Summary:
This is a general fix for the ConnectionFileDescriptor class but my main motivation was to make lldb-server working with IPv6.
The connect URI can use square brackets ([]) to wrap the interface part of the URI (e.g.: <scheme>://[<interface>]:<port>). For IPv6 addresses this is a must since its ip can include colons and it will overlap with the port colon otherwise. The URIParser class parses the square brackets correctly but the ConnectionFileDescriptor doesn't generate them for IPv6 addresses making it impossible to connect to the gdb server when using this protocol.
How to reproduce the issue:
```
$ lldb-server p --server --listen [::1]:8080
...
$ lldb
(lldb) platform select remote-macosx
(lldb) platform connect connect://[::1]:8080
(lldb) platform process -p <pid>
error: unable to launch a GDB server on 'computer'
```
The server was actually launched we were just not able to connect to it. With this fix lldb will correctly connect. I fixed this by wrapping the ip portion with [].
Reviewers: labath
Reviewed By: labath
Subscribers: xiaobai, mgorny, jfb, lldb-commits, labath
Tags: #lldb
Differential Revision: https://reviews.llvm.org/D61833
llvm-svn: 361898
This reverts commit c28f81797084b8416ff5be4f9e79000a9741ca6a.
This reverts commit 7e79b64642486f510f7872174eb831df68d65b84.
Looks like there is more work to be done on this patch. I've spoken to
the author and for the time being we will revert to keep the buildbots
green.
llvm-svn: 361086
This is a general fix for the ConnectionFileDescriptor class but my main
motivation was to make lldb-server working with IPv6.
The connect URI can use square brackets ([]) to wrap the interface part
of the URI (e.g.: <scheme>://[<interface>]:<port>). For IPv6 addresses
this is a must since its ip can include colons and it will overlap with
the port colon otherwise. The URIParser class parses the square brackets
correctly but the ConnectionFileDescriptor doesn't generate them for
IPv6 addresses making it impossible to connect to the gdb server when
using this protocol.
How to reproduce the issue:
$ lldb-server p --server --listen [::1]:8080
...
$ lldb
(lldb) platform select remote-macosx
(lldb) platform connect connect://[::1]:8080
(lldb) platform process -p <pid>
error: unable to launch a GDB server on 'computer'
The server was actually launched we were just not able to connect to it.
With this fix lldb will correctly connect. I fixed this by wrapping the
ip portion with [].
Differential Revision: https://reviews.llvm.org/D61833
Patch by António Afonso <antonio.afonso@gmail.com>
llvm-svn: 361079
There are set of classes in Target that describe the parameters of a
process - e.g. it's PID, name, user id, and similar. However, since it
is a bare description of a process and contains no actual functionality,
there's nothing specifically that makes this appropriate for being in
Target -- it could just as well be describing a process on the host, or
some hypothetical virtual process that doesn't even exist.
To cement this, I'm moving these classes to Utility. It's possible that
we can find a better place for it in the future, but as it is neither
Host specific nor Target specific, Utility seems like the most appropriate
place for the time being.
After this there is only 2 remaining references to Target from Host,
which I'll address in a followup.
Differential Revision: https://reviews.llvm.org/D58842
llvm-svn: 355342
Given that we have a target named Symbols, one wonders why a
file named Symbols.cpp is not in this target. To be clear,
the functions exposed from this file are really focused on
*locating* a symbol file on a given host, which is where the
ambiguity comes in. However, it makes more sense conceptually
to be in the Symbols target. While some of the specific places
to search for symbol files might change depending on the Host,
this is not inherently true in the same way that, for example,
"accessing the file system" or "starting threads" is
fundamentally dependent on the Host.
PDBs, for example, recently became a reality on non-Windows platforms,
and it's theoretically possible that DSYMs could become a thing on non
MacOSX platforms (maybe in a remote debugging scenario). Other types of
symbol files, such as DWO, DWP, etc have never been tied to any Host
platform anyway.
After this patch, there is only one remaining dependency from
Host to Target.
Differential Revision: https://reviews.llvm.org/D58730
llvm-svn: 355032
Summary:
These classes describe the details of the process we are about to
launch, and so they are naturally used by the launching code in the Host
module. Previously they were present in Target because that is the most
important (but by far not the only) user of the launching code.
Since the launching code has other customers, must of which do not care
about Targets, it makes sense to move these classes to the Host layer,
next to the launching code.
This move reduces the number of times that Target is included from host
to 8 (it used to be 14).
Reviewers: zturner, clayborg, jingham, davide, teemperor
Subscribers: emaste, mgorny, lldb-commits
Differential Revision: https://reviews.llvm.org/D56602
llvm-svn: 353047
Summary:
NativeProcessProtocol is an abstract class, but it still contains a
significant amount of code. Some of that code is tested via tests of
specific derived classes, but these tests don't run everywhere, as they
are OS and arch-specific. They are also relatively high-level, which
means some functionalities (particularly the failure cases) are
hard/impossible to test.
In this approach, I replace the abstract methods with mocks, which
allows me to inject failures into the lowest levels of breakpoint
setting code and test the class behavior in this situation.
Reviewers: zturner, teemperor
Subscribers: mgorny, lldb-commits
Differential Revision: https://reviews.llvm.org/D52152
llvm-svn: 342875
Summary:
This class was initially in Host because its implementation used to be
very OS-specific. However, with C++11, it has become a very simple
std::condition_variable wrapper, with no host-specific code.
It is also a general purpose utility class, so it makes sense for it to
live in a place where it can be used by everyone.
This has no effect on the layering right now, but it enables me to later
move the Listener+Broadcaster+Event combo to a lower layer, which is
important, as these are used in a lot of places (notably for launching a
process in Host code).
Reviewers: jingham, zturner, teemperor
Reviewed By: zturner
Subscribers: xiaobai, mgorny, lldb-commits
Differential Revision: https://reviews.llvm.org/D50384
llvm-svn: 341089
Inside Xcode and in Xcode toolchains LLDB is always in lockstep
with the Swift compiler, so it can reuse its Clang resource
directory. This allows LLDB and the Swift compiler to share the
same Clang module cache.
rdar://problem/40039633
Differential Revision: https://reviews.llvm.org/D46736
llvm-svn: 332111
Summary:
The comments on this class were out of date with the implementation, and
the implementation itself was inconsistent with our usage of the Timeout
class (I started converting everything to use this class back in D27136,
but I missed this one). I avoid duplicating the waiting logic by
introducing a templated WaitFor function, and make other functions
delegate to that. This function can be also used as a replacement for
the unused WaitForBitToBeSet functions I removed, if it turns out to be
necessary.
As this changes the meaning of a "zero" timeout, I tracked down all the
callers of these functions and updated them accordingly. Propagating the
changes to all the callers of RunShellCommand was a bit too much for
this patch, so I stopped there and will continue that in a follow-up
patch.
I also add some basic unittests for the functions I modified.
Reviewers: jingham, clayborg
Subscribers: mgorny, lldb-commits
Differential Revision: https://reviews.llvm.org/D46580
llvm-svn: 331880
Summary:
ArchSpec::SetTriple was taking a Platform as an argument, and used it to
fill in missing pieces of the specified triple. I invert the dependency
by moving this code to other classes. For this purpose, I've created
three new functions.
- HostInfo::GetAugmentedArchSpec: fills in the triple using the host
platform (this used to be implemented by passing a null platform
pointer). By putting this code in the Host module, we can provide a
way to anyone who does not have a platform instance (lldb-server) an
easy way to get Host data.
- Platform::GetAugmentedArchSpec: if you have a platform instance, you
can call this to let it fill in the triple.
- static Platform::GetAugmentedArchSpec: implements the "if platform ==
0 then use_host() else use_platform()" part.
Reviewers: zturner, jingham, clayborg
Subscribers: mgorny, javed.absar, lldb-commits
Differential Revision: https://reviews.llvm.org/D39387
llvm-svn: 316987
Summary:
This allows for the stack size to be configured, which isn't
possible with std::thread. Prevents overflowing the stack when
performing complex operations in the task pool on darwin,
where the default pthread stack size is only 512kb.
This also moves TaskPool from Utility to Host.
Reviewers: labath, tberghammer, clayborg
Subscribers: lldb-commits
Differential Revision: https://reviews.llvm.org/D37930
llvm-svn: 313637
Summary:
A number of places were trying to decode the result of wait(). Add a simple
utility function that does that and a struct that encapsulates the
decoded result. Then also provide a pretty-printer for that class.
Reviewers: zturner, krytarowski, eugene
Subscribers: lldb-commits, mgorny
Differential Revision: https://reviews.llvm.org/D33998
llvm-svn: 305689
Summary:
This adds a couple of unit tests to the MainLoop class. To get the
kqueue based version of the signal handling passing, I needed to
modify the implementation a bit to make the queue object persistent.
Otherwise, only the signals which are send during the Run call would get
processed, which did not match the ppoll behaviour.
I also took the opportunity to remove the ForEach template functions and
replace them with something more reasonable.
Reviewers: beanz, eugene
Subscribers: lldb-commits, mgorny
Differential Revision: https://reviews.llvm.org/D32753
llvm-svn: 302133
Summary:
ProcFileReader is the cause of the dependency from Host to ProcessLinux
module. Since it's interface is also obsolete (ReadIntoDataBuffer is
trivially replaceable by llvm::MemoryBuffer functions and
ProcessLineByLine is trivially implementable with StringRefs), instead
of moving it around I'm planning to obliterate it. This is the first
step, where I remove a couple of occurences in linux/Host.cpp, and
modernize some code around that.
I have introduced linux/Support.h, which holds two utility functions
now, whose resposibility is to construct the appropriate proc file names
-- the only useful feature of ProcFileReader.
I add a couple of tests for these functions, and for
Host::GetProcessInfo. It's worth noting that these are the first
host-specific unit tests in lldb.
Reviewers: zturner, eugene
Subscribers: srhines, lldb-commits, mgorny
Differential Revision: https://reviews.llvm.org/D30942
llvm-svn: 297843
Summary:
The only usage there was in GetModificationTime(). I also took the opportunity
to move this function from FileSpec to the FileSystem class - since we are
using FileSpecs to also represent remote files for which we cannot (easily)
retrieve modification time, it makes sense to make the decision to get the
modification time more explicit.
The new function returns a llvm::sys::TimePoint<>. To aid the transition
from TimeValue, I have added a constructor to it which enables implicit
conversion from a time_point.
Reviewers: zturner, clayborg
Subscribers: mehdi_amini, tberghammer, danalbert, beanz, mgorny, lldb-commits
Differential Revision: https://reviews.llvm.org/D25392
llvm-svn: 285702
Summary:
AdbClient was attempting to handle the case where the socket input arrived in pieces, but it was
failing to handle the case where the connection was closed before that happened. In this case, it
would just spin in an infinite loop calling Connection::Read. (This was also the cause of the
spurious timeouts on the darwin->android buildbot. The exact cause of the premature EOF remains
to be investigated, but is likely a server bug.)
Since this wait-for-a-certain-number-of-bytes seems like a useful functionality to have, I am
moving it (with the infinite loop fixed) to the Connection class, and adding an
appropriate test for it.
Reviewers: clayborg, zturner, ovyalov
Subscribers: tberghammer, danalbert, lldb-commits
Differential Revision: http://reviews.llvm.org/D19533
llvm-svn: 268380
Summary:
This fixes a couple of corner cases in FileSpec, related to AppendPathComponent and
handling of root directory (/) file spec. I add a bunch of unit tests for the new behavior.
Summary of changes:
FileSpec("/bar").GetCString(): before "//bar", after "/bar".
FileSpec("/").CopyByAppendingPathComponent("bar").GetCString(): before "//bar", after "/bar".
FileSpec("C:", ePathSyntaxWindows).CopyByAppendingPathComponent("bar").GetCString(): before "C:/bar", after "C:\bar".
Reviewers: clayborg, zturner
Subscribers: lldb-commits
Differential Revision: http://reviews.llvm.org/D18044
llvm-svn: 263207
Summary:
When `module_spec.GetFileSpec().GetDirectory().AsCString()` returned a `nullptr` this line caused a segmentation fault:
`std::string module_directory = module_spec.GetFileSpec().GetDirectory().AsCString()`
Some context:
I was remote debugging an executable built with Clang in an Ubuntu VM on my Windows machine using lldb-mi. I copied the executable and nothing else from the Ubuntu VM to the Windows machine.
Then started lldb-server in the Ubuntu VM:
```
./bin/lldb-server gdbserver *:8888 -- /home/enlight/Projects/dbgmits/build/Debug/data_tests_target
```
And ran `lldb-mi --interpreter` on Windows with the following commands:
```
-file-exec-and-symbols C:\Projects\data_tests_target
-target-select remote 192.168.56.101:8888
-exec-continue
```
After which the segmentation fault occurred at the aforementioned line. Inside this method `module_spec.GetFileSpec()` returns an empty `FileSpec` (no dir, no filename), while `module_spec.GetSymbolFileSpec().GetFilename()` returns `"libc-2.19.so"`.
Patch thanks to Vadim Macagon.
Reviewers: brucem, zturner, clayborg
Subscribers: lldb-commits
Differential Revision: http://reviews.llvm.org/D13201
llvm-svn: 249387
The order of libraries passed to the linker didn't work under linux (you
need the llvm libraries first, then the lldb libraries). I modelled this
after clang's setup here. Seemed simple enough to just be consistent.
llvm-svn: 232461
This makes the directory structure mirror the canonical LLVM
directory structure for a gtest suite.
Additionally, this patch deletes the xcode project. Nobody
is currently depending on this, and it would be better to have
gtest unit tests be hand-maintained in the Xcode workspace
rather than using this python test runner. Patches to that
effect will be submitted as followups.
llvm-svn: 232211