Commit Graph

154 Commits

Author SHA1 Message Date
Sean Callanan e8cde68a2a Fixed a problem where the dynamic checkers (i.e.,
the Objective-C object checker and the pointer
checker) were not always installed into expressions.

<rdar://problem/13882566>

llvm-svn: 182183
2013-05-18 00:38:20 +00:00
Jim Ingham 5c42d8a87c Fixed a few obvious errors pointed out by the static analyzer.
llvm-svn: 181911
2013-05-15 18:27:08 +00:00
Greg Clayton 7b0992d9cd After discussing with Chris Lattner, we require C++11, so lets get rid of the macros and just use C++11.
llvm-svn: 179805
2013-04-18 22:45:39 +00:00
Sean Callanan 1582ee6840 This commit changes the way LLDB executes user
expressions.  

Previously, ClangUserExpression assumed that if
there was a constant result for an expression 
then it could be determined during parsing.  In
particular, the IRInterpreter ran while parser
state (in particular, ClangExpressionDeclMap) 
was present.  This approach is flawed, because
the IRInterpreter actually is capable of using
external variables, and hence the result might
be different each run.  Until now, we papered
over this flaw by re-parsing the expression each
time we ran it.

I have rewritten the IRInterpreter to be 
completely independent of the ClangExpressionDeclMap.
Instead of special-casing external variable lookup,
which ties the IRInterpreter closely to LLDB,
we now interpret the exact same IR that the JIT
would see.  This IR assumes that materialization
has occurred; hence the recent implementation of the
Materializer, which does not require parser state
(in the form of ClangExpressionDeclMap) to be 
present.

Materialization, interpretation, and dematerialization
are now all independent of parsing.  This means that
in theory we can parse expressions once and run them
many times.  I have three outstanding tasks before
shutting this down:

    - First, I will ensure that all of this works with
      core files.  Core files have a Process but do not
      allow allocating memory, which currently confuses
      materialization.

    - Second, I will make expression breakpoint 
      conditions remember their ClangUserExpression and
      re-use it.

    - Third, I will tear out all the redundant code
      (for example, materialization logic in
      ClangExpressionDeclMap) that is no longer used.

While implementing this fix, I also found a bug in
IRForTarget's handling of floating-point constants.  
This should be fixed.

llvm-svn: 179801
2013-04-18 22:06:33 +00:00
Greg Clayton e01e07b6e7 Since we use C++11, we should switch over to using std::unique_ptr when C++11 is being used. To do this, we follow what we have done for shared pointers and we define a STD_UNIQUE_PTR macro that can be used and it will "do the right thing". Due to some API differences in std::unique_ptr and due to the fact that we need to be able to compile without C++11, we can't use move semantics so some code needed to change so that it can compile with either C++.
Anyone wanting to use a unique_ptr or auto_ptr should now use the "STD_UNIQUE_PTR(TYPE)" macro.

llvm-svn: 179779
2013-04-18 18:10:51 +00:00
Sean Callanan 14b1bae5ee Flipped the big switch: LLDB now uses the new
Materializer for all expressions that need to
run in the target.  This includes the following
changes:

- Removed a bunch of (de-)materialization code
  from ClangExpressionDeclMap and assumed the
  presence of a Materializer where we previously
  had a fallback.

- Ensured that an IRMemoryMap is passed into
  ClangExpressionDeclMap::Materialize().

- Fixed object ownership on LLVMContext; it is
  now owned by the IRExecutionUnit, since the
  Module and the ExecutionEngine both depend on
  its existence.

- Fixed a few bugs in IRMemoryMap and the
  Materializer that showed up during testing.

llvm-svn: 179649
2013-04-16 23:25:35 +00:00
Sean Callanan b024d87822 Audited the existing Materializer code to ensure
that it works in the absence of a process.  Codepaths
in the Materializer now use the best execution context
scope available to them.

llvm-svn: 179539
2013-04-15 17:12:47 +00:00
Sean Callanan 5a1af4e63a Factored out memory access into the target process
from IRExecutionUnit into a superclass called
IRMemoryMap.  IRMemoryMap handles all reading and
writing, ensuring that areas are kept track of and
memory is properly cached (and deleted).

Also fixed several cases where we would simply leak
binary data in the target process over time.  Now
the expression objects explicitly own their
IRExecutionUnit and delete it when they go away.  This
is why I had to modify ClangUserExpression,
ClangUtilityFunction, and ClangFunction.

As a side effect of this, I am removing the JIT
mutex for an IRMemoryMap.  If it turns out that we
need this mutex, I'll add it in then, but right now
it's just adding complexity.

This is part of a more general project to make
expressions fully reusable.  The next step is to
make materialization and dematerialization use
the IRMemoryMap API rather than writing and
reading directly from the process's memory. 
This will allow the IR interpreter to use the
same data, but in the host's memory, without having
to use a different set of pointers.

llvm-svn: 178832
2013-04-05 02:22:57 +00:00
Sean Callanan eeb4384924 Enabled blocks support in the expression parser.
Note: although it is now possible to declare blocks
and call them inside the same expression, we do not
generate correct block descriptors so these blocks
cannot be passed to functions like dispatch_async.

<rdar://problem/12578656>

llvm-svn: 178509
2013-04-01 22:12:37 +00:00
Sean Callanan 42f26b488b Disable warnings from Clang correctly, by directly
manipulating the diagnostics engine.

<rdar://problem/13508470>

llvm-svn: 178399
2013-03-30 01:26:06 +00:00
Greg Clayton 5160ce5c72 <rdar://problem/13521159>
LLDB is crashing when logging is enabled from lldb-perf-clang. This has to do with the global destructor chain as the process and its threads are being torn down.

All logging channels now make one and only one instance that is kept in a global pointer which is never freed. This guarantees that logging can correctly continue as the process tears itself down.

llvm-svn: 178191
2013-03-27 23:08:40 +00:00
Sean Callanan 8dfb68e039 Refactored the expression parser so that the IR
and the JITted code are managed by a standalone
class that handles memory management itself.

I have removed RecordingMemoryManager and
ProcessDataAllocator, which filled similar roles
and had confusing ownership, with a common class
called IRExecutionUnit.  The IRExecutionUnit
manages all allocations ever made for an expression
and frees them when it goes away.  It also contains
the code generator and can vend the Module for an
expression to other clases.

The end goal here is to make the output of the
expression parser re-usable; that is, to avoid
re-parsing when re-parsing isn't necessary.

I've also cleaned up some code and used weak pointers
in more places.  Please let me know if you see any
leaks; I checked myself as well but I might have
missed a case.

llvm-svn: 177364
2013-03-19 00:10:07 +00:00
Sean Callanan 83b3da95f6 Removed One Definition Rule warnings because they're
noisy when dealing with anonymous structs.

<rdar://problem/13246914>

llvm-svn: 176738
2013-03-08 23:38:53 +00:00
Jim Ingham 0f063ba6b4 Convert from the C-based LLVM Disassembler shim to the full MC Disassembler API's.
Calculate "can branch" using the MC API's rather than our hand-rolled regex'es.
As extra credit, allow setting the disassembly flavor for x86 based architectures to intel or att.

<rdar://problem/11319574>
<rdar://problem/9329275>

llvm-svn: 176392
2013-03-02 00:26:47 +00:00
Andrew Kaylor cd5c7247ab Change to JITDefault code model for ELF targets
On x86-64 platforms, the small code model assumes that code will be loaded below the 2GB boundary.  With the static relocation model, the fact that the expression code is initially loaded (in the LLDB debugger address space) above that boundary causes problems.  Switching to the JITDefault code model causes the large code model to be used for 64-bit targets and small code model of 32-bit targets.

llvm-svn: 175828
2013-02-21 23:45:19 +00:00
Sean Callanan b45a6f065e Fixed a bug where certain vector code didn't
work on i386.  Now we let the JIT emit SSE/SSE2
instructions on i386.

<rdar://problem/13240476>

llvm-svn: 175700
2013-02-21 01:04:23 +00:00
Andrew Kaylor 2ed4dc9f27 Change ELF relocation model to static
llvm-svn: 175671
2013-02-20 21:39:02 +00:00
Filipe Cabecinhas 55fcb10542 Bring lldb up to date with clang revision 175141.
llvm-svn: 175213
2013-02-14 22:02:57 +00:00
Greg Clayton c7bece56fa <rdar://problem/13069948>
Major fixed to allow reading files that are over 4GB. The main problems were that the DataExtractor was using 32 bit offsets as a data cursor, and since we mmap all of our object files we could run into cases where if we had a very large core file that was over 4GB, we were running into the 4GB boundary.

So I defined a new "lldb::offset_t" which should be used for all file offsets.

After making this change, I enabled warnings for data loss and for enexpected implicit conversions temporarily and found a ton of things that I fixed.

Any functions that take an index internally, should use "size_t" for any indexes and also should return "size_t" for any sizes of collections.

llvm-svn: 173463
2013-01-25 18:06:21 +00:00
Sean Callanan b1de8dd986 Quick fix to make LLDB TOT work with Clang TOT.
Avoids an error about an ambiguous constructor
call.

llvm-svn: 173118
2013-01-22 02:20:20 +00:00
Chandler Carruth 38336a168d Update to reflect API changes in r171367.
llvm-svn: 171381
2013-01-02 12:55:00 +00:00
Chandler Carruth 1e157587fe Rewrite #includes for llvm/Foo.h to llvm/IR/Foo.h as appropriate to reflect the
migration in r171366.

I don't know anything about lldb, but a force run of the build bot indicated it
would need this patch. I'll try to watch the build bot to get it green.

llvm-svn: 171374
2013-01-02 12:20:07 +00:00
Daniel Malea 93a64300f8 Fix Linux build warnings due to redefinition of macros:
- add new header lldb-python.h to be included before other system headers
- short term fix (eventually python dependencies must be cleaned up)

Patch by Matt Kopec!

llvm-svn: 169341
2012-12-05 00:20:57 +00:00
Daniel Malea d01b2953fa Resolve printf formatting warnings on Linux:
- use macros from inttypes.h for format strings instead of OS-specific types

Patch from Matt Kopec!

llvm-svn: 168945
2012-11-29 21:49:15 +00:00
Greg Clayton 38d880ac01 Fix lldb to compile with top of tree LLVM/clang.
llvm-svn: 168204
2012-11-16 21:35:22 +00:00
Greg Clayton 0734dfb23d Patch from Matt Kopec:
This patch switches support on Linux from JIT to MCJIT.

llvm-svn: 167026
2012-10-30 17:11:34 +00:00
Greg Clayton fb9c6b760b Cleanup some variable names to indicate auto pointers and also manager the llvm::Module memory more correctly.
llvm-svn: 166598
2012-10-24 17:37:53 +00:00
Sean Callanan aa0f9cbc9a Added support for "bool", "true", and "false" to
the expression parser (also wchar_t) and added a
test case.

llvm-svn: 166131
2012-10-17 22:09:59 +00:00
Jim Ingham 28eb57114d Bunch of cleanups for warnings found by the llvm static analyzer.
llvm-svn: 165808
2012-10-12 17:34:26 +00:00
Sean Callanan c2bd8c2158 Removed some debugging cruft.
llvm-svn: 164572
2012-09-24 23:11:56 +00:00
Sean Callanan 3d654b3044 Brought LLDB top-of-tree into sync with LLVM/Clang
top-of-tree.  Removed all local patches and llvm.zip.

The intent is that fron now on top-of-tree will
always build against LLVM/Clang top-of-tree, and
that problems building will be resolved as they
occur.  Stable release branches of LLDB can be
constructed as needed and linked to specific release
branches of LLVM/Clang.

llvm-svn: 164563
2012-09-24 22:25:51 +00:00
Sean Callanan 4ed61b001c Disable the "pretty stack trace" signal handler,
which can conflict with accurate crash reporting
in multithreaded contexts.

llvm-svn: 163282
2012-09-06 01:39:02 +00:00
Sean Callanan 9a028519e8 Removed explicit NULL checks for shared pointers
and instead made us use implicit casts to bool.
This generated a warning in C++11.

<rdar://problem/11930775>

llvm-svn: 161559
2012-08-09 00:50:26 +00:00
Sean Callanan 7e6d4e5a11 Instructions generated by a disassembler can now
keep a shared pointer to their disassembler.  This
is important for the LLVM-C disassembler because
it needs to lock its parent in order to disassemble
itself.

This means that every interface that returned a
Disassembler* needs to return a DisassemblerSP, so
that the instructions and any external owners share
the same reference count on the object.  I changed
all clients to use this shared pointer, which also
plugged a few leaks.

<rdar://problem/12002822>

llvm-svn: 161123
2012-08-01 18:50:59 +00:00
Sean Callanan e3333d69db Minor fixes for ARM/iOS targets:
- On iOS, we select the "apcs-gnu" ABI to match
  what libraries expect.

- Literals are now allocated at their preferred
  alignment, eliminating many alignment crashes.

llvm-svn: 158236
2012-06-08 22:20:41 +00:00
Sean Callanan 8d825786d1 Enabled C++11 in the expression parser. auto and
various other syntactic sugar work.  Lambdas do
not due to some problems relocating code containing
lambdas.  Rvalue references work when returned from
expressions, but need more testing.

llvm-svn: 156948
2012-05-16 21:03:38 +00:00
Greg Clayton ba812f4284 <rdar://problem/11330621>
Fixed the DisassemblerLLVMC disassembler to parse more efficiently instead of parsing opcodes over and over. The InstructionLLVMC class now only reads the opcode in the InstructionLLVMC::Decode function. This can be done very efficiently for ARM and architectures that have fixed opcode sizes. For x64 it still calls the disassembler to get the byte size.

Moved the lldb_private::Instruction::Dump(...) function up into the lldb_private::Instruction class and it now uses the function that gets the mnemonic, operandes and comments so that all disassembly is using the same code.

Added StreamString::FillLastLineToColumn() to allow filling a line up to a column with a character (which is used by the lldb_private::Instruction::Dump(...) function).

Modified the Opcode::GetData() fucntion to "do the right thing" for thumb instructions.

llvm-svn: 156532
2012-05-10 02:52:23 +00:00
Sean Callanan 0765c82694 Disabled spell checking in the expression parser,
which incurs large overheads in terms of type
parsing and importing.

llvm-svn: 154885
2012-04-17 00:49:48 +00:00
Sean Callanan 226b70c154 Updated the revision of LLVM/Clang used by LLDB.
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
2012-03-08 02:39:03 +00:00
Sean Callanan d5f33a86f0 Updated LLVM to take a new MC JIT that supports
allocations by section.  We install these sections
in the target process and inform the JIT of their
new locations.

Also removed some unused variable warnings.

llvm-svn: 151789
2012-03-01 02:03:47 +00:00
Greg Clayton e72dfb321c <rdar://problem/10103468>
I started work on being able to add symbol files after a debug session
had started with a new "target symfile add" command and quickly ran into
problems with stale Address objects in breakpoint locations that had 
lldb_private::Section pointers into modules that had been removed or 
replaced. This also let to grabbing stale modules from those sections. 
So I needed to thread harded the Address, Section and related objects.

To do this I modified the ModuleChild class to now require a ModuleSP
on initialization so that a weak reference can created. I also changed
all places that were handing out "Section *" to have them hand out SectionSP.
All ObjectFile, SymbolFile and SymbolVendors were inheriting from ModuleChild
so all of the find plug-in, static creation function and constructors now
require ModuleSP references instead of Module *. 

Address objects now have weak references to their sections which can
safely go stale when a module gets destructed. 

This checkin doesn't complete the "target symfile add" command, but it
does get us a lot clioser to being able to do such things without a high
risk of crashing or memory corruption.

llvm-svn: 151336
2012-02-24 01:59:29 +00:00
Greg Clayton d9e416c0ea The second part in thread hardening the internals of LLDB where we make
the lldb_private::StackFrame objects hold onto a weak pointer to the thread
object. The lldb_private::StackFrame objects the the most volatile objects
we have as when we are doing single stepping, frames can often get lost or
thrown away, only to be re-created as another object that still refers to the
same frame. We have another bug tracking that. But we need to be able to 
have frames no longer be able to get the thread when they are not part of
a thread anymore, and this is the first step (this fix makes that possible
but doesn't implement it yet).

Also changed lldb_private::ExecutionContextScope to return shared pointers to
all objects in the execution context to further thread harden the internals.

llvm-svn: 150871
2012-02-18 05:35:26 +00:00
Sean Callanan 5b26f27f46 I have brought LLDB up-to-date with top of tree
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
2012-02-04 08:49:35 +00:00
Sean Callanan 175a0d04b6 Added a mechanism for the IR interpreter to return
an error along with its boolean result.  The
expression parser reports this error if the 
interpreter fails and the expression could not be
run in the target.

llvm-svn: 148870
2012-01-24 22:06:48 +00:00
Johnny Chen b49440fa92 http://llvm.org/bugs/show_bug.cgi?id=11618
lldb::SBValue::AddressOf does not work on dereferenced registers in synthetic children provider

Patch submitted by Enrico Granata.

llvm-svn: 147637
2012-01-06 00:35:38 +00:00
Sean Callanan 20bb3aa53a The "desired result type" code in the expression
parser has hitherto been an implementation waiting
for a use.  I have now tied the '-o' option for
the expression command -- which indicates that the
result is an Objective-C object and needs to be
printed -- to the ExpressionParser, which
communicates the desired type to Clang.

Now, if the result of an expression is determined
by an Objective-C method call for which there is
no type information, that result is implicitly
cast to id if and only if the -o option is passed
to the expression command.  (Otherwise if there
is no explicit cast Clang will issue an error.
This behavior is identical to what happened before
r146756.)

Also added a testcase for -o enabled and disabled.

llvm-svn: 147099
2011-12-21 22:22:58 +00:00
Sean Callanan a5230ce303 Picked up a new revision of Clang to pull in Objective-C
enhancements.  With these enhancements, the return values
of Objective-C methods with unknown return types can be
implicitly cast to id for the purpose of making method
calls.

So what would have required this:

(int)[(id)[ClassWithNoDebugInfo methodReturningObject] methodReturningInt]

can now be written as:

(int)[[ClassWithNoDebugInfo methodReturningObject] methodReturningInt]

llvm-svn: 145567
2011-12-01 04:31:46 +00:00
Sean Callanan c7b650670e Added a language parameter to the expression parser,
which will in the future allow expressions to be
compiled as C, C++, and Objective-C instead of the
current default Objective-C++.  This feature requires
some additional support from Clang -- specifically, it
requires reference types in the parser regardless of
language -- so it is not yet exposed to the user.

llvm-svn: 144042
2011-11-07 23:35:40 +00:00
Sean Callanan bfb237bc02 Updated LLVM/Clang to pick up a fix for imports of
C++ vtables, fixing a record layout problem in the
expression parser.

Also fixed various problems with the generation 
and unpacking of llvm.zip given our new better
handling of multiple architectures in the LLVM
build.

(And added a log message that will hopefully catch
record layout problems in the future.)

llvm-svn: 143741
2011-11-04 22:46:46 +00:00
Sean Callanan ea685aeb3c Minor logging changes: added logging right before
the expression makes it to the JIT, and made some
logging only appear in verbose mode.

llvm-svn: 143467
2011-11-01 17:33:54 +00:00
Sean Callanan eddeb3b96f As part of a general refactoring of ClangASTSource to
allow it to complete types on behalf of any AST context
(including the "scratch" AST context associated with
the target), I scrapped its role as intermediary between
the Clang parser and ClangExpressionDeclMap, and instead
made ClangExpressionDeclMap inherit from ClangASTSource.

After this, I will migrate the functions that complete
types and perform namespace lookups from
ClangExpressionDeclMap to ClangASTSource.  Ultimately
ClangExpressionDeclMap's only responsiblity will be to
look up variables and ensure that they are materialized
and dematerialized correctly.

llvm-svn: 143253
2011-10-28 23:38:38 +00:00
Sean Callanan 2e2b8b844c Enabled dedicated debugger support in Clang, meaning
that Objective-C methods returning types incompatible
with "id" can be properly cast.

llvm-svn: 142702
2011-10-21 23:40:00 +00:00
Sean Callanan 503aa525ea Implemented a namespace map that allows searching
of namespaces (only in the modules where they've
been found) for entities inside those namespaces.

For each NamespaceDecl that has been imported into
the parser, we maintain a map containing
[ModuleSP, ClangNamespaceDecl] pairs in the ASTImporter.
This map has one entry for each module in which the
namespace has been found.  When we later scan for an
entity inside a namespace, we search only the modules
in which that namespace was found.

Also made a small whitespace fix in 
ClangExpressionParser.cpp.

llvm-svn: 141748
2011-10-12 00:12:34 +00:00
Sean Callanan 880e680fa3 Updated LLVM/Clang to pull in the latest ARM disassembler.
This involved minor changes to the way we report Objective-C
methods, as well as cosmetic changes and added parameters
for a variety of Clang APIs.

llvm-svn: 141437
2011-10-07 23:18:13 +00:00
Greg Clayton c14ee32db5 Converted the lldb_private::Process over to use the intrusive
shared pointers.

Changed the ExecutionContext over to use shared pointers for
the target, process, thread and frame since these objects can
easily go away at any time and any object that was holding onto
an ExecutionContext was running the risk of using a bad object.

Now that the shared pointers for target, process, thread and
frame are just a single pointer (they all use the instrusive
shared pointers) the execution context is much safer and still
the same size. 

Made the shared pointers in the the ExecutionContext class protected
and made accessors for all of the various ways to get at the pointers,
references, and shared pointers.

llvm-svn: 140298
2011-09-22 04:58:26 +00:00
Sean Callanan 90539456a1 Fixed a problem where expressions would attempt to
allocate memory in a process that did not support
expression execution.  Also improved detection of
whether or not a process can execute expressions.

llvm-svn: 140202
2011-09-20 23:01:51 +00:00
Sean Callanan 3bfdaa2a47 This patch modifies the expression parser to allow it
to execute expressions even in the absence of a process.
This allows expressions to run in situations where the
target cannot run -- e.g., to perform calculations based
on type information, or to inspect a binary's static
data.

This modification touches the following files:

lldb-private-enumerations.h
  Introduce a new enum specifying the policy for
  processing an expression.  Some expressions should
  always be JITted, for example if they are functions
  that will be used over and over again.  Some
  expressions should always be interpreted, for
  example if the target is unsafe to run.  For most,
  it is acceptable to JIT them, but interpretation
  is preferable when possible.

Target.[h,cpp]
  Have EvaluateExpression now accept the new enum.

ClangExpressionDeclMap.[cpp,h]
  Add support for the IR interpreter and also make
  the ClangExpressionDeclMap more robust in the 
  absence of a process.

ClangFunction.[cpp,h]
  Add support for the new enum.

IRInterpreter.[cpp,h]
  New implementation.

ClangUserExpression.[cpp,h]
  Add support for the new enum, and for running 
  expressions in the absence of a process.

ClangExpression.h
  Remove references to the old DWARF-based method
  of evaluating expressions, because it has been
  superseded for now.

ClangUtilityFunction.[cpp,h]
  Add support for the new enum.

ClangExpressionParser.[cpp,h]
  Add support for the new enum, remove references
  to DWARF, and add support for checking whether
  the expression could be evaluated statically.

IRForTarget.[h,cpp]
  Add support for the new enum, and add utility
  functions to support the interpreter.

IRToDWARF.cpp
  Removed

CommandObjectExpression.cpp
  Remove references to the obsolete -i option.

Process.cpp 
  Modify calls to ClangUserExpression::Evaluate
  to pass the correct enum (for dlopen/dlclose)

SBValue.cpp
  Add support for the new enum.

SBFrame.cpp
  Add support for he new enum.

BreakpointOptions.cpp
  Add support for the new enum.

llvm-svn: 139772
2011-09-15 02:13:07 +00:00
Sean Callanan bccce81340 Added support for persistent types to the
expression parser.  You can use a persistent
type like this:

(lldb) expr struct $foo { int a; int b; };
(lldb) struct $foo i; i.a = 2; i.b = 3; i
($foo) $0 = {
  (int) a = 2
  (int) b = 3
}

typedefs work similarly.

This patch affects the following files:

test/expression_command/persistent_types/*
  A test case for persistent types,
  in particular structs and typedefs.

ClangForward.h
  Added TypeDecl, needed to declare some
  functions in ASTResultSynthesizer.h

ClangPersistentVariables.[h,cpp]
  Added a list of persistent types to the
  persistent variable store.

ASTResultSynthesizer.[h,cpp]
  Made the AST result synthesizer iterate
  across TypeDecls in the expression, and
  record any persistent types found.  Also
  made a minor documentation fix.

ClangUserExpression.[h,cpp]
  Extended the user expression class to
  keep the state needed to report the
  persistent variable store for the target
  to the AST result synthesizers. 

  Also introduced a new error code for
  expressions that executed normally but
  did not return a result.

CommandObjectExpression.cpp
  Improved output for expressions (like 
  declarations of new persistent types) that
  don't return a result.  This is no longer
  treated as an error.

llvm-svn: 138383
2011-08-23 21:20:51 +00:00
Peter Collingbourne eb72547f09 Add reloc arg to standard JIT createJIT()
Fixes non-__APPLE__ build.  Patch by Matt Johnson!

llvm-svn: 136580
2011-07-30 22:42:24 +00:00
Sean Callanan cc427fadec This change brings in the latest LLVM/Clang, and
completes the support in the LLDB expression parser
for incomplete types.  Clang now imports types
lazily, and we complete those types as necessary.

Changes include:

- ClangASTSource now supports three APIs which it
  passes to ClangExpressionDeclMap.  CompleteType
  completes a TagDecl or an ObjCInterfaceDecl when
  needed; FindExternalVisibleDecls finds named
  entities that are visible in the expression's
  scope; and FindExternalLexicalDecls performs a
  (potentially restricted) search for entities
  inside a lexical scope like a namespace.  These
  changes mean that entities in namespaces should
  work normally.

- The SymbolFileDWARF code for searching a context
  for a specific name is now more general, and can
  search arbitrary contexts.

- We are continuing to adapt our calls into LLVM
  from interfaces that take start and end iterators
  when accepting multiple items to interfaces that
  use ArrayRef.

- I have cleaned up some code, especially our use
  of namespaces.

This change is neutral for our testsuite and greatly
improves correctness for large programs (like Clang)
with complicated type systems.  It should also lay
the groundwork for improving the expression parser's
performance as we are lazier and lazier about
providing type information.

llvm-svn: 136555
2011-07-30 02:42:06 +00:00
Johnny Chen 4480530a0f Patch by Matt Johnson to silence G++ warnings!
Used hand merge to apply the diffs.  I did not apply the diffs for FormatManager.h and
the diffs for memberwise initialization for ValueObject.cpp because they changed since.
I will ask my colleague to apply them later.

llvm-svn: 135508
2011-07-19 19:48:13 +00:00
Enrico Granata 20edcdbe8a The implementation of categories is now synchronization safe
Code cleanup:
 - The Format Manager implementation is now split between two files: FormatClasses.{h|cpp} where the
   actual formatter classes (ValueFormat, SummaryFormat, ...) are implemented and
   FormatManager.{h|cpp} where the infrastructure classes (FormatNavigator, FormatManager, ...)
   are contained. The wrapper code always remains in Debugger.{h|cpp}
 - Several leftover fields, methods and comments from previous design choices have been removed
type category subcommands (enable, disable, delete) now can take a list of category names as input
 - for type category enable, saying "enable A B C" is the same as saying
    enable C
    enable B
    enable A
   (the ordering is relevant in enabling categories, and it is expected that a user typing
    enable A B C wants to look into category A, then into B, then into C and not the other
    way round)
 - for the other two commands, the order is not really relevant (however, the same inverted ordering
   is used for consistency)

llvm-svn: 135494
2011-07-19 18:03:25 +00:00
Peter Collingbourne 1740be7cd9 Disable MCJIT on non-Darwin platforms
Currently the runtime dynamic linker lacks object file support for anything
other than Mach-O.

llvm-svn: 132583
2011-06-03 20:40:12 +00:00
Sean Callanan 79763a42ab This commit integrates support for the LLVM MCJIT
into the mainline LLDB codebase.  MCJIT introduces
API improvements and better architectural support.

This commit adds a new subsystem, the
ProcessDataAllocator, which is responsible for
performing static data allocations on behalf of the
IR transformer.  MCJIT currently does not support
the relocations required to store the constant pool
in the same allocation as the function body, so we
allocate a heap region separately and redirect
static data references from the expression to that
heap region in a new IR modification pass.

This patch also fixes bugs in the IR
transformations that were exposed by the transition
to the MCJIT.  Finally, the patch also pulls in a
more recent revision of LLVM so that the MCJIT is
available for use.

llvm-svn: 131923
2011-05-23 21:40:23 +00:00
Greg Clayton f3ef3d2af9 Added new lldb_private::Process memory read/write functions to stop a bunch
of duplicated code from appearing all over LLDB:

lldb::addr_t
Process::ReadPointerFromMemory (lldb::addr_t vm_addr, Error &error);

bool
Process::WritePointerToMemory (lldb::addr_t vm_addr, lldb::addr_t ptr_value, Error &error);

size_t
Process::ReadScalarIntegerFromMemory (lldb::addr_t addr, uint32_t byte_size, bool is_signed, Scalar &scalar, Error &error);

size_t
Process::WriteScalarToMemory (lldb::addr_t vm_addr, const Scalar &scalar, uint32_t size, Error &error);

in lldb_private::Process the following functions were renamed:

From:
uint64_t
Process::ReadUnsignedInteger (lldb::addr_t load_addr, 
                              size_t byte_size,
                              Error &error);

To:
uint64_t
Process::ReadUnsignedIntegerFromMemory (lldb::addr_t load_addr, 
                                        size_t byte_size,
                                        uint64_t fail_value, 
                                        Error &error);

Cleaned up a lot of code that was manually doing what the above functions do
to use the functions listed above.

Added the ability to get a scalar value as a buffer that can be written down
to a process (byte swapping the Scalar value if needed):

uint32_t 
Scalar::GetAsMemoryData (void *dst,
                        uint32_t dst_len, 
                        lldb::ByteOrder dst_byte_order,
                        Error &error) const;

The "dst_len" can be smaller that the size of the scalar and the least 
significant bytes will be written. "dst_len" can also be larger and the
most significant bytes will be padded with zeroes. 

Centralized the code that adds or removes address bits for callable and opcode
addresses into lldb_private::Target:

lldb::addr_t
Target::GetCallableLoadAddress (lldb::addr_t load_addr, AddressClass addr_class) const;

lldb::addr_t
Target::GetOpcodeLoadAddress (lldb::addr_t load_addr, AddressClass addr_class) const;

All necessary lldb_private::Address functions now use the target versions so
changes should only need to happen in one place if anything needs updating.

Fixed up a lot of places that were calling :

addr_t
Address::GetLoadAddress(Target*);

to call the Address::GetCallableLoadAddress() or Address::GetOpcodeLoadAddress()
as needed. There were many places in the breakpoint code where things could
go wrong for ARM if these weren't used.

llvm-svn: 131878
2011-05-22 22:46:53 +00:00
Greg Clayton 1cfca1dc09 Dump JIT memory requirements when "log enable lldb expr" logging is enabled.
Correctly handle invalid 32-bit mmap fail return value in ProcessGDBRemote.

llvm-svn: 131394
2011-05-15 23:56:52 +00:00
Greg Clayton 70b5765740 Added the ability to get the return value from a ThreadPlanCallFunction
thread plan. In order to get the return value, you can call:

        void
        ThreadPlanCallFunction::RequestReturnValue (lldb::ValueSP &return_value_sp);
        
This registers a shared pointer to a return value that will get filled in if
everything goes well. After the thread plan is run the return value will be
extracted for you.

Added an ifdef to be able to switch between the LLVM MCJIT and the standand JIT.
We currently have the standard JIT selected because we have some work to do to
get the MCJIT fuctioning properly.

Added the ability to call functions with 6 argument in the x86_64 ABI.

Added the ability for GDBRemoteCommunicationClient to detect if the allocate
and deallocate memory packets are supported and to not call allocate memory 
("_M") or deallocate ("_m") if we find they aren't supported.

Modified the ProcessGDBRemote::DoAllocateMemory(...) and ProcessGDBRemote::DoDeallocateMemory(...) 
to be able to deal with the allocate and deallocate memory packets not being 
supported. If they are not supported, ProcessGDBRemote will switch to calling
"mmap" and "munmap" to allocate and deallocate memory instead using our 
trivial function call support.

Modified the "void ProcessGDBRemote::DidLaunchOrAttach()" to correctly ignore 
the qHostInfo triple information if any was specified in the target. Currently 
if the target only specifies an architecture when creating the target:

(lldb) target create --arch i386 a.out

Then the vendor, os and environemnt will be adopted by the target.

If the target was created with any triple that specifies more than the arch:

(lldb) target create --arch i386-unknown-unknown a.out

Then the target will maintain its triple and not adopt any new values. This
can be used to help force bare board debugging where the dynamic loader for
static files will get used and users can then use "target modules load ..."
to set addressses for any files that are desired.

Added back some convenience functions to the lldb_private::RegisterContext class
for writing registers with unsigned values. Also made all RegisterContext
constructors explicit to make sure we know when an integer is being converted
to a RegisterValue. 

llvm-svn: 131370
2011-05-15 01:25:55 +00:00
Sean Callanan 775022652b Introduced support for UnknownAnyTy, the Clang type
representing variables whose type must be inferred
from the way they are used.  Functions without debug
information now return UnknownAnyTy and must be cast.

Variables with no debug information are not yet using
UnknownAnyTy; instead they are assumed to be void*.
Support for variables of unknown type is coming (and,
in fact, some relevant support functions are included
in this commit) but will take a bit of extra effort.

The testsuite has also been updated to reflect the new
requirement that the result of printf be cast, i.e.

expr (int) printf("Hello world!")

llvm-svn: 131263
2011-05-12 23:54:16 +00:00
Sean Callanan 63697e5025 Made expressions that are just casts of pointer
variables be evaluated statically.

Also fixed a bug that caused the results of
statically-evaluated expressions to be materialized
improperly.

This bug also removes some duplicate code.

llvm-svn: 131042
2011-05-07 01:06:41 +00:00
Sean Callanan 1b1bf6e982 Updated LLVM to pick up fixes to the ARM instruction
tables.

llvm-svn: 129500
2011-04-14 02:01:31 +00:00
Greg Clayton 357132eb9a Added the ability to get the min and max instruction byte size for
an architecture into ArchSpec:

uint32_t
ArchSpec::GetMinimumOpcodeByteSize() const;

uint32_t
ArchSpec::GetMaximumOpcodeByteSize() const;

Added an AddressClass to the Instruction class in Disassembler.h.
This allows decoded instructions to know know if they are code,
code with alternate ISA (thumb), or even data which can be mixed
into code. The instruction does have an address, but it is a good
idea to cache this value so we don't have to look it up more than 
once.

Fixed an issue in Opcode::SetOpcodeBytes() where the length wasn't
getting set.

Changed:

	bool
	SymbolContextList::AppendIfUnique (const SymbolContext& sc);

To:
	bool
	SymbolContextList::AppendIfUnique (const SymbolContext& sc, 
									   bool merge_symbol_into_function);

This function was typically being used when looking up functions
and symbols. Now if you lookup a function, then find the symbol,
they can be merged into the same symbol context and not cause
multiple symbol contexts to appear in a symbol context list that
describes the same function.

Fixed the SymbolContext not equal operator which was causing mixed
mode disassembly to not work ("disassembler --mixed --name main").

Modified the disassembler classes to know about the fact we know,
for a given architecture, what the min and max opcode byte sizes
are. The InstructionList class was modified to return the max
opcode byte size for all of the instructions in its list.
These two fixes means when disassemble a list of instructions and dump 
them and show the opcode bytes, we can format the output more 
intelligently when showing opcode bytes. This affects any architectures
that have varying opcode byte sizes (x86_64 and i386). Knowing the max
opcode byte size also helps us to be able to disassemble N instructions
without having to re-read data if we didn't read enough bytes.

Added the ability to set the architecture for the disassemble command.
This means you can easily cross disassemble data for any supported 
architecture. I also added the ability to specify "thumb" as an 
architecture so that we can force disassembly into thumb mode when
needed. In GDB this was done using a hack of specifying an odd
address when disassembling. I don't want to repeat this hack in LLDB,
so the auto detection between ARM and thumb is failing, just specify
thumb when disassembling:

(lldb) disassemble --arch thumb --name main

You can also have data in say an x86_64 file executable and disassemble
data as any other supported architecture:
% lldb a.out
Current executable set to 'a.out' (x86_64).
(lldb) b main
(lldb) run
(lldb) disassemble --arch thumb --count 2 --start-address 0x0000000100001080 --bytes
0x100001080:  0xb580 push   {r7, lr}
0x100001082:  0xaf00 add    r7, sp, #0

Fixed Target::ReadMemory(...) to be able to deal with Address argument object
that isn't section offset. When an address object was supplied that was
out on the heap or stack, target read memory would fail. Disassembly uses
Target::ReadMemory(...), and the example above where we disassembler thumb
opcodes in an x86 binary was failing do to this bug.

llvm-svn: 128347
2011-03-26 19:14:58 +00:00
Greg Clayton 1080edbcdd Cleaned up the Disassembler code a bit more. You can now request a disassembler
plugin by name on the command line for when there is more than one disassembler
plugin.

Taught the Opcode class to dump itself so that "disassembler -b" will dump
the bytes correctly for each opcode type. Modified all places that were passing
the opcode bytes buffer in so that the bytes could be displayed to just pass
in a bool that indicates if we should dump the opcode bytes since the opcode
now lives inside llvm_private::Instruction.

llvm-svn: 128290
2011-03-25 18:03:16 +00:00
Greg Clayton e0d378b334 Fixed the LLDB build so that we can have private types, private enums and
public types and public enums. This was done to keep the SWIG stuff from
parsing all sorts of enums and types that weren't needed, and allows us to
abstract our API better.

llvm-svn: 128239
2011-03-24 21:19:54 +00:00
Jim Ingham 37023b06bd Add the ability to disassemble "n" instructions from the current PC, or the first "n" instructions in a function.
Also added a "-p" flag that disassembles from the current pc.

llvm-svn: 128063
2011-03-22 01:48:42 +00:00
Sean Callanan fb0b7583a7 Updated to LLVM/Clang revision 127600.
llvm-svn: 127634
2011-03-15 00:17:19 +00:00
Greg Clayton 64195a2c8b Abtracted all mach-o and ELF out of ArchSpec. This patch is a modified form
of Stephen Wilson's idea (thanks for the input Stephen!). What I ended up
doing was:
- Got rid of ArchSpec::CPU (which was a generic CPU enumeration that mimics
  the contents of llvm::Triple::ArchType). We now rely upon the llvm::Triple 
  to give us the machine type from llvm::Triple::ArchType.
- There is a new ArchSpec::Core definition which further qualifies the CPU
  core we are dealing with into a single enumeration. If you need support for
  a new Core and want to debug it in LLDB, it must be added to this list. In
  the future we can allow for dynamic core registration, but for now it is
  hard coded.
- The ArchSpec can now be initialized with a llvm::Triple or with a C string
  that represents the triple (it can just be an arch still like "i386").
- The ArchSpec can still initialize itself with a architecture type -- mach-o
  with cpu type and subtype, or ELF with e_machine + e_flags -- and this will
  then get translated into the internal llvm::Triple::ArchSpec + ArchSpec::Core.
  The mach-o cpu type and subtype can be accessed using the getter functions:
  
  uint32_t
  ArchSpec::GetMachOCPUType () const;

  uint32_t
  ArchSpec::GetMachOCPUSubType () const;
  
  But these functions are just converting out internal llvm::Triple::ArchSpec 
  + ArchSpec::Core back into mach-o. Same goes for ELF.

All code has been updated to deal with the changes.

This should abstract us until later when the llvm::TargetSpec stuff gets
finalized and we can then adopt it.

llvm-svn: 126278
2011-02-23 00:35:02 +00:00
Greg Clayton 514487e806 Made lldb_private::ArchSpec contain much more than just an architecture. It
now, in addition to cpu type/subtype and architecture flavor, contains:
- byte order (big endian, little endian)
- address size in bytes
- llvm::Triple for true target triple support and for more powerful plug-in
  selection.

llvm-svn: 125602
2011-02-15 21:59:32 +00:00
Sean Callanan 3989fb9211 Added error reporting to IRForTarget so that the
user doesn't have to enable logging to see where
something went wrong.

llvm-svn: 124342
2011-01-27 01:07:04 +00:00
Greg Clayton 22a939a782 Make expressions clean up their JIT'ed code allocation.
llvm-svn: 123855
2011-01-19 23:00:49 +00:00
Sean Callanan 2c777c4afb Updated to revision 123723 of LLVM, to bring in
support for minimal type import functionality.

llvm-svn: 123787
2011-01-18 23:32:05 +00:00
Sean Callanan c3a160062d Added support for the fragile ivars provided by
Apple's Objective-C 2.0 runtime.  They are enabled
if the Objective-C runtime has the proper version.

llvm-svn: 123694
2011-01-17 23:42:46 +00:00
Greg Clayton f83f32d3ef Enabled ObjC 2 abilities for expressions. We will enable the fragile ivar
stuff soon when we get a fix for looking up the "OBJC_IVAR_$_Class.ivar"
style symbols into IRForTarget::ResolveExternals() next week.

llvm-svn: 123507
2011-01-15 01:32:14 +00:00
Sean Callanan e4ec90e990 Implemented a feature where the expression parser
can avoid running the code in the target if the
expression's result is known and the expression
has no side effects.

Right now this feature is quite conservative in
its guess about side effects, and it only computes
integer results, but the machinery to make it more
sophisticated is there.

llvm-svn: 121952
2010-12-16 03:17:46 +00:00
Greg Clayton 8b2fe6dcbd Modified LLDB expressions to not have to JIT and run code just to see variable
values or persistent expression variables. Now if an expression consists of
a value that is a child of a variable, or of a persistent variable only, we
will create a value object for it and make a ValueObjectConstResult from it to
freeze the value (for program variables only, not persistent variables) and
avoid running JITed code. For everything else we still parse up and JIT code
and run it in the inferior. 

There was also a lot of clean up in the expression code. I made the 
ClangExpressionVariables be stored in collections of shared pointers instead
of in collections of objects. This will help stop a lot of copy constructors on
these large objects and also cleans up the code considerably. The persistent
clang expression variables were moved over to the Target to ensure they persist
across process executions.

Added the ability for lldb_private::Target objects to evaluate expressions.
We want to evaluate expressions at the target level in case we aren't running
yet, or we have just completed running. We still want to be able to access the
persistent expression variables between runs, and also evaluate constant 
expressions. 

Added extra logging to the dynamic loader plug-in for MacOSX. ModuleList objects
can now dump their contents with the UUID, arch and full paths being logged with
appropriate prefix values.

Thread hardened the Communication class a bit by making the connection auto_ptr
member into a shared pointer member and then making a local copy of the shared
pointer in each method that uses it to make sure another thread can't nuke the
connection object while it is being used by another thread.

Added a new file to the lldb/test/load_unload test that causes the test a.out file
to link to the libd.dylib file all the time. This will allow us to test using
the DYLD_LIBRARY_PATH environment variable after moving libd.dylib somewhere else.

llvm-svn: 121745
2010-12-14 02:59:59 +00:00
Greg Clayton 38a614034a Updated to latest LLVM/Clang for external AST source changes that allow
TagDecl subclasses and Objective C interfaces to complete themselves through
the ExternalASTSource class.

llvm-svn: 120749
2010-12-02 23:20:03 +00:00
Sean Callanan 6abfabff61 Modifications to type handling logic. We no longer
perform recursive type lookups, because these are not
required for full type fidelity.  We also make the
SelectorTable last for the full lifetime of the Clang
compiler; this was the source of many bugs.

llvm-svn: 119835
2010-11-19 20:20:02 +00:00
Sean Callanan 79439e86d1 Updated to the LLVM/Clang of 2010-11-17 at 3:30pm.
llvm-svn: 119677
2010-11-18 02:56:27 +00:00
Sean Callanan ece9649264 Added more logging so we see the register state
when a function starts and ends, and also the 
disassembly for anything that is a client of
ClangExpressionParser after it has been JIT
compiled.

llvm-svn: 118401
2010-11-08 03:49:50 +00:00
Greg Clayton 2d4edfbc6a Modified all logging calls to hand out shared pointers to make sure we
don't crash if we disable logging when some code already has a copy of the
logger. Prior to this fix, logs were handed out as pointers and if they were
held onto while a log got disabled, then it could cause a crash. Now all logs
are handed out as shared pointers so this problem shouldn't happen anymore.
We are also using our new shared pointers that put the shared pointer count
and the object into the same allocation for a tad better performance.

llvm-svn: 118319
2010-11-06 01:53:30 +00:00
Sean Callanan 10af7c430a Re-enabled LLDB's pointer checkers, and moved the
implementation of the Objective-C object checkers
into the Objective-C language runtime.

llvm-svn: 118226
2010-11-04 01:51:38 +00:00
Sean Callanan c2afd25ea1 Fixed a bug that was confusing the code generator
on i386 platforms, leading to crashes on simple
expressions.

llvm-svn: 118114
2010-11-02 23:20:00 +00:00
Sean Callanan 57bbc6ecc6 Print notes for expressions as well as errors
and warnings.

llvm-svn: 117947
2010-11-01 20:28:09 +00:00
Sean Callanan be3a1b14dc Fixed a problem where function calls on i386 weren't
being generated correctly.

Also added a messy way to single-step through expressions
that I will improve soon.

llvm-svn: 117342
2010-10-26 00:31:56 +00:00
Greg Clayton 7b462cc18a Made many ConstString functions inlined in the header file.
Changed all of our synthesized "___clang" functions, types and variables
that get used in expressions over to have a prefix of "$_lldb". Now when we
do name lookups we can easily switch off of the first '$' character to know
if we should look through only our internal (when first char is '$') stuff,
or when we should look through program variables, functions and types.

Converted all of the clang expression code over to using "const ConstString&" 
values for names instead of "const char *" since there were many places that
were converting the "const char *" names into ConstString names and them
throwing them away. We now avoid making a lot of ConstString conversions and
benefit from the quick comparisons in a few extra spots.

Converted a lot of code from LLVM coding conventions into LLDB coding 
conventions.

llvm-svn: 116634
2010-10-15 22:48:33 +00:00
Jim Ingham 36f3b369d2 Added support for breakpoint conditions. I also had to separate the "run the expression" part of ClangFunction::Execute from the "Gather the expression result" so that in the case of the Breakpoint condition I can move the condition evaluation into the normal thread plan processing.
Also added support for remembering the "last set breakpoint" so that "break modify" will act on the last set breakpoint.

llvm-svn: 116542
2010-10-14 23:45:03 +00:00
Sean Callanan 6b1b95376f Added extra logging, and made sure that the argument
struct for expressions is deallocated when the
ClangExpressionDeclMap is taken down.

llvm-svn: 116028
2010-10-08 01:58:41 +00:00
Greg Clayton 1d27316606 Added the ability to get the disassembly instructions from the function and
symbol.

llvm-svn: 115734
2010-10-06 03:09:58 +00:00
Sean Callanan 038df50315 Switched the expression parser from using TargetData
to using Clang to get type sizes.  This fixes a bug
where the type size for a double[2] was being wrongly
reported as 8 instead of 16 bytes, causing problems
for IRForTarget.

Also improved logging so that the next bug in this
area will be easier to find.

llvm-svn: 115208
2010-09-30 21:18:25 +00:00
Sean Callanan e2ef6e380b Updated to latest LLVM. Major LLVM changes:
- Sema is now exported (and there was much rejoicing.)

 - Storage classes are now centrally defined.

Also fixed some bugs that the new LLVM picked up.

llvm-svn: 114622
2010-09-23 03:01:22 +00:00
Sean Callanan fc55f5d1b0 Removed the hacky "#define this ___clang_this" handler
for C++ classes.  Replaced it with a less hacky approach:

 - If an expression is defined in the context of a
   method of class A, then that expression is wrapped as
   ___clang_class::___clang_expr(void*) { ... }
   instead of ___clang_expr(void*) { ... }.

 - ___clang_class is resolved as the type of the target
   of the "this" pointer in the method the expression
   is defined in.

 - When reporting the type of ___clang_class, a method
   with the signature ___clang_expr(void*) is added to
   that class, so that Clang doesn't complain about a
   method being defined without a corresponding
   declaration.

 - Whenever the expression gets called, "this" gets
   looked up, type-checked, and then passed in as the
   first argument.

This required the following changes:

 - The ABIs were changed to support passing of the "this"
   pointer as part of trivial calls.

 - ThreadPlanCallFunction and ClangFunction were changed
   to support passing of an optional "this" pointer.

 - ClangUserExpression was extended to perform the
   wrapping described above.

 - ClangASTSource was changed to revert the changes
   required by the hack.

 - ClangExpressionParser, IRForTarget, and
   ClangExpressionDeclMap were changed to handle
   different manglings of ___clang_expr flexibly.  This
   meant no longer searching for a function called
   ___clang_expr, but rather looking for a function whose
   name *contains* ___clang_expr.

 - ClangExpressionParser and ClangExpressionDeclMap now
   remember whether "this" is required, and know how to
   look it up as necessary.

A few inheritance bugs remain, and I'm trying to resolve
these.  But it is now possible to use "this" as well as
refer implicitly to member variables, when in the proper
context.

llvm-svn: 114384
2010-09-21 00:44:12 +00:00