A new setting enable-synthetic-value is provided on the target to disable this behavior.
There also is a new GetNonSyntheticValue() API call on SBValue to go back from synthetic to non-synthetic. There is no call to go from non-synthetic to synthetic.
The test suite has been changed accordingly.
Fallout from changes to type searching: an hack has to be played to make it possible to use maps that contain std::string due to the special name replacement operated by clang
Fixing a test case that was using libstdcpp instead of libc++ - caught as a consequence of said changes to type searching
llvm-svn: 153495
Fixed type lookups to "do the right thing". Prior to this fix, looking up a type using "foo::bar" would result in a type list that contains all types that had "bar" as a basename unless the symbol file was able to match fully qualified names (which our DWARF parser does not).
This fix will allow type matches to be made based on the basename and then have the types that don't match filtered out. Types by name can be fully qualified, or partially qualified with the new "bool exact_match" parameter to the Module::FindTypes() method.
This fixes some issue that we discovered with dynamic type resolution as well as improves the overall type lookups in LLDB.
llvm-svn: 153482
Adding a test case that checks that we do not complete types before due time. This should help us track cases similar to the cascading data formatters.
llvm-svn: 153363
This is the feature that allowed the user to have things like:
class Base { ... };
class Derived : public Base { ... };
and have formatters defined for Base work automatically for Derived.
This feature turned out to be too expensive since it requires completing types.
This patch takes care of removing cascading (other than typedefs chain cascading), updating the test suite accordingly, and adding required Cocoa class names to keep the AppKit formatters working
llvm-svn: 153272
to pass to the toolchain in order to build the inferior programs to be run/debugged
duirng the test suite. The architecture might dictate some special CFLAGS which are
more easily specified in a central place (like the command line) instead of inside
make rules.
For Example,
./dotest.py -v -r /shared/phone -A armv7 -E "-isysroot your_sdk_root" functionalities/watchpoint/hello_watchpoint
will relocate the particular test directory ('functionalities/watchpoint/hello_watchpoint' in this case) to a
new directory named '/shared/phone'. The particular incarnation of the architecture-compiler combination of the
test support files are therefore to be found under:
/shared/phone.arch=armv7-compiler=clang/functionalities/watchpoint/hello_watchpoint
The building of the inferior programs under testing is now working.
The actual launching/debugging of the inferior programs are not yet working,
neither is the setting of a watchpoint on the phone.
llvm-svn: 153070
Changes to synthetic children:
- the update(self): function can now (optionally) return a value - if it returns boolean value True, ValueObjectSyntheticFilter will not clear its caches across stop-points
this should allow better performance for Python-based synthetic children when one can be sure that the child ValueObjects have not changed
- making a difference between a synthetic VO and a VO with a synthetic value: now a ValueObjectSyntheticFilter will not return itself as its own synthetic value, but will (correctly)
claim to itself be synthetic
- cleared up the internal synthetic children architecture to make a more consistent use of pointers and references instead of shared pointers when possible
- major cleanup of unnecessary #include, data and functions in ValueObjectSyntheticFilter itself
- removed the SyntheticValueType enum and replaced it with a plain boolean (to which it was equivalent in the first place)
Some clean ups to the summary generation code
Centralized the code that clears out user-visible strings and data in ValueObject
More efficient summaries for libc++ containers
llvm-svn: 153061
rdar://problem/11034702
For the time being, skip the relevant disassemble action which resulted in a crash.
Minor modification (print out format) to the existing TestDisassembleRawBytes.py test file.
llvm-svn: 152822
This has been done for those summaries where the difference is only cosmetic (e.g. naming things as items instead of values, ...)
The LLDB output style has been preserved when it provides more information (e.g. telling the type as well as the value of an NSNumber)
Test cases have been updated to reflect the updated output style where necessary
llvm-svn: 152592
std::string has a summary provider
std::vector std::list and std::map have both a summary and a synthetic children provider
Given the usage of a custom namespace (std::__1::classname) for the implementation of libc++, we keep both libstdcpp and libc++ formatters enabled at the same time since that raises no conflicts and enabled for seamless transition between the two
The formatters for libc++ reside in a libcxx category, and are loaded from libcxx.py (to be found in examples/synthetic)
The formatters-stl test cases have been divided to be separate for libcxx and libstdcpp. This separation is necessary because
(a) we need different compiler flags for libc++ than for libstdcpp
(b) libc++ inlines a lot more than libstdcpp and some code changes were required to accommodate this difference
llvm-svn: 152570
to be debugged while running the test suite. By default, compilers is set to ['clang'] and can be overridden
using the "-C compilerA^compilerB" option.
llvm-svn: 152367
when building the inferior programs.
Example:
/Volumes/data/lldb/svn/ToT/test $ ./dotest.py -v functionalities/watchpoint
LLDB build dir: /Volumes/data/lldb/svn/ToT/build/Debug
LLDB-123
Path: /Volumes/data/lldb/svn/ToT
URL: https://johnny@llvm.org/svn/llvm-project/lldb/trunk
Repository Root: https://johnny@llvm.org/svn/llvm-project
Repository UUID: 91177308-0d34-0410-b5e6-96231b3b80d8
Revision: 152244
Node Kind: directory
Schedule: normal
Last Changed Author: gclayton
Last Changed Rev: 152244
Last Changed Date: 2012-03-07 13:03:09 -0800 (Wed, 07 Mar 2012)
Session logs for test failures/errors/unexpected successes will go into directory '2012-03-08-16_43_51'
Command invoked: python ./dotest.py -v functionalities/watchpoint
Configuration: arch=x86_64
----------------------------------------------------------------------
Collected 21 tests
1: test_hello_watchlocation_with_dsym (TestWatchLocation.HelloWatchLocationTestCase)
Test watching a location with '-x size' option. ... ok
2: test_hello_watchlocation_with_dwarf (TestWatchLocation.HelloWatchLocationTestCase)
Test watching a location with '-x size' option. ... ok
3: test_hello_watchpoint_with_dsym_using_watchpoint_set (TestMyFirstWatchpoint.HelloWatchpointTestCase)
Test a simple sequence of watchpoint creation and watchpoint hit. ... ok
4: test_hello_watchpoint_with_dwarf_using_watchpoint_set (TestMyFirstWatchpoint.HelloWatchpointTestCase)
Test a simple sequence of watchpoint creation and watchpoint hit. ... ok
5: test_watchpoint_multiple_threads_with_dsym (TestWatchpointMultipleThreads.WatchpointForMultipleThreadsTestCase)
Test that lldb watchpoint works for multiple threads. ... ok
6: test_watchpoint_multiple_threads_with_dwarf (TestWatchpointMultipleThreads.WatchpointForMultipleThreadsTestCase)
Test that lldb watchpoint works for multiple threads. ... ok
7: test_rw_disable_after_first_stop__with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint but disable it after the first stop. ... ok
8: test_rw_disable_after_first_stop_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint but disable it after the first stop. ... ok
9: test_rw_disable_then_enable_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint, disable initially, then enable it. ... ok
10: test_rw_disable_then_enable_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint, disable initially, then enable it. ... ok
11: test_rw_watchpoint_delete_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test delete watchpoint and expect not to stop for watchpoint. ... ok
12: test_rw_watchpoint_delete_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test delete watchpoint and expect not to stop for watchpoint. ... ok
13: test_rw_watchpoint_set_ignore_count_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test watchpoint ignore count and expect to not to stop at all. ... ok
14: test_rw_watchpoint_set_ignore_count_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test watchpoint ignore count and expect to not to stop at all. ... ok
15: test_rw_watchpoint_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint and expect to stop two times. ... ok
16: test_rw_watchpoint_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint and expect to stop two times. ... ok
17: test_watchpoint_cond_with_dsym (TestWatchpointConditionCmd.WatchpointConditionCmdTestCase)
Test watchpoint condition. ... ok
18: test_watchpoint_cond_with_dwarf (TestWatchpointConditionCmd.WatchpointConditionCmdTestCase)
Test watchpoint condition. ... ok
19: test_watchlocation_with_dsym_using_watchpoint_set (TestWatchLocationWithWatchSet.WatchLocationUsingWatchpointSetTestCase)
Test watching a location with 'watchpoint set expression -w write -x size' option. ... ok
20: test_watchlocation_with_dwarf_using_watchpoint_set (TestWatchLocationWithWatchSet.WatchLocationUsingWatchpointSetTestCase)
Test watching a location with 'watchpoint set expression -w write -x size' option. ... ok
21: test_error_cases_with_watchpoint_set (TestWatchpointSetErrorCases.WatchpointSetErrorTestCase)
Test error cases with the 'watchpoint set' command. ... ok
----------------------------------------------------------------------
Ran 21 tests in 74.590s
OK
Configuration: arch=i386
----------------------------------------------------------------------
Collected 21 tests
1: test_hello_watchlocation_with_dsym (TestWatchLocation.HelloWatchLocationTestCase)
Test watching a location with '-x size' option. ... ok
2: test_hello_watchlocation_with_dwarf (TestWatchLocation.HelloWatchLocationTestCase)
Test watching a location with '-x size' option. ... ok
3: test_hello_watchpoint_with_dsym_using_watchpoint_set (TestMyFirstWatchpoint.HelloWatchpointTestCase)
Test a simple sequence of watchpoint creation and watchpoint hit. ... ok
4: test_hello_watchpoint_with_dwarf_using_watchpoint_set (TestMyFirstWatchpoint.HelloWatchpointTestCase)
Test a simple sequence of watchpoint creation and watchpoint hit. ... ok
5: test_watchpoint_multiple_threads_with_dsym (TestWatchpointMultipleThreads.WatchpointForMultipleThreadsTestCase)
Test that lldb watchpoint works for multiple threads. ... ok
6: test_watchpoint_multiple_threads_with_dwarf (TestWatchpointMultipleThreads.WatchpointForMultipleThreadsTestCase)
Test that lldb watchpoint works for multiple threads. ... ok
7: test_rw_disable_after_first_stop__with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint but disable it after the first stop. ... ok
8: test_rw_disable_after_first_stop_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint but disable it after the first stop. ... ok
9: test_rw_disable_then_enable_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint, disable initially, then enable it. ... ok
10: test_rw_disable_then_enable_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint, disable initially, then enable it. ... ok
11: test_rw_watchpoint_delete_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test delete watchpoint and expect not to stop for watchpoint. ... ok
12: test_rw_watchpoint_delete_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test delete watchpoint and expect not to stop for watchpoint. ... ok
13: test_rw_watchpoint_set_ignore_count_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test watchpoint ignore count and expect to not to stop at all. ... ok
14: test_rw_watchpoint_set_ignore_count_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test watchpoint ignore count and expect to not to stop at all. ... ok
15: test_rw_watchpoint_with_dsym (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint and expect to stop two times. ... ok
16: test_rw_watchpoint_with_dwarf (TestWatchpointCommands.WatchpointCommandsTestCase)
Test read_write watchpoint and expect to stop two times. ... ok
17: test_watchpoint_cond_with_dsym (TestWatchpointConditionCmd.WatchpointConditionCmdTestCase)
Test watchpoint condition. ... ok
18: test_watchpoint_cond_with_dwarf (TestWatchpointConditionCmd.WatchpointConditionCmdTestCase)
Test watchpoint condition. ... ok
19: test_watchlocation_with_dsym_using_watchpoint_set (TestWatchLocationWithWatchSet.WatchLocationUsingWatchpointSetTestCase)
Test watching a location with 'watchpoint set expression -w write -x size' option. ... ok
20: test_watchlocation_with_dwarf_using_watchpoint_set (TestWatchLocationWithWatchSet.WatchLocationUsingWatchpointSetTestCase)
Test watching a location with 'watchpoint set expression -w write -x size' option. ... ok
21: test_error_cases_with_watchpoint_set (TestWatchpointSetErrorCases.WatchpointSetErrorTestCase)
Test error cases with the 'watchpoint set' command. ... ok
----------------------------------------------------------------------
Ran 21 tests in 67.059s
OK
llvm-svn: 152357
This takes two important changes:
- Calling blocks is now supported. You need to
cast their return values, but that works fine.
- We now can correctly run JIT-compiled
expressions that use floating-point numbers.
Also, we have taken a fix that allows us to
ignore access control in Objective-C as in C++.
llvm-svn: 152286
expression command doesn't handle xmm or stmm registers...
o Update ClangASTContext::GetBuiltinTypeForEncodingAndBitSize() to now handle eEncodingVector.
o Modify RegisterValue::SetFromMemoryData() to fix the subtle error due to unitialized variables.
o Add a test file for "expr $xmm0".
llvm-svn: 152190
Add SBFrame::IsEqual(const SBFrame &that) method and export it to the Python binding.
Alos add a test case test_frame_api_IsEqual() to TestFrames.py file.
llvm-svn: 152050
fixed a few potential NULL-pointer derefs in ValueObject
we have a way to provide docstrings for properties we add to the SWIG layer - a few of these properties have a docstring already, more will come in future commits
added a new bunch of properties to SBData to make it more natural and Python-like to access the data they contain
llvm-svn: 151962
so that the expression parser can look up members
of anonymous structs correctly. This meant creating
all the proper IndirectFieldDecls in each Record
after it has been completely populated with members.
llvm-svn: 151868
(b) fixes and improvements to the formatters for NSDate and NSString
(c) adding an introspection formatter for NSCountedSet
(d) making the Objective-C formatters test cases pass on both 64 and 32 bit
one of the test cases is marked as expected failure on i386 - support needs to be added to the LLDB core for it to pass
llvm-svn: 151826
2) providing an updated list of tagged pointers values for the objc_runtime module - hopefully this one is final
3) changing ValueObject::DumpValueObject to use an Options class instead of providing a bulky list of parameters to pass around
this change had been laid out previously, but some clients of DumpValueObject() were still using the old prototype and some arguments
were treated in a special way and passed in directly instead of through the Options class
4) providing new GetSummaryAsCString() and GetValueAsCString() calls in ValueObject that are passed a formatter object and a destination string
and fill the string by formatting themselves using the formatter argument instead of the default for the current ValueObject
5) removing the option to have formats and summaries stick to a variable for the current stoppoint
after some debate, we are going with non-sticky: if you say frame variable --format hex foo, the hex format will only be applied to the current command execution and not stick when redisplaying foo
the other option would be full stickiness, which means that foo would be formatted as hex for its whole lifetime
we are open to suggestions on what feels "natural" in this regard
llvm-svn: 151801
a) adds a Python summary provider for NSDate
b) changes the initialization for ScriptInterpreter so that we are not passing a bulk of Python-specific function pointers around
c) provides a new ScriptInterpreterObject class that allows for ref-count safe wrapping of scripting objects on the C++ side
d) contains much needed performance improvements:
1) the pointer to the Python function generating a scripted summary is now cached instead of looked up every time
2) redundant memory reads in the Python ObjC runtime wrapper are eliminated
3) summaries now use the m_summary_str in ValueObject to store their data instead of passing around ( == copying) an std::string object
e) contains other minor fixes, such as adding descriptive error messages for some cases of summary generation failure
llvm-svn: 151703
The formatter for NSString is an improved version of the one previously shipped as an example, the others are new in design and implementation.
A more robust and OO-compliant Objective-C runtime wrapper is provided for runtime versions 1 and 2 on 32 and 64 bit.
The formatters are contained in a category named "AppKit", which is not enabled at startup.
llvm-svn: 151301
The formatter for NSString is an improved version of the one previously shipped as an example, the others are new in design and implementation.
A more robust and OO-compliant Objective-C runtime wrapper is provided for runtime versions 1 and 2 on 32 and 64 bit.
The formatters are contained in a category named "AppKit", which is not enabled at startup.
llvm-svn: 151299
Objective-C classes. This allows LLDB to find
ivars declared in class extensions in modules other
than where the debugger is currently stopped (we
already supported this when the debugger was
stopped in the same module as the definition).
This involved the following main changes:
- The ObjCLanguageRuntime now knows how to hunt
for the authoritative version of an Objective-C
type. It looks for the symbol indicating a
definition, and then gets the type from the
module containing that symbol.
- ValueObjects now report their type with a
potential override, and the override is set if
the type of the ValueObject is an Objective-C
class or pointer type that is defined somewhere
other than the original reported type. This
means that "frame variable" will always use the
complete type if one is available.
- The ClangASTSource now looks for the complete
type when looking for ivars. This means that
"expr" will always use the complete type if one
is available.
- I added a testcase that verifies that both
"frame variable" and "expr" work.
llvm-svn: 151214
Adding new API calls to SBValue to be able to retrieve the associated formatters
Some refactoring to FormatNavigator::Get() in order to shrink its size down to more manageable terms (a future, massive, refactoring effort will still be needed)
Test cases added for the above
llvm-svn: 150784
DataExtractor::Dump() needs to supply the correct cursor when delegating to the child DataExtractor::Dump() calls.
Add a regression test file.
rdar://problem/10872908
llvm-svn: 150729
with subcommand 'expression' and 'variable'. The first subcommand is for supplying an expression to
be evaluated into an address to watch for, while the second is for watching a variable.
'watchpoint set expression' is a raw command, which means that you need to use the "--" option terminator
to end the '-w' or '-x' option processing and to start typing your expression.
Also update several test cases to comply and add a couple of test cases into TestCompletion.py,
in particular, test that 'watchpoint set ex' completes to 'watchpoint set expression ' and that
'watchpoint set var' completes to 'watchpoint set variable '.
llvm-svn: 150109
the '-e' option (for watching of an address) to be present.
Update some existing test cases with the required option and add some more test cases.
Since the '-v' option takes <variable-name> and the '-e' option takes <expr> as the command arg,
the existing infrastructure for generating the option usage can produce confusing help message,
like:
watchpoint set -e [-w <watch-type>] [-x <byte-size>] <variable-name | expr>
watchpoint set -v [-w <watch-type>] [-x <byte-size>] <variable-name | expr>
The solution adopted is to provide an extra member field to the struct CommandArgumentData called
(uint32_t)arg_opt_set_association, whose purpose is to link this particular argument data with some
option set(s). Also modify the signature of CommandObject::GetFormattedCommandArguments() to:
GetFormattedCommandArguments (Stream &str, uint32_t opt_set_mask = LLDB_OPT_SET_ALL)
it now takes an additional opt_set_mask which can be used to generate a filtered formatted command
args for help message.
Options::GenerateOptionUsage() impl is modified to call the GetFormattedCommandArguments() appropriately.
So that the help message now looks like:
watchpoint set -e [-w <watch-type>] [-x <byte-size>] <expr>
watchpoint set -v [-w <watch-type>] [-x <byte-size>] <variable-name>
rdar://problem/10703256
llvm-svn: 150032
interface (.i) files for each class.
Changed the FindFunction class from:
uint32_t
SBTarget::FindFunctions (const char *name,
uint32_t name_type_mask,
bool append,
lldb::SBSymbolContextList& sc_list)
uint32_t
SBModule::FindFunctions (const char *name,
uint32_t name_type_mask,
bool append,
lldb::SBSymbolContextList& sc_list)
To:
lldb::SBSymbolContextList
SBTarget::FindFunctions (const char *name,
uint32_t name_type_mask = lldb::eFunctionNameTypeAny);
lldb::SBSymbolContextList
SBModule::FindFunctions (const char *name,
uint32_t name_type_mask = lldb::eFunctionNameTypeAny);
This makes the API easier to use from python. Also added the ability to
append a SBSymbolContext or a SBSymbolContextList to a SBSymbolContextList.
Exposed properties for lldb.SBSymbolContextList in python:
lldb.SBSymbolContextList.modules => list() or all lldb.SBModule objects in the list
lldb.SBSymbolContextList.compile_units => list() or all lldb.SBCompileUnits objects in the list
lldb.SBSymbolContextList.functions => list() or all lldb.SBFunction objects in the list
lldb.SBSymbolContextList.blocks => list() or all lldb.SBBlock objects in the list
lldb.SBSymbolContextList.line_entries => list() or all lldb.SBLineEntry objects in the list
lldb.SBSymbolContextList.symbols => list() or all lldb.SBSymbol objects in the list
This allows a call to the SBTarget::FindFunctions(...) and SBModule::FindFunctions(...)
and then the result can be used to extract the desired information:
sc_list = lldb.target.FindFunctions("erase")
for function in sc_list.functions:
print function
for symbol in sc_list.symbols:
print symbol
Exposed properties for the lldb.SBSymbolContext objects in python:
lldb.SBSymbolContext.module => lldb.SBModule
lldb.SBSymbolContext.compile_unit => lldb.SBCompileUnit
lldb.SBSymbolContext.function => lldb.SBFunction
lldb.SBSymbolContext.block => lldb.SBBlock
lldb.SBSymbolContext.line_entry => lldb.SBLineEntry
lldb.SBSymbolContext.symbol => lldb.SBSymbol
Exposed properties for the lldb.SBBlock objects in python:
lldb.SBBlock.parent => lldb.SBBlock for the parent block that contains
lldb.SBBlock.sibling => lldb.SBBlock for the sibling block to the current block
lldb.SBBlock.first_child => lldb.SBBlock for the first child block to the current block
lldb.SBBlock.call_site => for inline functions, return a lldb.declaration object that gives the call site file, line and column
lldb.SBBlock.name => for inline functions this is the name of the inline function that this block represents
lldb.SBBlock.inlined_block => returns the inlined function block that contains this block (might return itself if the current block is an inlined block)
lldb.SBBlock.range[int] => access the address ranges for a block by index, a list() with start and end address is returned
lldb.SBBlock.ranges => an array or all address ranges for this block
lldb.SBBlock.num_ranges => the number of address ranges for this blcok
SBFunction objects can now get the SBType and the SBBlock that represents the
top scope of the function.
SBBlock objects can now get the variable list from the current block. The value
list returned allows varaibles to be viewed prior with no process if code
wants to check the variables in a function. There are two ways to get a variable
list from a SBBlock:
lldb::SBValueList
SBBlock::GetVariables (lldb::SBFrame& frame,
bool arguments,
bool locals,
bool statics,
lldb::DynamicValueType use_dynamic);
lldb::SBValueList
SBBlock::GetVariables (lldb::SBTarget& target,
bool arguments,
bool locals,
bool statics);
When a SBFrame is used, the values returned will be locked down to the frame
and the values will be evaluated in the context of that frame.
When a SBTarget is used, global an static variables can be viewed without a
running process.
llvm-svn: 149853
LLVM/Clang. This brings in several fixes, including:
- Improvements in the Just-In-Time compiler's
allocation of memory: the JIT now allocates
memory in chunks of sections, improving its
ability to generate relocations. I have
revamped the RecordingMemoryManager to reflect
these changes, as well as to get the memory
allocation and data copying out fo the
ClangExpressionParser code. Jim Grosbach wrote
the updates to the JIT on the LLVM side.
- A new ExternalASTSource interface to allow LLDB to
report accurate structure layout information to
Clang. Previously we could only report the sizes
of fields, not their offsets. This meant that if
data structures included field alignment
directives, we could not communicate the necessary
alignment to Clang and accesses to the data would
fail. Now we can (and I have update the relevant
test case). Thanks to Doug Gregor for implementing
the Clang side of this fix.
- The way Objective-C interfaces are completed by
Clang has been made consistent with RecordDecls;
with help from Doug Gregor and Greg Clayton I have
ensured that this still works.
- I have eliminated all local LLVM and Clang patches,
committing the ones that are still relevant to LLVM
and Clang as needed.
I have tested the changes extensively locally, but
please let me know if they cause any trouble for you.
llvm-svn: 149775
instead of the __repr__. __repr__ is a function that should return an
expression that can be used to recreate an python object and we were using
it to just return a human readable string.
Fixed a crasher when using the new implementation of SBValue::Cast(SBType).
Thread hardened lldb::SBValue and lldb::SBWatchpoint and did other general
improvements to the API.
Fixed a crasher in lldb::SBValue::GetChildMemberWithName() where we didn't
correctly handle not having a target.
llvm-svn: 149743
When used in conjunction with --inline-children, this option will cause the names of the values to be omitted from the output. This can be beneficial in cases such as vFloat, where it will compact the representation from
([0]=1,[1]=2,[2]=3,[3]=4) to (1, 2, 3, 4).
Added a test case to check that the new option works correctly.
Also took some time to revisit SummaryFormat and related classes and tweak them for added readability and maintainability.
Finally, added a new class name to which the std::string summary should be applied.
llvm-svn: 149644
should use Target::ReadMemory() call to read from the file section offset address.
Also remove the @expectedFailure decorator..
'target variable' command fails if the target program has been run
rdar://problem/9763907
llvm-svn: 149629
o Symbols.cpp:
Emit a warning message when dSYM does not match the binary.
o warnings/uuid:
Added regression test case.
o lldbtest.py:
Modified to allow test case writer to demand that the build command does not begin
with a clean first; required to make TestUUIDMismatchWanring.py work.
rdar://problem/10515708
llvm-svn: 149465
We previously weren't catching that SBValue::Cast(...) would crash
if we had an invalid (empty) SBValue object.
Cleaned up the SBType API a bit.
llvm-svn: 149447
environment variable before starting the test runner which executes the test cases and
may spawn child processes. An example:
./dotest.py -u MY_ENV1 -u MY_ENV2 -v -p TestWatchLocationWithWatchSet.py
llvm-svn: 149304
Also add test cases for watching a variable as well as a location expressed as an expression.
o TestMyFirstWatchpoint.py:
Modified to test "watchpoint set -w write global".
o TestWatchLocationWithWatchSet.py:
Added to test "watchpoint set -w write -x 1 g_char_ptr + 7" where a contrived example program
with several threads is supposed to only access the array index within the range [0..6], but
there's some misbehaving thread writing past the range.
rdar://problem/10701761
llvm-svn: 149280