Commit Graph

120 Commits

Author SHA1 Message Date
John McCall 49bfce4227 Refactor methods on DeclSpec to take a diagnostic& parameter, and reflect this
elsewhere.  Very slightly decouples DeclSpec users from knowing the exact
diagnostics to report, and makes it easier to provide different diagnostics in
some places.

llvm-svn: 77990
2009-08-03 20:12:06 +00:00
John McCall ef50e99783 sp.
llvm-svn: 77656
2009-07-31 02:20:35 +00:00
Fariborz Jahanian aee31ac316 Patch to accomodate Doug's comment on default
destruction of base/members for each destructor AST.

llvm-svn: 76663
2009-07-21 22:36:06 +00:00
Fariborz Jahanian 16094c2467 Added ASTs to destructor decl AST for default destruction of object's
base/members.

llvm-svn: 75849
2009-07-15 22:34:08 +00:00
Fariborz Jahanian 06b2374504 Build AST for default ctor-initializer when constructor has
out of line definition.

llvm-svn: 75668
2009-07-14 20:06:22 +00:00
Douglas Gregor c6d5edd2ed Add support for retrieving the Doxygen comment associated with a given
declaration in the AST. 

The new ASTContext::getCommentForDecl function searches for a comment
that is attached to the given declaration, and returns that comment, 
which may be composed of several comment blocks.

Comments are always available in an AST. However, to avoid harming
performance, we don't actually parse the comments. Rather, we keep the
source ranges of all of the comments within a large, sorted vector,
then lazily extract comments via a binary search in that vector only
when needed (which never occurs in a "normal" compile).

Comments are written to a precompiled header/AST file as a blob of
source ranges. That blob is only lazily loaded when one requests a
comment for a declaration (this never occurs in a "normal" compile). 

The indexer testbed now supports comment extraction. When the
-point-at location points to a declaration with a Doxygen-style
comment, the indexer testbed prints the associated comment
block(s). See test/Index/comments.c for an example.

Some notes:
  - We don't actually attempt to parse the comment blocks themselves,
  beyond identifying them as Doxygen comment blocks to associate them
  with a declaration.
  - We won't find comment blocks that aren't adjacent to the
  declaration, because we start our search based on the location of
  the declaration.
  - We don't go through the necessary hops to find, for example,
  whether some redeclaration of a declaration has comments when our
  current declaration does not. Similarly, we don't attempt to
  associate a \param Foo marker in a function body comment with the
  parameter named Foo (although that is certainly possible).
  - Verification of my "no performance impact" claims is still "to be
  done".

llvm-svn: 74704
2009-07-02 17:08:52 +00:00
Eli Friedman d95e1cda9e Fix screwup with my previous patch which broke tests. (The patch is
making sure we return true when annotating a function template with 
explicit template arguments, but not when we don't annotate anything.)

llvm-svn: 74383
2009-06-27 08:17:02 +00:00
Eli Friedman 9fe1bb40ae Fix a crash with constructs like x<false>() in C++. No testcase because
it doesn't actually work yet; we just error out a bit more gracefully.

llvm-svn: 74381
2009-06-27 06:24:06 +00:00
Chris Lattner 5558e9fc55 fix PR4452, a crash on invalid. The error recovery is still terrible in this case
but at least we don't crash :)

llvm-svn: 74264
2009-06-26 04:27:47 +00:00
Douglas Gregor 17a7c1297a Make sure that the template parameter lists get from the parser down to ActOnFunctionDeclarator for function template definitions
llvm-svn: 74040
2009-06-24 00:54:41 +00:00
Eli Friedman f5867dd51a Add parser support for #pragma weak.
llvm-svn: 72907
2009-06-05 00:49:58 +00:00
Douglas Gregor e44a2adf41 Reimplement much of the way that we track nested classes in the
parser. Rather than placing all of the delayed member function
declarations and inline definitions into a single bucket corresponding
to the top-level class, we instead mirror the nesting structure of the
nested classes and place the delayed member functions into their
appropriate place. Then, when we actually parse the delayed member
function declarations, set up the scope stack the same way as it was
when we originally saw the declaration, so that we can find, e.g.,
template parameters that are in scope.

llvm-svn: 72502
2009-05-27 23:11:45 +00:00
Douglas Gregor 1b57ff32a8 Implement parsing for explicit instantiations of class templates, e.g.,
template class X<int>;

This also cleans up the propagation of template information through
declaration parsing, which is used to improve some diagnostics.

llvm-svn: 71608
2009-05-12 23:25:50 +00:00
Douglas Gregor 36312bb5ee Parser::ParseDeclarationOrFunctionDefinition no longer needs to accept
template parameters.

llvm-svn: 71598
2009-05-12 21:43:46 +00:00
Douglas Gregor 2399628cea Refactor the parsing of declarations so that template declarations can
parse just a single declaration and provide a reasonable diagnostic
when the "only one declarator per template declaration" rule is
violated. This eliminates some ugly, ugly hackery where we used to
require thatn the layout of a DeclGroup of a single element be the
same as the layout of a single declaration.

llvm-svn: 71596
2009-05-12 21:31:51 +00:00
Sebastian Redl a7b98a772c Implement function-try-blocks. However, there's a very subtle bug that I can't track down.
llvm-svn: 70155
2009-04-26 20:35:05 +00:00
Chris Lattner 49836b448e fix a FIXME, providing accurate source range info for DeclStmt's. The end
of the range is now the ';' location.  For something like this:

$ cat t2.c 

#define bool int
void f(int x, int y) {
bool b = !x && y;
}

We used to produce:
$ clang-cc t2.c -ast-dump 
typedef char *__builtin_va_list;

void f(int x, int y)
(CompoundStmt 0x2201f10 <t2.c:3:22, line:5:1>
  (DeclStmt 0x2201ef0 <line:2:14>                   <----
    0x2201a20 "int b =
      (BinaryOperator 0x2201ed0 <line:4:10, col:16> 'int' '&&'
        (UnaryOperator 0x2201e90 <col:10, col:11> 'int' prefix '!'
          (DeclRefExpr 0x2201c90 <col:11> 'int' ParmVar='x' 0x2201a50))
        (DeclRefExpr 0x2201eb0 <col:16> 'int' ParmVar='y' 0x2201e10))")


Now we produce:

$ clang-cc t2.c -ast-dump
typedef char *__builtin_va_list;

void f(int x, int y)
(CompoundStmt 0x2201f10 <t2.c:3:22, line:5:1>
  (DeclStmt 0x2201ef0 <line:2:14, line:4:17>         <------
    0x2201a20 "int b =
      (BinaryOperator 0x2201ed0 <col:10, col:16> 'int' '&&'
        (UnaryOperator 0x2201e90 <col:10, col:11> 'int' prefix '!'
          (DeclRefExpr 0x2201c90 <col:11> 'int' ParmVar='x' 0x2201a50))
        (DeclRefExpr 0x2201eb0 <col:16> 'int' ParmVar='y' 0x2201e10))")

llvm-svn: 68288
2009-04-02 04:16:50 +00:00
Douglas Gregor 170512fa78 Add some more code modification hints
llvm-svn: 68261
2009-04-01 23:51:29 +00:00
Douglas Gregor e3e01a20d0 Add code modification hints to various parsing-related diagnostics.
Plus, reword a extension warnings to avoid talking about "ISO C" when
the extension might also be available in C++ or C++0x. 

llvm-svn: 68257
2009-04-01 22:41:11 +00:00
Douglas Gregor fe3d7d0880 Make parsing a semantic analysis a little more robust following Sema
failures that involve malformed types, e.g., "typename X::foo" where
"foo" isn't a type, or "std::vector<void>" that doens't instantiate
properly.

Similarly, be a bit smarter in our handling of ambiguities that occur
in Sema::getTypeName, to eliminate duplicate error messages about
ambiguous name lookup.

This eliminates two XFAILs in test/SemaCXX, one of which was crying
out to us, trying to tell us that we were producing repeated error
messages.

llvm-svn: 68251
2009-04-01 21:51:26 +00:00
Douglas Gregor dce2b62b70 Parsing, semantic analysis, and template instantiation for typename
specifiers that terminate in a simple-template-id, e.g.,

  typename MetaFun::template apply<T1, T2>

Also, implement template instantiation for dependent
nested-name-specifiers that involve unresolved identifiers, e.g.,

  typename T::type::type

llvm-svn: 68166
2009-04-01 00:28:59 +00:00
Douglas Gregor b67535d1b6 Parsing and AST representation for dependent template names that occur
within nested-name-specifiers, e.g., for the "apply" in

  typename MetaFun::template apply<T1, T2>::type

At present, we can't instantiate these nested-name-specifiers, so our
testing is sketchy.

llvm-svn: 68081
2009-03-31 00:43:58 +00:00
Douglas Gregor dc572a3266 Improve the representation of template names in the AST. This
representation handles the various ways in which one can name a
template, including unqualified references ("vector"), qualified
references ("std::vector"), and dependent template names
("MetaFun::template apply").

One immediate effect of this change is that the representation of
nested-name-specifiers in type names for class template
specializations (e.g., std::vector<int>) is more accurate. Rather than
representing std::vector<int> as

  std::(vector<int>)

we represent it as

  (std::vector)<int>

which more closely follows the C++ grammar. 

Additionally, templates are no longer represented as declarations
(DeclPtrTy) in Parse-Sema interactions. Instead, I've introduced a new
OpaquePtr type (TemplateTy) that holds the representation of a
TemplateName. This will simplify the handling of dependent
template-names, once we get there.

llvm-svn: 68074
2009-03-30 22:58:21 +00:00
Chris Lattner efb0f111f1 hoist checks for ; and in out of ParseInitDeclaratorListAfterFirstDeclarator
into ParseSimpleDeclaration, and improve a diagnostic.

llvm-svn: 68009
2009-03-29 17:18:04 +00:00
Chris Lattner 5bbb3c8ad9 Push DeclGroup much farther throughout the compiler. Now the various
productions (except the already broken ObjC cases like @class X,Y;) in 
the parser that can produce more than one Decl return a DeclGroup instead
of a Decl, etc.

This allows elimination of the Decl::NextDeclarator field, and exposes
various clients that should look at all decls in a group, but which were
only looking at one (such as the dumper, printer, etc).  These have been
fixed.

Still TODO:

1) there are some FIXME's in the code about potentially using
DeclGroup for better location info.
2) ParseObjCAtDirectives should return a DeclGroup due to @class etc.
3) I'm not sure what is going on with StmtIterator.cpp, or if it can
   be radically simplified now.
4) I put a truly horrible hack in ParseTemplate.cpp.

I plan to bring up #3/4 on the mailing list, but don't plan to tackle
#1/2 in the short term.

llvm-svn: 68002
2009-03-29 16:50:03 +00:00
Chris Lattner 83f095cc7e Introduce a new OpaquePtr<N> struct type, which is a simple POD wrapper for a
pointer.  Its purpose in life is to be a glorified void*, but which does not
implicitly convert to void* or other OpaquePtr's with a different UID.

Introduce Action::DeclPtrTy which is a typedef for OpaquePtr<0>.  Change the 
entire parser/sema interface to use DeclPtrTy instead of DeclTy*.  This
makes the C++ compiler enforce that these aren't convertible to other opaque
types.

We should also convert ExprTy, StmtTy, TypeTy, AttrTy, BaseTy, etc,
but I don't plan to do that in the short term.

The one outstanding known problem with this patch is that we lose the 
bitmangling optimization where ActionResult<DeclPtrTy> doesn't know how to
bitmangle the success bit into the low bit of DeclPtrTy.  I will rectify
this with a subsequent patch.

llvm-svn: 67952
2009-03-28 19:18:32 +00:00
Douglas Gregor 333489bba3 Initial implementation of parsing, semantic analysis, and template
instantiation for C++ typename-specifiers such as

  typename T::type

The parsing of typename-specifiers is relatively easy thanks to
annotation tokens. When we see the "typename", we parse the
typename-specifier and produce a typename annotation token. There are
only a few places where we need to handle this. We currently parse the
typename-specifier form that terminates in an identifier, but not the
simple-template-id form, e.g.,

  typename T::template apply<U, V>

Parsing of nested-name-specifiers has a similar problem, since at this
point we don't have any representation of a class template
specialization whose template-name is unknown.

Semantic analysis is only partially complete, with some support for
template instantiation that works for simple examples. 

llvm-svn: 67875
2009-03-27 23:10:48 +00:00
Douglas Gregor c23500ebb3 Simplify CXXScopeSpec a lot. No more weird SmallVector-like hacks here
llvm-svn: 67800
2009-03-26 23:56:24 +00:00
Anders Carlsson dfbbdf6fd5 Handle parsing of templates in member declarations. Pass the AccessSpecifier all the way down to ActOnClassTemplate.
Doug, Sebastian: Plz review! :)

llvm-svn: 67723
2009-03-26 00:52:18 +00:00
Anders Carlsson 75fdaa465f Improve handling of base initializers. We now parse initializers in out of line decls, such as:
class C {
    C() { }
    
    int a;
};

C::C() : a(10) { }

We also diagnose when initializers are used on declarations that aren't constructors:

t.cpp:1:10: error: only constructors take base initializers
void f() : a(10) { }
         ^

Doug and/or Sebastian: I'd appreciate a review, especially the nested-name-spec test results (from the looks of it we now match gcc in that test.)

llvm-svn: 67672
2009-03-25 02:58:17 +00:00
Ted Kremenek fd14fade2f Implement '#pragma unused'.
llvm-svn: 67569
2009-03-23 22:28:25 +00:00
Douglas Gregor 5253768ada Introduce a representation for types that we referred to via a
qualified name, e.g., 

  foo::x

so that we retain the nested-name-specifier as written in the source
code and can reproduce that qualified name when printing the types
back (e.g., in diagnostics). This is PR3493, which won't be complete
until finished the other tasks mentioned near the end of this commit.

The parser's representation of nested-name-specifiers, CXXScopeSpec,
is now a bit fatter, because it needs to contain the scopes that
precede each '::' and keep track of whether the global scoping
operator '::' was at the beginning. For example, we need to keep track
of the leading '::', 'foo', and 'bar' in
 
  ::foo::bar::x

The Action's CXXScopeTy * is no longer a DeclContext *. It's now the
opaque version of the new NestedNameSpecifier, which contains a single
component of a nested-name-specifier (either a DeclContext * or a Type
*, bitmangled). 

The new sugar type QualifiedNameType composes a sequence of
NestedNameSpecifiers with a representation of the type we're actually
referring to. At present, we only build QualifiedNameType nodes within
Sema::getTypeName. This will be extended to other type-constructing
actions (e.g., ActOnClassTemplateId).

Also on the way: QualifiedDeclRefExprs will also store a sequence of
NestedNameSpecifiers, so that we can print out the property
nested-name-specifier. I expect to also use this for handling
dependent names like Fibonacci<I - 1>::value.

llvm-svn: 67265
2009-03-19 00:18:19 +00:00
Anders Carlsson f24fcff65e Add parser support for static_assert.
llvm-svn: 66661
2009-03-11 16:27:10 +00:00
Chris Lattner f02db35b05 fix eof check
llvm-svn: 66149
2009-03-05 07:27:50 +00:00
Chris Lattner bcfe4f7b7b When the parser is live, print out the location and spelling of its current token.
For example:

Stack dump:
0.	Program arguments: clang t.cpp 
1.	t.cpp:4:8: current parser token: ';'
2.	t.cpp:3:1: parsing struct/union/class body 'x'
Abort

It is weird that the parser is always "underneath" any parse context 
actions, but the parser is created first.

llvm-svn: 66148
2009-03-05 07:24:28 +00:00
Chris Lattner 12f2ea5015 Simplify the interface to ParseFunctionStatementBody to not take
locations that are the current tok loc.  Note that inline C++ methods
have a big fixme that could cause a crash.

llvm-svn: 66113
2009-03-05 00:49:17 +00:00
Chris Lattner e0c511688e cleanup
llvm-svn: 65645
2009-02-27 18:35:46 +00:00
Douglas Gregor 96977da72c Clean up and document code modification hints.
llvm-svn: 65641
2009-02-27 17:53:17 +00:00
Chris Lattner 7094c15d7e change a diagnostic message from something pedantically correct but
useless to something more vague but hopefully more clear.
rdar://6624173

llvm-svn: 65639
2009-02-27 17:15:01 +00:00
Douglas Gregor 87f95b0a6a Introduce code modification hints into the diagnostics system. When we
know how to recover from an error, we can attach a hint to the
diagnostic that states how to modify the code, which can be one of:

  - Insert some new code (a text string) at a particular source
    location
  - Remove the code within a given range
  - Replace the code within a given range with some new code (a text
    string)

Right now, we use these hints to annotate diagnostic information. For
example, if one uses the '>>' in a template argument in C++98, as in
this code:

  template<int I> class B { };
  B<1000 >> 2> *b1;

we'll warn that the behavior will change in C++0x. The fix is to
insert parenthese, so we use code insertion annotations to illustrate
where the parentheses go:

test.cpp:10:10: warning: use of right-shift operator ('>>') in template
argument will require parentheses in C++0x
  B<1000 >> 2> *b1;
         ^
    (        )


Use of these annotations is partially implemented for HTML
diagnostics, but it's not (yet) producing valid HTML, which may be
related to PR2386, so it has been #if 0'd out.

In this future, we could consider hooking this mechanism up to the
rewriter to actually try to fix these problems during compilation (or,
after a compilation whose only errors have fixes). For now, however, I
suggest that we use these code modification hints whenever we can, so
that we get better diagnostics now and will have better coverage when
we find better ways to use this information.

This also fixes PR3410 by placing the complaint about missing tokens
just after the previous token (rather than at the location of the next
token).

llvm-svn: 65570
2009-02-26 21:00:50 +00:00
Douglas Gregor 7f74112756 Implement parsing of nested-name-specifiers that involve template-ids, e.g.,
std::vector<int>::allocator_type

When we parse a template-id that names a type, it will become either a
template-id annotation (which is a parsed representation of a
template-id that has not yet been through semantic analysis) or a
typename annotation (where semantic analysis has resolved the
template-id to an actual type), depending on the context. We only
produce a type in contexts where we know that we only need type
information, e.g., in a type specifier. Otherwise, we create a
template-id annotation that can later be "upgraded" by transforming it
into a typename annotation when the parser needs a type. This occurs,
for example, when we've parsed "std::vector<int>" above and then see
the '::' after it. However, it means that when writing something like
this:

  template<> class Outer::Inner<int> { ... };

We have two tokens to represent Outer::Inner<int>: one token for the
nested name specifier Outer::, and one template-id annotation token
for Inner<int>, which will be passed to semantic analysis to define
the class template specialization.

Most of the churn in the template tests in this patch come from an
improvement in our error recovery from ill-formed template-ids.

llvm-svn: 65467
2009-02-25 19:37:18 +00:00
Douglas Gregor 8bf4205c70 Start processing template-ids as types when the template-name refers
to a class template. For example, the template-id 'vector<int>' now
has a nice, sugary type in the type system. What we can do now:

  - Parse template-ids like 'vector<int>' (where 'vector' names a
    class template) and form proper types for them in the type system.
  - Parse icky template-ids like 'A<5>' and 'A<(5 > 0)>' properly,
    using (sadly) a bool in the parser to tell it whether '>' should
    be treated as an operator or not.

This is a baby-step, with major problems and limitations:
  - There are currently two ways that we handle template arguments
  (whether they are types or expressions). These will be merged, and,
  most likely, TemplateArg will disappear.
  - We don't have any notion of the declaration of class template
  specializations or of template instantiations, so all template-ids
  are fancy names for 'int' :)

llvm-svn: 64153
2009-02-09 18:46:07 +00:00
Sebastian Redl f6591ca6d9 Implement Declarator::getSourceRange().
llvm-svn: 64151
2009-02-09 18:23:29 +00:00
Sebastian Redl 726a0d9524 Put the invalid flag of OwningResult into the Action pointer.
This shrinks OwningResult by one pointer. Since it is no longer larger than OwningPtr, merge the two.
This leads to simpler client code and speeds up my benchmark by 2.7%.
For some reason, this exposes a previously hidden bug, causing a regression in SemaCXX/condition.cpp.

llvm-svn: 63867
2009-02-05 15:02:23 +00:00
Douglas Gregor ded2d7b021 Basic representation of C++ class templates, from Andrew Sutton.
llvm-svn: 63750
2009-02-04 19:02:06 +00:00
Douglas Gregor 8a6be5ec64 Diagnose ambiguities in getTypeName. Fixes http://llvm.org/bugs/show_bug.cgi?id=3475
llvm-svn: 63737
2009-02-04 17:00:24 +00:00
Chris Lattner 60f36223a9 move library-specific diagnostic headers into library private dirs. Reduce
redundant #includes.  Patch by Anders Johnsen!

llvm-svn: 63271
2009-01-29 05:15:15 +00:00
Steve Naroff 16c8e598ae Name change (isTypeName->getTypeName).
Since it doesn't return a bool, is shouldn't be prefixed with 'is'.

llvm-svn: 63226
2009-01-28 19:39:02 +00:00
Chris Lattner 7368d581c1 Split the single monolithic DiagnosticKinds.def file into one
.def file for each library.  This means that adding a diagnostic
to sema doesn't require all the other libraries to be rebuilt.

Patch by Anders Johnsen!

llvm-svn: 63111
2009-01-27 18:30:58 +00:00
Douglas Gregor 9aa8904a46 Handle any undeclared parameters in a K&R-style function with a
special action, inside function prototype scope. This avoids confusion
when we try to inject these parameters into the scope of the function
body before the function itself has been added to the surrounding
scope. Fixes <rdar://problem/6097326>.

llvm-svn: 62849
2009-01-23 16:23:13 +00:00