Commit Graph

527 Commits

Author SHA1 Message Date
Douglas Gregor 9d80212115 Push nested-name-specifier source location information into template
template arguments. I believe that this is the last place in the AST
where we were storing a source range for a nested-name-specifier
rather than a proper nested-name-specifier location structure. (Yay!)

There is still a lot of cleanup to do in the TreeTransform, which
doesn't take advantage of nested-name-specifiers with source-location
information everywhere it could.

llvm-svn: 126844
2011-03-02 17:09:35 +00:00
Douglas Gregor e7c2065379 Push nested-name-specifier source-location information into dependent
template specialization types. This also required some parser tweaks,
since we were losing track of the nested-name-specifier's source
location information in several places in the parser. Other notable
changes this required:

  - Sema::ActOnTagTemplateIdType now type-checks and forms the
    appropriate type nodes (+ source-location information) for an
    elaborated-type-specifier ending in a template-id. Previously, we
    used a combination of ActOnTemplateIdType and
    ActOnTagTemplateIdType that resulted in an ElaboratedType wrapped
    around a DependentTemplateSpecializationType, which duplicated the
    keyword ("class", "struct", etc.) and nested-name-specifier
    storage.

  - Sema::ActOnTemplateIdType now gets a nested-name-specifier, which
    it places into the returned type-source location information.

  - Sema::ActOnDependentTag now creates types with source-location
    information.

llvm-svn: 126808
2011-03-02 00:47:37 +00:00
Douglas Gregor a7a795bed1 Push nested-name-specifier source-location information into dependent
template specialization types. There are still a few rough edges to
clean up with some of the parser actions dropping
nested-name-specifiers too early.

llvm-svn: 126776
2011-03-01 20:11:18 +00:00
Douglas Gregor 844cb50266 Reinstate the introduction of source-location information for
nested-name-speciciers within elaborated type names, e.g.,
 
  enum clang::NestedNameSpecifier::SpecifierKind

Fixes in this iteration include:

  (1) Compute the type-source range properly for a dependent template
  specialization type that starts with "template template-id ::", as
  in a member access expression

    dep->template f<T>::f()

  This is a latent bug I triggered with this change (because now we're
  checking the computed source ranges for dependent template
  specialization types). But the real problem was...

  (2) Make sure to set the qualifier range on a dependent template
  specialization type appropriately. This will go away once we push
  nested-name-specifier locations into dependent template
  specialization types, but it was the source of the
  valgrind errors on the buildbots.
  

llvm-svn: 126765
2011-03-01 18:12:44 +00:00
Douglas Gregor b3a58b08e0 Revert r126748, my second attempt at nested-name-specifier source
location information for elaborated types. *sigh*

llvm-svn: 126753
2011-03-01 17:25:47 +00:00
Douglas Gregor 84a6a0a3ce When building a type for a typename specifier, check specifically for
a dependent template name rather than (indirectly and incorrectly)
trying to determine whether we can compute a context for the
nested-name-specifier. Fixes a GCC testsuite regression,
<rdar://problem/9068589>.

llvm-svn: 126749
2011-03-01 16:44:30 +00:00
Douglas Gregor bf5fe47b12 Reinstate r126737, extending the generation of type-source location
information for qualifier type names throughout the parser to address
several problems.

The commit message from r126737:

Push nested-name-specifier source location information into elaborated
name types, e.g., "enum clang::NestedNameSpecifier::SpecifierKind".

Aside from the normal changes, this also required some tweaks to the
parser. Essentially, when we're looking at a type name (via
getTypeName()) specifically for the purpose of creating an annotation
token, we pass down the flag that asks for full type-source location
information to be stored within the returned type. That way, we retain
source-location information involving nested-name-specifiers rather
than trying to reconstruct that information later, long after it's
been lost in the parser.

With this change, test/Index/recursive-cxx-member-calls.cpp is showing
much improved results again, since that code has lots of
nested-name-specifiers.

llvm-svn: 126748
2011-03-01 16:31:39 +00:00
Douglas Gregor 62a60c50f4 Revert r126737, the most recent nested-name-specifier location change, for buildbot breakage.
llvm-svn: 126746
2011-03-01 15:34:37 +00:00
Douglas Gregor 9720642c68 Push nested-name-specifier source location information into elaborated
name types, e.g., "enum clang::NestedNameSpecifier::SpecifierKind".

Aside from the normal changes, this also required some tweaks to the
parser. Essentially, when we're looking at a type name (via
getTypeName()) specifically for the purpose of creating an annotation
token, we pass down the flag that asks for full type-source location
information to be stored within the returned type. That way, we retain
source-location information involving nested-name-specifiers rather
than trying to reconstruct that information later, long after it's
been lost in the parser.

With this change, test/Index/recursive-cxx-member-calls.cpp is showing
much improved results again, since that code has lots of
nested-name-specifiers.

llvm-svn: 126737
2011-03-01 03:11:17 +00:00
Douglas Gregor 3d0da5f5dd Push nested-name-specifier source location information into
DependentNameTypeLoc. Teach the recursive AST visitor and libclang how to
walk DependentNameTypeLoc nodes.

Also, teach libclang about TypedefDecl source ranges, so that we get
those. The massive churn in test/Index/recursive-cxx-member-calls.cpp
is a good thing: we're annotating a lot more of this test correctly
now.

llvm-svn: 126729
2011-03-01 01:34:45 +00:00
Douglas Gregor 9cbc22ba2d Teach Sema::CheckTypenameType to use nested-name-specifiers with
source-location information. We don't actually preserve this
information in any of the resulting TypeLocs (yet), so it doesn't
matter.

llvm-svn: 126693
2011-02-28 22:42:13 +00:00
Douglas Gregor 0da1d43e16 Push nested-name-specifier source location information into
UnresolvedLookupExpr and UnresolvedMemberExpr.

Also, improve the computation that checks whether the base of a member
expression (either unresolved or dependent-scoped) is implicit. The
previous check didn't cover all of the cases we use in our
representation, which threw off source-location information for these
expressions (which, in turn, caused some breakage in libclang's token
annotation). 

llvm-svn: 126681
2011-02-28 20:01:57 +00:00
Douglas Gregor e16af53619 Push nested-name-specifier source location information into
CXXDependentScopeMemberExpr, and clean up instantiation of
nested-name-specifiers with dependent template specialization types in
the process.

llvm-svn: 126663
2011-02-28 18:50:33 +00:00
Douglas Gregor 5a064725d6 Eliminate the last remains of TemplateSpecializationTypes with
dependent template names. There is still a lot of redundant code in
TreeTransform to cope with TemplateSpecializationTypes, which I'll
remove in stages.

llvm-svn: 126656
2011-02-28 17:23:35 +00:00
Douglas Gregor b09518c551 Eliminate a silly little Parse/Sema dance when parsing typename
specifiers such as

  typename T::template apply<U>

Previously, we would turn T::template apply<U> into a
TemplateSpecializationType. Then, we'd reprocess that
TemplateSpecializationType and turn it into either a
TemplateSpecializationType wrapped in an ElaboratedType (when we could
resolve "apply" to a template declaration) or a
DependentTemplateSpecializationType. We now produce the same ASTs but
without generating the intermediate TemplateSpecializationType.

The end goal here is to avoid generating TemplateSpecializationTypes
with dependent template-names, ever. We're not there yet.

llvm-svn: 126589
2011-02-27 22:46:49 +00:00
Douglas Gregor 3a43fd645d Push nested-name-specifier source location information into
DependentScopeDeclRefExpr. Plus, give NestedNameSpecifierLoc == and !=
operators, since we're going to need 'em elsewhere.

llvm-svn: 126508
2011-02-25 20:49:16 +00:00
Douglas Gregor 1017641937 Switch a few CXXScopeSpec::MakeTrivial() calls over to appropriate
NestedNameSpecifierLoc handling.

llvm-svn: 126486
2011-02-25 16:07:42 +00:00
Douglas Gregor 144548072d Use NestedNameSpecifierLoc within out-of-line variables, function, and
tag definitions. Also, add support for template instantiation of
NestedNameSpecifierLocs.

llvm-svn: 126470
2011-02-25 02:25:35 +00:00
Douglas Gregor a9d87bc6ac Update UsingDecl, UnresolvedUsingTypenameDecl, and
UnresolvedUsingValueDecl to use NestedNameSpecifierLoc rather than the
extremely-lossy NestedNameSpecifier/SourceRange pair it used to use,
improving source-location information.

Various infrastructure updates to support NestedNameSpecifierLoc:
  - AST/PCH (de-)serialization
  - Recursive AST visitor
  - libclang traversal (including the first tests of this
    functionality)

llvm-svn: 126459
2011-02-25 00:36:19 +00:00
Douglas Gregor 869ad45f8f Retain complete source-location information for C++
nested-name-specifiers throughout the parser, and provide a new class
(NestedNameSpecifierLoc) that contains a nested-name-specifier along
with its type-source information.

Right now, this information is completely useless, because we don't
actually store the source-location information anywhere in the
AST. Call this Step 1/N.

llvm-svn: 126391
2011-02-24 17:54:50 +00:00
Douglas Gregor 7b26ff912f Teach NestedNameSpecifier to keep track of namespace aliases the same
way it keeps track of namespaces. Previously, we would map from the
namespace alias to its underlying namespace when building a
nested-name-specifier, losing source information in the process.

llvm-svn: 126358
2011-02-24 02:36:08 +00:00
Douglas Gregor 2ab3fee3f3 Tweak the CXXScopeSpec API a bit, so that we require the
nested-name-specifier and source range to be set at the same time.

llvm-svn: 126347
2011-02-24 00:49:34 +00:00
Richard Smith 30482bc786 Implement the C++0x deduced 'auto' feature.
This fixes PR 8738, 9060 and 9132.

llvm-svn: 126069
2011-02-20 03:19:35 +00:00
Douglas Gregor b491ed36b4 Handle the resolution of a reference to a function template (which
includes explicitly-specified template arguments) to a function
template specialization in cases where no deduction is performed or
deduction fails. Patch by Faisal Vali, fixes PR7505!

llvm-svn: 126048
2011-02-19 21:32:49 +00:00
Douglas Gregor 9543c40df1 When we're creating an expression for an integral template argument of
enumeration type, we were generating an integer literal implicitly
casted to the appropriate enumeration type. However, later checks on
that expression would strip the implicit cast.

This commit tweaks the lame hack, by creating an explicit cast instead
of an implicit cast. The right answer is to introduce a 
SubstNonTypeTemplateParmExpr expression that acts like the substituted
result. I'll investigate that soon.

llvm-svn: 125818
2011-02-18 02:12:44 +00:00
Douglas Gregor 4d5c297607 Tweak my fix for PR8748, and update the incorrect PR number in the test case.
llvm-svn: 124863
2011-02-04 12:22:53 +00:00
Douglas Gregor a99fb4c77d Tighten up the semantics of default template arguments, per C++0x
[temp.param]p9 and C++ DR226. Fixes PR8747.

llvm-svn: 124856
2011-02-04 04:20:44 +00:00
Douglas Gregor 8b481d8ac2 When a function template's template parameter has a default argument,
it's okay for the following template parameters to not have default
arguments (since those template parameters can still be
deduced). Also, downgrade the error about default template arguments
in function templates to an extension warning, since this is a
harmless C++0x extension.

llvm-svn: 124855
2011-02-04 03:57:22 +00:00
NAKAMURA Takumi f9cbcc4cc2 Fix whitespace.
llvm-svn: 124364
2011-01-27 07:10:08 +00:00
NAKAMURA Takumi 7c2888689d 7bit-ize.
llvm-svn: 124363
2011-01-27 07:09:49 +00:00
Douglas Gregor 0693defea9 When we run into a template parameter that should have a default
argument but doesn't (because previous template parameters had default
arguments), clear out all of the default arguments so that we maintain
the invariant that a template parameter has a default argument only if
subsequence template parameters also have default arguments.
Fixes a crash-on-invalid <rdar://problem/8913649>.

llvm-svn: 124345
2011-01-27 01:40:17 +00:00
Douglas Gregor 582813596a Fix a horrible bug in our handling of C-style casting, where a C-style
derived-to-base cast that also casts away constness (one of the cases
for static_cast followed by const_cast) would be treated as a bit-cast
rather than a derived-to-base class, causing miscompiles and
heartburn.

Fixes <rdar://problem/8913298>.

llvm-svn: 124340
2011-01-27 00:58:17 +00:00
Douglas Gregor 2d525f08c2 Teach TemplateSpecializationTypeLoc::initializeArgLocs() to actually
generate meaningful [*] template argument location information.

[*] Well, as meaningful as possible, given that this entire code path
is a hack for when we've lost type-source information.

llvm-svn: 124211
2011-01-25 19:13:18 +00:00
Douglas Gregor f143cd5051 Re-instate r123977/r123978, my updates of the reference-binding
implementation used by overload resolution to support rvalue
references. The original commits caused PR9026 and some
hard-to-reproduce self-host breakage.

The only (crucial!) difference between this commit and the previous
commits is that we now properly check the SuppressUserConversions flag
before attempting to perform a second user-defined conversion in
reference binding, breaking the infinite recursion chain of
user-defined conversions.

Rvalue references should be working a bit better now.

llvm-svn: 124121
2011-01-24 16:14:37 +00:00
Rafael Espindola be468d9a2b revert r123977 and r123978 to fix PR9026.
llvm-svn: 124033
2011-01-22 15:32:35 +00:00
Douglas Gregor 95273c3a22 Update the reference-binding implementation used for overload
resolution to match the latest C++0x working paper's semantics. The
implementation now matching up with the reference-binding
implementation used for initialization.

llvm-svn: 123977
2011-01-21 16:36:05 +00:00
Douglas Gregor 0231d8dac7 Implement support for non-type template parameter packs whose type is
a pack expansion, e.g., the parameter pack Values in:

  template<typename ...Types>
  struct Outer {
    template<Types ...Values>
    struct Inner;
  };

This new implementation approach introduces the notion of an
"expanded" non-type template parameter pack, for which we have already
expanded the types of the parameter pack (to, say, "int*, float*",
for Outer<int*, float*>) but have not yet expanded the values. Aside
from creating these expanded non-type template parameter packs, this
patch updates template argument checking and non-type template
parameter pack instantiation to make use of the appropriate types in
the parameter pack.

llvm-svn: 123845
2011-01-19 20:10:05 +00:00
John McCall 424cec97bd Change QualType::getTypePtr() to return a const pointer, then change a
thousand other things which were (generally inadvertantly) relying on that.

llvm-svn: 123814
2011-01-19 06:33:43 +00:00
Jeffrey Yasskin 8dfa5f1776 Fix warnings found by gcc-4.6, from -Wunused-but-set-variable and
-Wint-to-pointer-cast.

llvm-svn: 123719
2011-01-18 02:00:16 +00:00
Douglas Gregor e1d60df0fc Teach template template argument pack expansions to keep track of the
number of expansions, when we know it, and propagate that information
through Sema.

llvm-svn: 123493
2011-01-14 23:41:42 +00:00
Ted Kremenek bea8b40a86 The variable 'ReusedDecl' is written but never read.
Remove this variable (found by clang static analyzer).

llvm-svn: 123484
2011-01-14 22:31:38 +00:00
Ted Kremenek 7f1f3f6e32 The variable 'isTemplateSpecialization' is no longer
used; nuke all assignments and its declaration.

llvm-svn: 123483
2011-01-14 22:31:36 +00:00
Douglas Gregor ada4b79947 Start implementing support for substitution into pack expansions that
involve template parameter packs at multiple template levels that
occur within the signatures members of class templates (and partial
specializations thereof). This is a work-in-progress that is deficient
in several ways, notably:
  - It only works for template type parameter packs, but we need to
  also support non-type template parameter packs and template template
  parameter packs.
  - It doesn't keep track of the lengths of the substituted argument
  packs in the expansion, so it can't properly diagnose length
  mismatches.

However, this is a concrete step in the right direction.

llvm-svn: 123425
2011-01-14 02:55:32 +00:00
Douglas Gregor 018778af3d Only apply the parameter pack matching of C++0x [temp.arg.template]p3
when we're actually matching a template template argument to a
template template parameter. Otherwise, use strict matching.

Fixes <rdar://problem/8859985> clang++: variadics and out-of-line definitions.

llvm-svn: 123385
2011-01-13 18:47:47 +00:00
Douglas Gregor fd4344b5a6 Implement C++0x [temp.arg.template]p3, which allows slightly fuzzy
matching of variadic template template parameters to template
arguments. This paragraph was the subject of ISO C++ committee
document N2555: Extending Variadic Template Template Parameters.

llvm-svn: 123348
2011-01-13 00:08:50 +00:00
Douglas Gregor 641040afba Refactor and simplify Sema::TemplateParameterListsAreEqual. We had a
bunch of duplicated checks for parameter pack/non-pack mismatches.

llvm-svn: 123343
2011-01-12 23:45:44 +00:00
Douglas Gregor 74c6d19c1f Add TemplateArgument::CreatePackCopy() to create a new parameter pack
in ASTContext-allocated memory, copying the provided template
arguments. Use this new routine where we can. No functionality change.

llvm-svn: 123289
2011-01-11 23:09:57 +00:00
Douglas Gregor b837ea4eee Implement C++ [temp.func.order]p5 more directly, by passing down the
number of explicit call arguments. This actually fixes an erroneous
test for [temp.deduct.partial]p11, where we were considering
parameters corresponding to arguments beyond those that were
explicitly provided.

llvm-svn: 123244
2011-01-11 17:34:58 +00:00
Douglas Gregor a8bac7f514 Work-in-progress implementation of C++0x [temp.arg.explicit]p9, which
allows an argument pack determines via explicit specification of
function template arguments to be extended by further, deduced
arguments. For example:

template<class ... Types> void f(Types ... values);
void g() { 
  f<int*, float*>(0, 0, 0);   // Types is deduced to the sequence int*, float*, int
}

There are a number of FIXMEs in here that indicate places where we
need to implement + test retained expansions, plus a number of other
places in deduction where we need to correctly cope with the
explicitly-specified arguments when deducing an argument
pack. Furthermore, it appears that the RecursiveASTVisitor needs to be
auditied; it's missing some traversals (especially w.r.t. template
arguments) that cause it not to find unexpanded parameter packs when
it should.

The good news, however, is that the tr1::tuple implementation now
works fully, and the tr1::bind example (both from N2080) is actually
working now. 

llvm-svn: 123163
2011-01-10 07:32:04 +00:00
Douglas Gregor e4ff4b56fe Replace the representation of template template argument pack
expansions with something that is easier to use correctly: a new
template argment kind, rather than a bit on an existing kind. Update
all of the switch statements that deal with template arguments, fixing
a few latent bugs in the process. I"m happy with this representation,
now.

And, oh look! Template instantiation and deduction work for template
template argument pack expansions.

llvm-svn: 122896
2011-01-05 18:58:31 +00:00