvm-svn: 315120
Neither LLDB_CONFIGURATION_DEBUG nor LLDB_CONFIGURATION_RELEASE were ever set in the CMake LLDB project.
Also cleaned up a questionable #ifdef in SharingPtr.h, removing all the references to LLDB_CONFIGURATION_BUILD_AND_INTEGRATION in the process.
Differential Revision: https://reviews.llvm.org/D38552
llvm-svn: 314929
This patch abstracts the generation of Config.h and creates a dummy project entry point to allow generation of LLDB's Config header without performing a full CMake configuration.
This will enable the Xcode project to generate LLDB's Config header.
llvm-svn: 301553
Summary:
The current version of LLDB installs six.py into global python library directory. This approach produces conflicts downstream with distribution's py-six copy.
Introduce new configure option LLDB_USE_SYSTEM_SIX (disabled by default). Once specified as TRUE, six.py won't be installed to Python's directory.
Add new option in finishSwigWrapperClasses.py, namely --useSystemSix.
Sponsored by <The NetBSD Foundation>
Reviewers: mgorny, emaste, clayborg, joerg, labath
Reviewed By: labath
Subscribers: #lldb
Tags: #lldb
Differential Revision: https://reviews.llvm.org/D29405
llvm-svn: 294071
Summary:
The NDK cmake toolchain file defines CMAKE_SYSTEM_NAME=Android, so switch the
build to use that. I have also updated the in-tree toolchain file to do that
(instead of defining __ANDROID_NDK__), so it can still be used to build.
After migrating the last bits of non-toolchainy bits out of the in-tree
toolchain, I intend to delete it.
Reviewers: tberghammer, danalbert
Subscribers: srhines, mgorny, lldb-commits
Differential Revision: https://reviews.llvm.org/D28775
llvm-svn: 292212
A combination of broken escaping in CMake and in the python swig
generation scripts meant that the swig generation step would fail
whenever there were spaces or special characters in parameters passed to
swig.
The fix for this in CMakeLists is to use the VERBATIM option on all
COMMAND-based custom builders relying on CMake to properly escape each
argument in the generated file.
Within the python swig scripts, the fix is to call subprocess.Popen with
a list of raw argument strings rather than ones that are incorrectly
manually escaped, then passed to a shell subprocess via
subprocess.Popen(' '.join(params)). This also prevents nasty things
happening such as accidental command-injection.
This allows us to have the swig / python executables in paths containing
special chars and spaces, (or on shared storage on Win32, e.g
\\some\path or C:\Program Files\swig\swig.exe).
Subscribers: lldb-commits
Differential Revision: https://reviews.llvm.org/D26757
llvm-svn: 289956
When building the LLDB Framework we need to ensure that the Python files get put into the Framework before the Framework's install target can be invoked.
All files inside the Framework's Resources bundle will get copied over during the install action.
llvm-svn: 289842
Summary:
This patch adds a CMake option LLDB_BUILD_FRAMEWORK, which builds libLLDB as a macOS framework instead of as a *nix shared library.
With this patch any LLDB executable that has the INCLUDE_IN_FRAMEWORK option set will be built into the Framework's resources directory, and a symlink to the exeuctable will be placed under the build directory's bin folder. Creating the symlinks allows users to run commands from the build directory without altering the workflow.
The framework generated by this patch passes the LLDB test suite, but has not been tested beyond that. It is not expected to be fully ready to ship, but it is a first step.
With this patch binaries that are placed inside the framework aren't being properly installed. Fixing that would increase the patch size significantly, so I'd like to do that in a follow-up.
Reviewers: zturner, tfiala
Subscribers: beanz, lldb-commits, mgorny
Differential Revision: https://reviews.llvm.org/D24749
llvm-svn: 282110
This reverts commit r279296. Including LLDBDependencies breaks the
netbsd lldb bot because it exposes LLDB_USED_LIBS, which causes
lldb_link_common_libs to run to completion in unintended sites, which
results in a malformed call to target_link_libraries.
http://lab.llvm.org:8011/builders/lldb-amd64-ninja-netbsd7/builds/5989
Thanks to Chris Bieneman for figuring this out!
llvm-svn: 279322
It's pulling in all kinds of things it doesn't need (e.g, clang-tidy!).
Eliminating this dependency removes 1056 dependencies from the
'CommandObjectFrame.cpp.o' target and 454 dependencies from the 'lldb'
target. On my machine, this shaves 7 minutes off of a clean build of
lldb.
Thanks to Zachary Turner for pointing out some issues with an earlier
version of this patch!
Differential Revision: https://reviews.llvm.org/D22987
llvm-svn: 279296
Summary:
Building HEAD of LLDB fails in linking against DebugInfoPDB. It also prints the following warning:
```
CMake Warning (dev) in source/Plugins/SymbolFile/PDB/CMakeLists.txt:
Policy CMP0022 is not set: INTERFACE_LINK_LIBRARIES defines the link
interface. Run "cmake --help-policy CMP0022" for policy details. Use the
cmake_policy command to set the policy and suppress this warning.
Target "lldbPluginSymbolFilePDB" has an INTERFACE_LINK_LIBRARIES property.
This should be preferred as the source of the link interface for this
library but because CMP0022 is not set CMake is ignoring the property and
using the link implementation as the link interface instead.
INTERFACE_LINK_LIBRARIES:
LLVMDebugInfoPDB
Link implementation:
(empty)
```
CMP0022 was introduced in CMake-2.8.11, bump minimal required version from 2.8 to 3.0 to gain more useful features like libexecinfo(3) detection on NetBSD.
Reviewers: emaste, zturner, labath
Subscribers: zturner, lldb-commits, joerg
Differential Revision: http://reviews.llvm.org/D19685
llvm-svn: 268191
Summary:
Do not assume that liblldb.so is located in $(lldb -P)/../../../lib
when creating the _lldb python symlink. Instead, use the path passed
to LLVM_LIBDIR_SUFFIX, defaulting to $(lldb -P)/../../../lib when this
variable is not set.
Reviewers: vharron, emaste, zturner
Subscribers: zturner, labath, lldb-commits, sas
Differential Revision: http://reviews.llvm.org/D19067
llvm-svn: 267462
This change does not introduce static bindings. It is simply using
the pylinted cleaned up code in prepare_bindings.py.
If this breaks anyting, I'll revert immediately and figure out what
needs to be addressed. I'm looking to wrap up
the cleanup aspect of the code change (pylinted, removal of code that
implements existing python stdlib code, fixes for Xcode adoption, etc.).
llvm-svn: 253478
When the readline target exists (only for non-Android Linux currently),
ensure that target is made a dependency of the finish_swig python-wrap-up
steps. This ensures it is built when building the lldb target.
Fixes:
https://llvm.org/bugs/show_bug.cgi?id=25038
llvm-svn: 249256
Summary:
After a developer builds LLDB from source on Windows (assuming they've built it with Python support enabled), they may be somewhat flustered when it fails to launch with a cryptic error.
{F890625}
This happens because Windows can't find python27.dll (or python27_d.dll in case LLDB was built in debug mode). Many developers may have previously installed a release build of Python 2.7 and will not notice anything is amiss when they run a release build of LLDB because Windows will load the python27.dll from one of the system directories or `PATH` (rather than the one that the LLDB build instructions tell them to build). The issue tends to be more pronounced with debug builds of LLDB, since fewer developers probably have python27_d.dll sitting in one of the Windows system directories.
To ensure Windows loads the correct custom built Python DLL when launching LLDB I've added a post-build event that copies the relevant DLL (based on the LLDB build configuration) from `PYTHON_HOME` to the directory in which the LLDB executable is generated.
Patch by Vadim Macagon. Thanks!
Reviewers: brucem, zturner
Subscribers: lldb-commits
Differential Revision: http://reviews.llvm.org/D13237
llvm-svn: 248992
ninja lldb now does the following:
* forces the python post-build step to fire, which sets up the python lldb module properly.
* on Darwin and Linux, requires the lldb-server target to be built.
* on Darwin, requires the debugserver target to be built.
See http://reviews.llvm.org/D12899 for details.
llvm-svn: 247810
Summary:
This should be a mandatory build process going forward, if Python
is enabled. The longer term desire is to remove the old shell
scripts entirely.
Reviewers: zturner, clayborg, labath
Subscribers: lldb-commits
Differential Revision: http://reviews.llvm.org/D12667
llvm-svn: 246979