It turns out that SourceManager::isInSystemHeader() crashes when an invalid
source location is passed into it. Invalid source locations are relatively
common: not only they come from body farms, but also, say, any function in C
that didn't come with a forward declaration would have an implicit
forward declaration with invalid source locations.
There's a more comfy API for us to use in the Static Analyzer:
CallEvent::isInSystemHeader(), so just use that.
Differential Revision: https://reviews.llvm.org/D59901
llvm-svn: 357329
It is now an inter-checker communication API, similar to the one that
connects MallocChecker/CStringChecker/InnerPointerChecker: simply a set of
setters and getters for a state trait.
Differential Revision: https://reviews.llvm.org/D59861
llvm-svn: 357326
The transfer function for the CFG element that represents a logical operation
computes the value of the operation and does nothing else. The element
appears after all the short circuit decisions were made, so they don't need
to be made again at this point.
Because our expression evaluation is imprecise, it is often hard to
discriminate between:
(1) we don't know the value of the RHS because we failed to evaluate it
and
(2) we don't know the value of the RHS because it didn't need to be evaluated.
This is hard because it depends on our knowledge about the value of the LHS
(eg., if LHS is true, then RHS in (LHS || RHS) doesn't need to be computed)
but LHS itself may have been evaluated imprecisely and we don't know whether
it is true or not. Additionally, the Analyzer wouldn't necessarily even remember
what the value of the LHS was because theoretically it's not really necessary
to know it for any future evaluations.
In order to work around these issues, the transfer function for logical
operations consists in looking at the ExplodedGraph we've constructed so far
in order to figure out from which CFG direction did we arrive here.
Such post-factum backtracking that doesn't involve looking up LHS and RHS values
is usually possible. However sometimes it fails because when we deduplicate
exploded nodes with the same program point and the same program state we may end
up in a situation when we reached the same program point from two or more
different directions.
By removing the assertion, we admit that the procedure indeed sometimes fails to
work. When it fails, we also admit that we don't know the value of the logical
operator.
Differential Revision: https://reviews.llvm.org/D59857
llvm-svn: 357325
Almost all path-sensitive checkers need to tell the user when something specific
to that checker happens along the execution path but does not constitute a bug
on its own. For instance, a call to operator delete in C++ has consequences
that are specific to a use-after-free bug. Deleting an object is not a bug
on its own, but when the Analyzer finds an execution path on which a deleted
object is used, it'll have to explain to the user when exactly during that path
did the deallocation take place.
Historically such custom notes were added by implementing "bug report visitors".
These visitors were post-processing bug reports by visiting every ExplodedNode
along the path and emitting path notes whenever they noticed that a change that
is relevant to a bug report occurs within the program state. For example,
it emits a "memory is deallocated" note when it notices that a pointer changes
its state from "allocated" to "deleted".
The "visitor" approach is powerful and efficient but hard to use because
such preprocessing implies that the developer first models the effects
of the event (say, changes the pointer's state from "allocated" to "deleted"
as part of operator delete()'s transfer function) and then forgets what happened
and later tries to reverse-engineer itself and figure out what did it do
by looking at the report.
The proposed approach tries to avoid discarding the information that was
available when the transfer function was evaluated. Instead, it allows the
developer to capture all the necessary information into a closure that
will be automatically invoked later in order to produce the actual note.
This should reduce boilerplate and avoid very painful logic duplication.
On the technical side, the closure is a lambda that's put into a special kind of
a program point tag, and a special bug report visitor visits all nodes in the
report and invokes all note-producing closures it finds along the path.
For now it is up to the lambda to make sure that the note is actually relevant
to the report. For instance, a memory deallocation note would be irrelevant when
we're reporting a division by zero bug or if we're reporting a use-after-free
of a different, unrelated chunk of memory. The lambda can figure these thing out
by looking at the bug report object that's passed into it.
A single checker is refactored to make use of the new functionality: MIGChecker.
Its program state is trivial, making it an easy testing ground for the first
version of the API.
Differential Revision: https://reviews.llvm.org/D58367
llvm-svn: 357323
Since rL335814, if the constraint manager cannot find a range set for `A - B`
(where `A` and `B` are symbols) it looks for a range for `B - A` and returns
it negated if it exists. However, if a range set for both `A - B` and `B - A`
is stored then it only returns the first one. If we both use `A - B` and
`B - A`, these expressions behave as two totally unrelated symbols. This way
we miss some useful deductions which may lead to false negatives or false
positives.
This tiny patch changes this behavior: if the symbolic expression the
constraint manager is looking for is a difference `A - B`, it tries to
retrieve the range for both `A - B` and `B - A` and if both exists it returns
the intersection of range `A - B` and the negated range of `B - A`. This way
every time a checker applies new constraints to the symbolic difference or to
its negated it always affects both the original difference and its negated.
Differential Revision: https://reviews.llvm.org/D55007
llvm-svn: 357167
r356634 didn't fix all the problems caused by r356222 - even though simple
constructors involving transparent init-list expressions are now evaluated
precisely, many more complicated constructors aren't, for other reasons.
The attached test case is an example of a constructor that will never be
evaluated precisely - simply because there isn't a constructor there (instead,
the program invokes run-time undefined behavior by returning without a return
statement that should have constructed the return value).
Fix another part of the problem for such situations: evaluate transparent
init-list expressions transparently, so that to avoid creating ill-formed
"transparent" nonloc::CompoundVals.
Differential Revision: https://reviews.llvm.org/D59622
llvm-svn: 356969
When searching for construction contexts, i.e. figuring out which statements
define the object that is constructed by each construct-expression, ignore
transparent init-list expressions because they don't add anything to the
context. This allows the Static Analyzer to model construction, destruction,
materialization, lifetime extension correctly in more cases. Also fixes
a crash caused by incorrectly evaluating initial values of variables
initialized with such expressions.
Differential Revision: https://reviews.llvm.org/D59573
llvm-svn: 356634
These diagnose overflowing calls to subset of fortifiable functions. Some
functions, like sprintf or strcpy aren't supported right not, but we should
probably support these in the future. We previously supported this kind of
functionality with -Wbuiltin-memcpy-chk-size, but that diagnostic doesn't work
with _FORTIFY implementations that use wrapper functions. Also unlike that
diagnostic, we emit these warnings regardless of whether _FORTIFY_SOURCE is
actually enabled, which is nice for programs that don't enable the runtime
checks.
Why not just use diagnose_if, like Bionic does? We can get better diagnostics in
the compiler (i.e. mention the sizes), and we have the potential to diagnose
sprintf and strcpy which is impossible with diagnose_if (at least, in languages
that don't support C++14 constexpr). This approach also saves standard libraries
from having to add diagnose_if.
rdar://48006655
Differential revision: https://reviews.llvm.org/D58797
llvm-svn: 356397
Summary:
If the constraint information is not changed between two program states the
analyzer has not learnt new information and made no report. But it is
possible to happen because we have no information at all. The new approach
evaluates the condition to determine if that is the case and let the user
know we just `Assuming...` some value.
Reviewers: NoQ, george.karpenkov
Reviewed By: NoQ
Subscribers: llvm-commits, xazax.hun, baloghadamsoftware, szepet, a.sidorin,
mikhail.ramalho, Szelethus, donat.nagy, dkrupp, gsd, gerazo
Tags: #clang, #llvm
Differential Revision: https://reviews.llvm.org/D57410
llvm-svn: 356323
Summary: If the constraint information is not changed between two program states the analyzer has not learnt new information and made no report. But it is possible to happen because we have no information at all. The new approach evaluates the condition to determine if that is the case and let the user know we just 'Assuming...' some value.
Reviewers: NoQ, george.karpenkov
Reviewed By: NoQ
Subscribers: xazax.hun, baloghadamsoftware, szepet, a.sidorin, mikhail.ramalho, Szelethus, donat.nagy, dkrupp, gsd, gerazo
Tags: #clang
Differential Revision: https://reviews.llvm.org/D57410
llvm-svn: 356319
Don't crash when a function has a name that starts with "CF" and ends with
"Retain" but takes 0 arguments. In particular, don't try to treat it as if
it returns its first argument.
These problems are inevitable because the checker is naming-convention-based,
but at least we shouldn't crash.
Differential Revision: https://reviews.llvm.org/D59123
llvm-svn: 356223
RegionStore now knows how to bind a nonloc::CompoundVal that represents the
value of an aggregate initializer when it has its initial segment of sub-values
correspond to base classes.
Additionally, fixes the crash from pr40022.
Differential Revision: https://reviews.llvm.org/D59054
llvm-svn: 356222
For a rather short code snippet, if debug.ReportStmts (added in this patch) was
enabled, a bug reporter visitor crashed:
struct h {
operator int();
};
int k() {
return h();
}
Ultimately, this originated from PathDiagnosticLocation::createMemberLoc, as it
didn't handle the case where it's MemberExpr typed parameter returned and
invalid SourceLocation for MemberExpr::getMemberLoc. The solution was to find
any related valid SourceLocaion, and Stmt::getBeginLoc happens to be just that.
Differential Revision: https://reviews.llvm.org/D58777
llvm-svn: 356161
Checking whether two regions are the same is a partially decidable problem:
either we know for sure that they are the same or we cannot decide. A typical
case for this are the symbolic regions based on conjured symbols. Two
different conjured symbols are either the same or they are different. Since
we cannot decide this and want to reduce false positives as much as possible
we exclude these regions whenever checking whether two containers are the
same at iterator mismatch check.
Differential Revision: https://reviews.llvm.org/D53754
llvm-svn: 356049
Buildbot breaks when LLVm is compiled with memory sanitizer.
WARNING: MemorySanitizer: use-of-uninitialized-value
#0 0xa3d16d8 in getMacroNameAndPrintExpansion(blahblah)
lib/StaticAnalyzer/Core/PlistDiagnostics.cpp:903:11
llvm-svn: 355911
When there is a functor-like macro which is passed as parameter to another
"function" macro then its parameters are not listed at the place of expansion:
#define foo(x) int bar() { return x; }
#define hello(fvar) fvar(0)
hello(foo)
int main() { 1 / bar(); }
Expansion of hello(foo) asserted Clang, because it expected an l_paren token in
the 3rd line after "foo", since it is a function-like token.
Patch by Tibor Brunner!
Differential Revision: https://reviews.llvm.org/D57893
llvm-svn: 355903
In the commited testfile, macro expansion (the one implemented for the plist
output) runs into an infinite recursion. The issue originates from the algorithm
being faulty, as in
#define value REC_MACRO_FUNC(value)
the "value" is being (or at least attempted) expanded from the same macro.
The solved this issue by gathering already visited macros in a set, which does
resolve the crash, but will result in an incorrect macro expansion, that would
preferably be fixed down the line.
Patch by Tibor Brunner!
Differential Revision: https://reviews.llvm.org/D57891
llvm-svn: 355705
Asserting on invalid input isn't very nice, hence the patch to emit an error
instead.
This is the first of many patches to overhaul the way we handle checker options.
Differential Revision: https://reviews.llvm.org/D57850
llvm-svn: 355704
Summary:
When comparing a symbolic region and a constant, the constant would be
widened or truncated to the width of a void pointer, meaning that the
constant could be incorrectly truncated when handling symbols for
non-default address spaces. In the attached test case this resulted in a
false positive since the constant was truncated to zero. To fix this,
widen/truncate the constant to the width of the symbol expression's
type.
This commit does not consider non-symbolic regions as I'm not sure how
to generalize getting the type there.
This fixes PR40814.
Reviewers: NoQ, zaks.anna, george.karpenkov
Reviewed By: NoQ
Subscribers: xazax.hun, baloghadamsoftware, szepet, a.sidorin, mikhail.ramalho, Szelethus, donat.nagy, dkrupp, jdoerfert, Charusso, cfe-commits
Tags: #clang
Differential Revision: https://reviews.llvm.org/D58665
llvm-svn: 355592
The gets function has no SrcArgs. Because the default value for isTainted was
false, it didn't mark its DstArgs as tainted.
Patch by Gábor Borsik!
Differential Revision: https://reviews.llvm.org/D58828
llvm-svn: 355396
With r354643, the checker is feature-rich and polished enough.
rdar://problem/35380337
Differential Revision: https://reviews.llvm.org/D58397
llvm-svn: 354644
Add more "consuming" functions. For now only vm_deallocate() was supported.
Add a non-zero value that isn't an error; this value is -305 ("MIG_NO_REPLY")
and it's fine to deallocate data when you are returning this error.
Make sure that the mig_server_routine annotation is inherited.
rdar://problem/35380337
Differential Revision: https://reviews.llvm.org/D58397
llvm-svn: 354643
When a MIG server routine argument is released in an automatic destructor,
the Static Analyzer thinks that this happens after the return statement, and so
the violation of the MIG convention doesn't happen.
Of course, it doesn't quite work that way, so this is a false negative.
Add a hack that makes the checker double-check at the end of function
that no argument was released when the routine fails with an error.
rdar://problem/35380337
Differential Revision: https://reviews.llvm.org/D58392
llvm-svn: 354642
Add a BugReporterVisitor for highlighting the events of deallocating a
parameter. All such events are relevant to the emitted report (as long as the
report is indeed emitted), so all of them will get highlighted.
Add a trackExpressionValue visitor for highlighting where does the error return
code come from.
Do not add a trackExpressionValue visitor for highlighting how the deallocated
argument(s) was(were) copied around. This still remains to be implemented.
rdar://problem/35380337
Differential Revision: https://reviews.llvm.org/D58368
llvm-svn: 354641
r354530 has added a new function/block/message attribute "mig_server_routine"
that attracts compiler's attention to functions that need to follow the MIG
server routine convention with respect to deallocating out-of-line data that
was passed to them as an argument.
Teach the checker to identify MIG routines by looking at this attribute,
rather than by making heuristic-based guesses.
rdar://problem/35380337
Differential Revision: https://reviews.llvm.org/58366
llvm-svn: 354638
This checker detects use-after-free bugs in (various forks of) the Mach kernel
that are caused by errors in MIG server routines - functions called remotely by
MIG clients. The MIG convention forces the server to only deallocate objects
it receives from the client when the routine is executed successfully.
Otherwise, if the server routine exits with an error, the client assumes that
it needs to deallocate the out-of-line data it passed to the server manually.
This means that deallocating such data within the MIG routine and then returning
a non-zero error code is always a dangerous use-after-free bug.
rdar://problem/35380337
Differential Revision: https://reviews.llvm.org/D57558
llvm-svn: 354635
Accidentally left this dependency out, resulting in an assert failure if
only valist.Uninitialized is enabled from the valist package.
llvm-svn: 354235
Summary:
This makes it consistent with `memcmp` and `__builtin_bcmp`.
Also see the discussion in https://reviews.llvm.org/D56593.
Reviewers: jyknight
Subscribers: kristina, cfe-commits
Tags: #clang
Differential Revision: https://reviews.llvm.org/D58120
llvm-svn: 354023
FindLastStoreBRVisitor tries to find the first node in the exploded graph where
the current value was assigned to a region. This node is called the "store
site". It is identified by a pair of Pred and Succ nodes where Succ already has
the binding for the value while Pred does not have it. However the visitor
mistakenly identifies a node pair as the store site where the value is a
`LazyCompoundVal` and `Pred` does not have a store yet but `Succ` has it. In
this case the `LazyCompoundVal` is different in the `Pred` node because it also
contains the store which is different in the two nodes. This error may lead to
crashes (a declaration is cast to a parameter declaration without check) or
misleading bug path notes.
In this patch we fix this problem by checking for unequal `LazyCompoundVals`: if
their region is equal, and their store is the same as the store of their nodes
we consider them as equal when looking for the "store site". This is an
approximation because we do not check for differences of the subvalues
(structure members or array elements) in the stores.
Differential Revision: https://reviews.llvm.org/D58067
llvm-svn: 353943
Basically the same issue as string init, except it didn't really have
any visible consequences before I removed the implicit lvalue-to-rvalue
conversion from CodeGen.
While I'm here, a couple minor drive-by cleanups: IgnoreParens never
returns a ConstantExpr, and there was a potential crash with string init
involving a ChooseExpr.
The analyzer test change maybe indicates we could simplify the analyzer
code a little with this fix? Apparently a hack was added to support
lvalues in initializers in r315750, but I'm not really familiar with the
relevant code.
Fixes regression reported in the kernel build at
https://bugs.llvm.org/show_bug.cgi?id=40430#c6 .
Differential Revision: https://reviews.llvm.org/D58069
llvm-svn: 353762
There are certain unsafe or deprecated (since C11) buffer handling
functions which should be avoided in safety critical code. They
could cause buffer overflows. A new checker,
'security.insecureAPI.DeprecatedOrUnsafeBufferHandling' warns for
every occurrence of such functions (unsafe or deprecated printf,
scanf family, and other buffer handling functions, which now have
a secure variant).
Patch by Dániel Kolozsvári!
Differential Revision: https://reviews.llvm.org/D35068
llvm-svn: 353698
oth strlcat and strlcpy cut off their safe bound for the argument value
at sizeof(destination). There's no need to subtract 1 in only one
of these cases.
Differential Revision: https://reviews.llvm.org/D57981
rdar://problem/47873212
llvm-svn: 353583
Memory region that correspond to a variable is identified by the variable's
declaration and, in case of local variables, the stack frame it belongs to.
The declaration needs to be canonical, otherwise we'd have two different
memory regions that correspond to the same variable.
Fix such bug for global variables with forward declarations and assert
that no other problems of this kind happen.
Differential Revision: https://reviews.llvm.org/D57619
llvm-svn: 353353
This reverts commit r341722.
The "postponed" mechanism turns out to be necessary in order to handle
situations when a symbolic region is only kept alive by implicit bindings
in the Store. Otherwise the region is never scanned by the Store's worklist
and the binding gets dropped despite being live, as demonstrated
by the newly added tests.
Differential Revision: https://reviews.llvm.org/D57554
llvm-svn: 353350
This patch is an implementation of the ideas discussed on the mailing list[1].
The idea is to somewhat heuristically guess whether the field that was confirmed
to be uninitialized is actually guarded with ifs, asserts, switch/cases and so
on. Since this is a syntactic check, it is very much prone to drastically
reduce the amount of reports the checker emits. The reports however that do not
get filtered out though have greater likelihood of them manifesting into actual
runtime errors.
[1] http://lists.llvm.org/pipermail/cfe-dev/2018-September/059255.html
Differential Revision: https://reviews.llvm.org/D51866
llvm-svn: 352959
Having an incorrect type for a cast causes the checker to incorrectly
dismiss the operation under ARC, leading to a false positive
use-after-release on the test.
rdar://47709885
Differential Revision: https://reviews.llvm.org/D57557
llvm-svn: 352824
Track them for ISL/OS objects by default, and for NS/CF under a flag.
rdar://47536377
Differential Revision: https://reviews.llvm.org/D57356
llvm-svn: 352534