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This was necessary to simplify some other changes I'm making (wrt ObjC type cleanups).
The idea is to separate the constraint checks for block pointers, ObjC pointers, and C pointers (the previous code combined them into one clause).
Note: This routine will be further simplified when I integrate the ObjC type cleanups (forthcoming).
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are fewer template arguments than there are template parameters for
that function.
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substitute those template arguments into the function parameter types
prior to template argument deduction. There's still a bit of work to
do to make this work properly when only some of the template arguments
are specified.
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list.
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templates, such as make<int&>. These template-ids are only barely
functional for function calls; much more to come.
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fields in the ctor-initializer list.
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in ctor-initializer list.
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instantiation stack so that we provide a full instantiation
backtrace. Previously, we performed all of the instantiations implied
by the recursion, but each looked like a "top-level" instantiation.
The included test case tests the previous fix for the instantiation of
DeclRefExprs. Note that the "instantiated from" diagnostics still
don't tell us which template arguments we're instantiating with.
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"semantic analysis" part. Use the "semantic analysis" part when
performing template instantiation on a DeclRefExpr, rather than an ad
hoc list of rules to construct DeclRefExprs from the instantiation.
A test case for this change will come in with a large commit, which
illustrates what I was actually trying to work on.
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David Majnemer!
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Remove ASTContext parameter from DeclContext's methods. This change cascaded down to other Decl's methods and changes to call sites started "escalating".
Timings using pre-tokenized "cocoa.h" showed only a ~1% increase in time run between and after this commit.
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subclasses.
Timings showed no significant difference before and after the commit.
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The implementations of these methods can Use Decl::getASTContext() to get the ASTContext.
This commit touches a lot of files since call sites for these methods are everywhere.
I used pre-tokenized "carbon.h" and "cocoa.h" headers to do some timings, and there was no real time difference between before the commit and after it.
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list.
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overloaded function decl.
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in the ctor-initializer list. More to come.
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redundant, implicit instantiations of function templates and provide a
place where we can hang function template specializations.
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by pointer.
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Convert clients to use ASTContext::getObjCObjectPointerType().
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Fixes PR4470.
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The issue this was working around is no longer present in TOT clang.
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Handle rules for ExtVector + ExtVector and ExtVector + Scalar operations.
Fix problem Eli noticed where we were allowing pointer types to be splatted to
vector elements.
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parameter has a dependent type.
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deduction using a base class of the argument type. No actual
functionality change; this is just a hook.
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deduction from pointer and pointer-to-member types to work even in the
presence of a qualification conversion (C++ [temp.deduct.type]p3
bullet 2).
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of template instantiation, we were dropping cv-qualifiers on the
instantiated type in a few places. This change reshuffles the
type-instantiation code a little bit so that there's a single place
where we add qualifiers to the instantiated type, so that we won't end
up with this same bug in the future.
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non-dependent parameter types. Instead, class template partial
specializations perform a final check of all of the instantiated
arguments. This model is cleaner, and works better for function
templates where the "final check" occurs during overload resolution.
Also, cope with cv-qualifiers when the parameter type was originally a
reference type, so that the deduced argument can be more qualified
than the transformed argument.
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deducing template arguments from a function call. Plus, add a bunch of
tests.
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- Fariborz
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ObjCCompatibleAliasDecl.
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these are usually because the parser was thoroughly confused. In addition
to typing the value being declared as an int and hoping for the best, we
mark the value as invalid so we don't get chains of errors when it is
used downstream. In C, implicit int actually is valid, so typing the thing
as int is good and marking it invalid is bad. :)
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