Files
clang-p2996/clang/test/CodeGenCXX/conditional-gnu-ext.cpp
Aaron Ballman 0f1c1be196 [clang] Remove rdar links; NFC
We have a new policy in place making links to private resources
something we try to avoid in source and test files. Normally, we'd
organically switch to the new policy rather than make a sweeping change
across a project. However, Clang is in a somewhat special circumstance
currently: recently, I've had several new contributors run into rdar
links around test code which their patch was changing the behavior of.
This turns out to be a surprisingly bad experience, especially for
newer folks, for a handful of reasons: not understanding what the link
is and feeling intimidated by it, wondering whether their changes are
actually breaking something important to a downstream in some way,
having to hunt down strangers not involved with the patch to impose on
them for help, accidental pressure from asking for potentially private
IP to be made public, etc. Because folks run into these links entirely
by chance (through fixing bugs or working on new features), there's not
really a set of problematic links to focus on -- all of the links have
basically the same potential for causing these problems. As a result,
this is an omnibus patch to remove all such links.

This was not a mechanical change; it was done by manually searching for
rdar, radar, radr, and other variants to find all the various
problematic links. From there, I tried to retain or reword the
surrounding comments so that we would lose as little context as
possible. However, because most links were just a plain link with no
supporting context, the majority of the changes are simple removals.

Differential Review: https://reviews.llvm.org/D158071
2023-08-28 12:13:42 -04:00

153 lines
4.2 KiB
C++

// RUN: %clang_cc1 -triple x86_64-unknown-unknown -emit-llvm -o - %s | FileCheck %s
// pr7726
extern "C" int printf(...);
void test0() {
// CHECK: call i32 (...) @printf({{.*}}, ptr noundef inttoptr (i64 3735928559 to ptr))
printf("%p\n", (void *)0xdeadbeef ? : (void *)0xaaaaaa);
}
namespace radar8446940 {
extern "C" void abort();
int main () {
char x[1];
char *y = x ? : 0;
if (x != y)
abort();
}
}
namespace radar8453812 {
extern "C" void abort();
_Complex int getComplex(_Complex int val) {
static int count;
if (count++)
abort();
return val;
}
_Complex int cmplx() {
_Complex int cond;
_Complex int rhs;
return getComplex(1+2i) ? : rhs;
}
// lvalue test
void foo (int& lv) {
++lv;
}
int global = 1;
int &cond() {
static int count;
if (count++)
abort();
return global;
}
int main() {
cmplx();
int rhs = 10;
foo (cond()? : rhs);
return global-2;
}
}
namespace test3 {
struct A {
A();
A(const A&);
~A();
};
struct B {
B();
B(const B&);
~B();
operator bool();
operator A();
};
B test0(B &x) {
// CHECK-LABEL: define{{.*}} void @_ZN5test35test0ERNS_1BE(
// CHECK: [[RES:%.*]] = alloca ptr,
// CHECK: [[X:%.*]] = alloca ptr,
// CHECK: store ptr {{%.*}}, ptr [[RES]]
// CHECK: store ptr {{%.*}}, ptr [[X]]
// CHECK-NEXT: [[T0:%.*]] = load ptr, ptr [[X]]
// CHECK-NEXT: [[BOOL:%.*]] = call noundef zeroext i1 @_ZN5test31BcvbEv(ptr {{[^,]*}} [[T0]])
// CHECK-NEXT: br i1 [[BOOL]]
// CHECK: call void @_ZN5test31BC1ERKS0_(ptr {{[^,]*}} [[RESULT:%.*]], ptr noundef nonnull align {{[0-9]+}} dereferenceable({{[0-9]+}}) [[T0]])
// CHECK-NEXT: br label
// CHECK: call void @_ZN5test31BC1Ev(ptr {{[^,]*}} [[RESULT]])
// CHECK-NEXT: br label
// CHECK: ret void
return x ?: B();
}
B test1() {
// CHECK-LABEL: define{{.*}} void @_ZN5test35test1Ev(
// CHECK: [[TEMP:%.*]] = alloca [[B:%.*]],
// CHECK: call void @_ZN5test312test1_helperEv(ptr sret([[B]]) align 1 [[TEMP]])
// CHECK-NEXT: [[BOOL:%.*]] = call noundef zeroext i1 @_ZN5test31BcvbEv(ptr {{[^,]*}} [[TEMP]])
// CHECK-NEXT: br i1 [[BOOL]]
// CHECK: call void @_ZN5test31BC1ERKS0_(ptr {{[^,]*}} [[RESULT:%.*]], ptr noundef nonnull align {{[0-9]+}} dereferenceable({{[0-9]+}}) [[TEMP]])
// CHECK-NEXT: br label
// CHECK: call void @_ZN5test31BC1Ev(ptr {{[^,]*}} [[RESULT]])
// CHECK-NEXT: br label
// CHECK: call void @_ZN5test31BD1Ev(ptr {{[^,]*}} [[TEMP]])
// CHECK-NEXT: ret void
extern B test1_helper();
return test1_helper() ?: B();
}
A test2(B &x) {
// CHECK-LABEL: define{{.*}} void @_ZN5test35test2ERNS_1BE(
// CHECK: [[RES:%.*]] = alloca ptr,
// CHECK: [[X:%.*]] = alloca ptr,
// CHECK: store ptr {{%.*}}, ptr [[RES]]
// CHECK: store ptr {{%.*}}, ptr [[X]]
// CHECK-NEXT: [[T0:%.*]] = load ptr, ptr [[X]]
// CHECK-NEXT: [[BOOL:%.*]] = call noundef zeroext i1 @_ZN5test31BcvbEv(ptr {{[^,]*}} [[T0]])
// CHECK-NEXT: br i1 [[BOOL]]
// CHECK: call void @_ZN5test31BcvNS_1AEEv(ptr sret([[A:%.*]]) align 1 [[RESULT:%.*]], ptr {{[^,]*}} [[T0]])
// CHECK-NEXT: br label
// CHECK: call void @_ZN5test31AC1Ev(ptr {{[^,]*}} [[RESULT]])
// CHECK-NEXT: br label
// CHECK: ret void
return x ?: A();
}
A test3() {
// CHECK-LABEL: define{{.*}} void @_ZN5test35test3Ev(
// CHECK: [[TEMP:%.*]] = alloca [[B]],
// CHECK: call void @_ZN5test312test3_helperEv(ptr sret([[B]]) align 1 [[TEMP]])
// CHECK-NEXT: [[BOOL:%.*]] = call noundef zeroext i1 @_ZN5test31BcvbEv(ptr {{[^,]*}} [[TEMP]])
// CHECK-NEXT: br i1 [[BOOL]]
// CHECK: call void @_ZN5test31BcvNS_1AEEv(ptr sret([[A]]) align 1 [[RESULT:%.*]], ptr {{[^,]*}} [[TEMP]])
// CHECK-NEXT: br label
// CHECK: call void @_ZN5test31AC1Ev(ptr {{[^,]*}} [[RESULT]])
// CHECK-NEXT: br label
// CHECK: call void @_ZN5test31BD1Ev(ptr {{[^,]*}} [[TEMP]])
// CHECK-NEXT: ret void
extern B test3_helper();
return test3_helper() ?: A();
}
}
namespace test4 {
// Make sure this doesn't crash.
void f() {
const int a = 10, b = 20;
const int *c = &(a ?: b);
}
}