...after a host of optimizations related to the use of LazyCompoundVals
(our implementation of aggregate binds).
Originally applied in r173951.
Reverted in r174069 because it was causing hangs.
Re-applied in r174212.
Reverted in r174265 because it was /still/ causing hangs.
If this needs to be reverted again it will be punted to far in the future.
llvm-svn: 175234
Previously, we were scanning the current store. Now, we properly scan the
store that the LazyCompoundVal came from, which may have very different
live symbols.
llvm-svn: 175232
Previously, whenever we had a LazyCompoundVal, we crawled through the
entire store snapshot looking for bindings within the LCV's region. Now, we
just ask for the subregion bindings of the lazy region and only visit those.
This is an optimization (so no test case), but it may allow us to clean up
more dead bindings than we were previously.
llvm-svn: 175230
This is going to be used in the next commit.
While I'm here, tighten up assumptions about symbolic offset
BindingKeys, and make offset calculation explicitly handle all
MemRegion kinds.
No functionality change.
llvm-svn: 175228
In C++, constants captured by lambdas (and blocks) are not actually stored
in the closure object, since they can be expanded at compile time. In this
case, they will have no binding when we go to look them up. Previously,
RegionStore thought they were uninitialized stack variables; now, it checks
to see if they are a constant we know how to evaluate, using the same logic
as r175026.
This particular code path is only for scalar variables. Constant arrays and
structs are still unfortunately unhandled; we'll need a stronger solution
for those.
This may have a small performance impact, but only for truly-undefined
local variables, captures in a non-inlined block, and non-constant globals.
Even then, in the non-constant case we're only doing a quick type check.
<rdar://problem/13105553>
llvm-svn: 175194
Before:
aaaaaaaaaaaaaaaaaaaaaaaa(aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa()
.aaaaaaaaaaaaaaaaa());
After:
aaaaaaaaaaaaaaaaaaaaaaaaa(
aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa().aaaaaaaaaaaaaaaaa());
Not sure which of the formattings above is better, but we should not pick
one by accident.
llvm-svn: 175165
This gives a clearer separation of the context, e.g. in GMOCK
statements.
Before:
EXPECT_CALL(SomeObject,
SomeFunction(Parameter)).WillRepeatedly(Return(SomeValue));
After:
EXPECT_CALL(SomeObject, SomeFunction(Parameter))
.WillRepeatedly(Return(SomeValue));
Minor format cleanups.
llvm-svn: 175162
So far, clang-format has always assumed the whitespace belonging to the
subsequent token. This has the negative side-effect that when
clang-format formats a line, it does not remove its trailing whitespace,
as it belongs to the next token.
Thus, this patch fixes most of llvm.org/PR15062.
We are not zapping a file's trailing whitespace so far, as this does not
belong to any token we see during formatting. We need to fix this in a
subsequent patch.
llvm-svn: 175152
The formatter can now format:
void aaaaaaaaaaaaaaaaaa(int level,
double *min_x,
double *max_x,
double *min_y,
double *max_y,
double *min_z,
double *max_z, ) {
}
Although this is invalid code, it frequently happens during development and
clang-format should be nicer :-).
llvm-svn: 175151
This fixes llvm.org/PR15179.
Before:
class ColorChooserMac : public content::ColorChooser,
public content::WebContentsObserver {
};
After:
class ColorChooserMac : public content::ColorChooser,
public content::WebContentsObserver {
};
llvm-svn: 175147
The code generation stuff is going to set attributes on the functions it
generates. To do that it needs the target options. Pass them through.
llvm-svn: 175141
I added hasCLanguageLinkage while fixing some language linkage bugs some
time ago so that I wouldn't have to check all users of isExternC. It turned
out to be a much longer detour than expected, but this patch finally
merges the two again. The isExternC function now implements just the
standard notion of having C language linkage.
llvm-svn: 175119
some cases where functions with no language linkage were being treated as having
C language linkage. In particular, don't warn in
extern "C" {
static NonPod foo();
}
Since getLanguageLinkage checks the language linkage, the linkage computation
cannot use the language linkage. Break the loop by checking just the context
in the linkage computation.
llvm-svn: 175117
instantiation in order to permit devirtualization later in codegen, skip over
pure functions since those can't be devirtualization targets.
llvm-svn: 175116
in the course of property synthesis deterministic (ordered
by their type size), instead of having hashtable order
(as it is currently). // rdar://13192366
llvm-svn: 175100
This has so far been disabled for Google style, but should be done
before breaking at nested name specifiers or in template parameters.
Before (in Google style):
template <typename T>
aaaaaaaa::aaaaa::aaaaaa<T, aaaaaaaaaaaaaaaaaaaaaaaaa> aaaaaaaaaaaaaaaaaaaaaaaa<
T>::aaaaaaa() {}
After:
template <typename T>
aaaaaaaa::aaaaa::aaaaaa<T, aaaaaaaaaaaaaaaaaaaaaaaaa>
aaaaaaaaaaaaaaaaaaaaaaaa<T>::aaaaaaa() {}
llvm-svn: 175074
- clear ownership: the SpecificBumpPtrAllocator owns all StateNodes
- this allows us to simplify the memoization data structure into a
std::set (FIXME: figure out whether we want to use a hash based
data structure).
- introduces StateNode as recursive data structure, instead of using
Edge and the Seen-map combined to drill through the graph
- using a count to stabilize the penalty instead of relying on the
container
- pulled out a method to forward-apply states in the end
This leads to a ~40% runtime decrease on Nico's benchmark.
Main FiXME is that the parameter lists of some function get too long.
I'd vote for either pulling the Queue etc into the Formatter proper,
or creating an inner class just for the search algorithm.
llvm-svn: 175051
Previously, we were handling only simple integer constants for globals and
the smattering of implicitly-valued expressions handled by Environment for
default arguments. Now, we can use any integer constant expression that
Clang can evaluate, in addition to everything we handled before.
PR15094 / <rdar://problem/12830437>
llvm-svn: 175026
Still the formatting can be improved, but at least we don't assert any
more. This happened when trying to format lib/Sema/SemaType.cpp.
llvm-svn: 175003
MSVC accepts this:
class A {
A::A();
};
Clang accepts regular member functions with extra qualification as an MS
extension, but not constructors. This changes the parser to defer rejecting
qualified constructors so that the same Sema logic can apply to constructors as
regular member functions. This also improves the error message when MS
extensions are disabled (in my opinion). Before it was:
/Users/jason/Desktop/test.cpp:2:8: error: expected member name or ';' after declaration specifiers
A::A();
~~~~ ^
1 error generated.
After:
/Users/jason/Desktop/test.cpp:2:6: error: extra qualification on member 'A'
A::A();
~~~^
1 error generated.
Patch by Jason Haslam.
llvm-svn: 174980
This redoes how '*' and '&' are classified as pointer / reference markers when
followed by ')', '>', or ','.
Previously, determineStarAmpUsage() marked a single '*' and '&' followed by
')', '>', or ',' as pointer or reference marker. Now, all '*'s and '&'s
preceding ')', '>', or ',' are marked as pointer / reference markers. Fixes
PR14884.
Since only the last '*' in 'int ***' was marked as pointer before (the rest
were unary operators, which don't reach spaceRequiredBetween()),
spaceRequiredBetween() now had to be thought about handing multiple '*'s in
sequence.
Before:
return sizeof(int * *);
Type **A = static_cast<Type * *>(P);
Now:
return sizeof(int**);
Type **A = static_cast<Type **>(P);
While here, also make all methods of AnnotatingParser except parseLine()
private.
Review URL: http://llvm-reviews.chandlerc.com/D384
llvm-svn: 174975
MarkMemberReferenced instead of marking functions referenced directly. An audit
of callers to MarkFunctionReferenced and DiagnoseUseOfDecl also caused a few
other changes:
* don't mark functions odr-used when considering them for an initialization
sequence. Do mark them referenced though.
* the function nominated by the cleanup attribute should be diagnosed.
* operator new/delete should be diagnosed when building a 'new' expression.
llvm-svn: 174951
the linkage of functions and variables while merging declarations from modules,
and we don't necessarily have enough of the rest of the AST loaded at that
point to allow us to compute linkage, so serialize it instead.
llvm-svn: 174943