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# 5b05454f 19-Feb-2011 Douglas Gregor <[email protected]>

Don't produce "comparison is always (true|false)" warnings when the
comparison itself is a constant expression. Fixes PR7536.

llvm-svn: 126057


# 15a9edc7 07-Oct-2010 Argyrios Kyrtzidis <[email protected]>

Fix an infinite loop, caused by unintended syntax bug (the 'break;' after 'default:' was intended to break out of the while loop).
Fixes rdar://8518859&8520617.

llvm-svn: 115985


Revision tags: llvmorg-2.8.0, llvmorg-2.8.0-rc3, llvmorg-2.8.0-rc2, llvmorg-2.8.0-rc1, llvmorg-2.8.0-rc0, llvmorg-2.7.0
# d681c395 16-Dec-2009 John McCall <[email protected]>

Introduce a centralized routine in Sema for diagnosing failed lookups (when
used as expressions). In dependent contexts, try to recover by doing a lookup
in previously-dependent base classes. We ge

Introduce a centralized routine in Sema for diagnosing failed lookups (when
used as expressions). In dependent contexts, try to recover by doing a lookup
in previously-dependent base classes. We get better diagnostics out, but
unfortunately the recovery fails: we need to turn it into a method call
expression, not a bare call expression. Thus this is still a WIP.

llvm-svn: 91525

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# 8fbe78f6 15-Dec-2009 Daniel Dunbar <[email protected]>

Update tests to use %clang_cc1 instead of 'clang-cc' or 'clang -cc1'.
- This is designed to make it obvious that %clang_cc1 is a "test variable"
which is substituted. It is '%clang_cc1' instead o

Update tests to use %clang_cc1 instead of 'clang-cc' or 'clang -cc1'.
- This is designed to make it obvious that %clang_cc1 is a "test variable"
which is substituted. It is '%clang_cc1' instead of '%clang -cc1' because it
can be useful to redefine what gets run as 'clang -cc1' (for example, to set
a default target).

llvm-svn: 91446

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Revision tags: llvmorg-2.6.0
# a45cf5b6 24-Mar-2009 Daniel Dunbar <[email protected]>

Rename clang to clang-cc.

Tests and drivers updated, still need to shuffle dirs.

llvm-svn: 67602


Revision tags: llvmorg-2.5.0
# b8a9a41d 04-Feb-2009 Douglas Gregor <[email protected]>

Fix our semantic analysis of

unqualified-id '('

in C++. The unqualified-id might not refer to any declaration in our
current scope, but declarations by that name might be found via
argument-depen

Fix our semantic analysis of

unqualified-id '('

in C++. The unqualified-id might not refer to any declaration in our
current scope, but declarations by that name might be found via
argument-dependent lookup. We now do so properly.

As part of this change, CXXDependentNameExpr, which was previously
designed to express the unqualified-id in the above constructor within
templates, has become UnresolvedFunctionNameExpr, which does
effectively the same thing but will work for both templates and
non-templates.

Additionally, we cope with all unqualified-ids, since ADL also applies
in cases like

operator+(x, y)

llvm-svn: 63733

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# e254f90d 04-Feb-2009 Douglas Gregor <[email protected]>

Initial implementation of argument dependent lookup (a.k.a. ADL,
a.k.a. Koenig lookup) in C++. Most of the pieces are in place, but for
two:

- In an unqualified call g(x), even if the name does no

Initial implementation of argument dependent lookup (a.k.a. ADL,
a.k.a. Koenig lookup) in C++. Most of the pieces are in place, but for
two:

- In an unqualified call g(x), even if the name does not refer to
anything in the current scope, we can still find functions named
"g" based on ADL. We don't yet have this ability.
- ADL will need updating for friend functions and templates.

llvm-svn: 63692

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# 19b8c4ff 17-Dec-2008 Douglas Gregor <[email protected]>

Delay semantic analysis of the C++ names casts when the subexpression is type-dependent or the destination type is dependent.

llvm-svn: 61165


# b0846b0f 06-Dec-2008 Douglas Gregor <[email protected]>

Add support for calls to dependent names within templates, e.g.,

template<typename T> void f(T x) {
g(x); // g is a dependent name, so don't even bother to look it up
g(); // error: g is n

Add support for calls to dependent names within templates, e.g.,

template<typename T> void f(T x) {
g(x); // g is a dependent name, so don't even bother to look it up
g(); // error: g is not a dependent name
}

Note that when we see "g(", we build a CXXDependentNameExpr. However,
if none of the call arguments are type-dependent, we will force the
resolution of the name "g" and replace the CXXDependentNameExpr with
its result.

GCC actually produces a nice error message when you make this
mistake, and even offers to compile your code with -fpermissive. I'll
do the former next, but I don't plan to do the latter.

llvm-svn: 60618

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# 4619e439 05-Dec-2008 Douglas Gregor <[email protected]>

Introduce basic support for dependent types, type-dependent
expressions, and value-dependent expressions. This permits us to parse
some template definitions.

This is not a complete solution; we're m

Introduce basic support for dependent types, type-dependent
expressions, and value-dependent expressions. This permits us to parse
some template definitions.

This is not a complete solution; we're missing type- and
value-dependent computations for most of the expression types, and
we're missing checks for dependent types and type-dependent
expressions throughout Sema.

llvm-svn: 60615

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