forked from OSchip/llvm-project
486 lines
18 KiB
C++
486 lines
18 KiB
C++
// RUN: %check_clang_tidy %s misc-redundant-expression %t -- -- -std=c++11
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typedef __INT64_TYPE__ I64;
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struct Point {
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int x;
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int y;
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int a[5];
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} P;
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extern Point P1;
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extern Point P2;
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extern int foo(int x);
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extern int bar(int x);
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extern int bat(int x, int y);
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int Test(int X, int Y) {
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if (X - X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent [misc-redundant-expression]
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if (X / X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X % X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X & X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X | X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X ^ X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X < X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X <= X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X > X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X >= X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X && X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X || X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X != (((X)))) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: both side of operator are equivalent
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if (X + 1 == X + 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: both side of operator are equivalent
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if (X + 1 != X + 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: both side of operator are equivalent
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if (X + 1 <= X + 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: both side of operator are equivalent
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if (X + 1 >= X + 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: both side of operator are equivalent
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if ((X != 1 || Y != 1) && (X != 1 || Y != 1)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:26: warning: both side of operator are equivalent
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if (P.a[X - P.x] != P.a[X - P.x]) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:20: warning: both side of operator are equivalent
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if ((int)X < (int)X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: both side of operator are equivalent
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if ( + "dummy" == + "dummy") return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: both side of operator are equivalent
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if (L"abc" == L"abc") return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: both side of operator are equivalent
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if (foo(0) - 2 < foo(0) - 2) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: both side of operator are equivalent
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if (foo(bar(0)) < (foo(bar((0))))) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:19: warning: both side of operator are equivalent
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if (P1.x < P2.x && P1.x < P2.x) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:19: warning: both side of operator are equivalent
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if (P2.a[P1.x + 2] < P2.x && P2.a[(P1.x) + (2)] < (P2.x)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:29: warning: both side of operator are equivalent
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return 0;
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}
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int Valid(int X, int Y) {
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if (X != Y) return 1;
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if (X == Y + 0) return 1;
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if (P.x == P.y) return 1;
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if (P.a[P.x] < P.a[P.y]) return 1;
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if (P.a[0] < P.a[1]) return 1;
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if (P.a[0] < P.a[0ULL]) return 1;
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if (0 < 0ULL) return 1;
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if ((int)0 < (int)0ULL) return 1;
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if (++X != ++X) return 1;
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if (P.a[X]++ != P.a[X]++) return 1;
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if (P.a[X++] != P.a[X++]) return 1;
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if ("abc" == "ABC") return 1;
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if (foo(bar(0)) < (foo(bat(0, 1)))) return 1;
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return 0;
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}
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int TestConditional(int x, int y) {
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int k = 0;
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k += (y < 0) ? x : x;
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// CHECK-MESSAGES: :[[@LINE-1]]:20: warning: 'true' and 'false' expression are equivalent
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k += (y < 0) ? x + 1 : x + 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:24: warning: 'true' and 'false' expression are equivalent
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return k;
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}
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struct MyStruct {
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int x;
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} Q;
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bool operator==(const MyStruct& lhs, const MyStruct& rhs) { return lhs.x == rhs.x; }
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bool TestOperator(const MyStruct& S) {
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if (S == Q) return false;
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return S == S;
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// CHECK-MESSAGES: :[[@LINE-1]]:12: warning: both side of overloaded operator are equivalent
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}
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#define LT(x, y) (void)((x) < (y))
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#define COND(x, y, z) ((x)?(y):(z))
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#define EQUALS(x, y) (x) == (y)
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int TestMacro(int X, int Y) {
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LT(0, 0);
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LT(1, 0);
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LT(X, X);
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LT(X+1, X + 1);
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COND(X < Y, X, X);
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EQUALS(Q, Q);
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}
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int TestFalsePositive(int* A, int X, float F) {
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// Produced by bison.
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X = A[(2) - (2)];
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X = A['a' - 'a'];
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// Testing NaN.
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if (F != F && F == F) return 1;
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return 0;
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}
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int TestBannedMacros() {
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#define EAGAIN 3
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#define NOT_EAGAIN 3
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if (EAGAIN == 0 | EAGAIN == 0) return 0;
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if (NOT_EAGAIN == 0 | NOT_EAGAIN == 0) return 0;
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// CHECK-MESSAGES: :[[@LINE-1]]:23: warning: both side of operator are equivalent
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}
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struct MyClass {
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static const int Value = 42;
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};
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template <typename T, typename U>
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void TemplateCheck() {
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static_assert(T::Value == U::Value, "should be identical");
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static_assert(T::Value == T::Value, "should be identical");
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// CHECK-MESSAGES: :[[@LINE-1]]:26: warning: both side of overloaded operator are equivalent
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}
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void TestTemplate() { TemplateCheck<MyClass, MyClass>(); }
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int TestArithmetic(int X, int Y) {
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if (X + 1 == X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always false
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if (X + 1 != X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X - 1 == X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always false
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if (X - 1 != X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X + 1LL == X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always false
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if (X + 1ULL == X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:16: warning: logical expression is always false
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if (X == X + 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: logical expression is always false
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if (X != X + 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: logical expression is always true
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if (X == X - 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: logical expression is always false
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if (X != X - 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: logical expression is always true
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if (X != X - 1U) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: logical expression is always true
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if (X != X - 1LL) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: logical expression is always true
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if ((X+X) != (X+X) - 1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X + 1 == X + 2) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always false
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if (X + 1 != X + 2) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X - 1 == X - 2) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always false
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if (X - 1 != X - 2) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X + 1 == X - -1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X + 1 != X - -1) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always false
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if (X + 1 == X - -2) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always false
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if (X + 1 != X - -2) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X + 1 == X - (~0)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X + 1 == X - (~0U)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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if (X + 1 == X - (~0ULL)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
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// Should not match.
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if (X + 0.5 == X) return 1;
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if (X + 1 == Y) return 1;
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if (X + 1 == Y + 1) return 1;
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if (X + 1 == Y + 2) return 1;
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return 0;
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}
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int TestBitwise(int X) {
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if ((X & 0xFF) == 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
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if ((X & 0xFF) != 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always true
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if ((X | 0xFF) == 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
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if ((X | 0xFF) != 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always true
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if ((X | 0xFFULL) != 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:21: warning: logical expression is always true
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if ((X | 0xFF) != 0xF00ULL) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always true
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if ((0xFF & X) == 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
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if ((0xFF & X) != 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always true
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if ((0xFF & X) == 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
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if ((0xFF & X) != 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always true
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if ((0xFFLL & X) == 0xF00) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:20: warning: logical expression is always false
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if ((0xFF & X) == 0xF00ULL) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
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return 0;
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}
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int TestRelational(int X, int Y) {
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if (X == 10 && X != 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always false
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if (X == 10 && (X != 10)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always false
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if (X == 10 && !(X == 10)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always false
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if (!(X != 10) && !(X == 10)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
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if (X == 10ULL && X != 10ULL) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
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if (!(X != 10U) && !(X == 10)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:19: warning: logical expression is always false
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if (!(X != 10LL) && !(X == 10)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:20: warning: logical expression is always false
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if (!(X != 10ULL) && !(X == 10)) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:21: warning: logical expression is always false
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if (X == 0 && X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: logical expression is always false
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if (X != 0 && !X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: logical expression is always false
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if (X && !X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: logical expression is always false
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if (X && !!X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: equivalent expression on both side of logical operator
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if (X != 0 && X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: equivalent expression on both side of logical operator
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if (X != 0 && !!X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: equivalent expression on both side of logical operator
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if (X == 0 && !X) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: equivalent expression on both side of logical operator
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if (X == 10 && X > 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always false
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if (X == 10 && X < 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always false
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if (X < 10 && X > 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: logical expression is always false
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if (X <= 10 && X > 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always false
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if (X < 10 && X >= 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: logical expression is always false
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if (X < 10 && X == 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: logical expression is always false
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if (X > 5 && X <= 5) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always false
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if (X > -5 && X <= -5) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: logical expression is always false
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if (X < 10 || X >= 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: logical expression is always true
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if (X <= 10 || X > 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always true
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if (X <= 10 || X >= 11) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:15: warning: logical expression is always true
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if (X < 7 && X < 6) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X < 7 && X < 7) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: both side of operator are equivalent
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if (X < 7 && X < 8) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: expression is redundant
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if (X < 7 && X <= 5) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X < 7 && X <= 6) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: equivalent expression on both side of logical operator
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if (X < 7 && X <= 7) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: expression is redundant
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if (X < 7 && X <= 8) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: expression is redundant
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if (X <= 7 && X < 6) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X <= 7 && X < 7) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X <= 7 && X < 8) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: equivalent expression on both side of logical operator
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if (X <= 7 && X <= 5) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X <= 7 && X <= 6) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X <= 7 && X <= 7) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:14: warning: both side of operator are equivalent
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if (X <= 7 && X <= 8) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:19: warning: expression is redundant
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if (X == 11 && X > 10) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:20: warning: expression is redundant
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if (X == 11 && X < 12) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:20: warning: expression is redundant
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if (X > 10 && X == 11) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X < 12 && X == 11) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X != 11 && X == 42) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X != 11 && X > 11) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X != 11 && X < 11) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X != 11 && X < 8) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X != 11 && X > 14) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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if (X < 7 || X < 6) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: expression is redundant
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if (X < 7 || X < 7) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: both side of operator are equivalent
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if (X < 7 || X < 8) return 1;
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// CHECK-MESSAGES: :[[@LINE-1]]:9: warning: expression is redundant
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// Should not match.
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if (X == 10 && Y == 10) return 1;
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if (X != 10 && X != 12) return 1;
|
|
if (X == 10 || X == 12) return 1;
|
|
if (X < 10 || X > 12) return 1;
|
|
if (X > 10 && X < 12) return 1;
|
|
if (X < 10 || X >= 12) return 1;
|
|
if (X > 10 && X <= 12) return 1;
|
|
if (X <= 10 || X > 12) return 1;
|
|
if (X >= 10 && X < 12) return 1;
|
|
if (X <= 10 || X >= 12) return 1;
|
|
if (X >= 10 && X <= 12) return 1;
|
|
if (X >= 10 && X <= 11) return 1;
|
|
if (X >= 10 && X < 11) return 1;
|
|
if (X > 10 && X <= 11) return 1;
|
|
if (X > 10 && X != 11) return 1;
|
|
if (X >= 10 && X <= 10) return 1;
|
|
if (X <= 10 && X >= 10) return 1;
|
|
if (!X && !Y) return 1;
|
|
if (!X && Y) return 1;
|
|
if (!X && Y == 0) return 1;
|
|
if (X == 10 && Y != 10) return 1;
|
|
if (X < 0 || X > 0) return 1;
|
|
|
|
return 0;
|
|
}
|
|
|
|
int TestValidExpression(int X) {
|
|
if (X - 1 == 1 - X) return 1;
|
|
if (2 * X == X) return 1;
|
|
if ((X << 1) == X) return 1;
|
|
|
|
return 0;
|
|
}
|
|
|
|
enum Color { Red, Yellow, Green };
|
|
int TestRelatiopnalWithEnum(enum Color C) {
|
|
if (C == Red && C == Yellow) return 1;
|
|
// CHECK-MESSAGES: :[[@LINE-1]]:16: warning: logical expression is always false
|
|
if (C == Red && C != Red) return 1;
|
|
// CHECK-MESSAGES: :[[@LINE-1]]:16: warning: logical expression is always false
|
|
|
|
// Should not match.
|
|
if (C == Red || C == Yellow) return 1;
|
|
if (C != Red && C != Yellow) return 1;
|
|
|
|
return 0;
|
|
}
|
|
|
|
template<class T>
|
|
int TestRelationalTemplated(int X) {
|
|
// This test causes a corner case with |isIntegerConstantExpr| where the type
|
|
// is dependant. There is an assert failing when evaluating
|
|
// sizeof(<incomplet-type>).
|
|
if (sizeof(T) == 4 || sizeof(T) == 8) return 1;
|
|
|
|
if (X + 0 == -X) return 1;
|
|
if (X + 0 < X) return 1;
|
|
|
|
return 0;
|
|
}
|
|
|
|
int TestWithSignedUnsigned(int X) {
|
|
if (X + 1 == X + 1ULL) return 1;
|
|
// CHECK-MESSAGES: :[[@LINE-1]]:13: warning: logical expression is always true
|
|
if ((X & 0xFFU) == 0xF00) return 1;
|
|
// CHECK-MESSAGES: :[[@LINE-1]]:19: warning: logical expression is always false
|
|
if ((X & 0xFF) == 0xF00U) return 1;
|
|
// CHECK-MESSAGES: :[[@LINE-1]]:18: warning: logical expression is always false
|
|
if ((X & 0xFFU) == 0xF00U) return 1;
|
|
// CHECK-MESSAGES: :[[@LINE-1]]:19: warning: logical expression is always false
|
|
|
|
return 0;
|
|
}
|
|
|
|
int TestWithLong(int X, I64 Y) {
|
|
if (X + 0ULL == -X) return 1;
|
|
if (Y + 0 == -Y) return 1;
|
|
if (Y <= 10 && X >= 10LL) return 1;
|
|
if (Y <= 10 && X >= 10ULL) return 1;
|
|
if (X <= 10 || X > 12LL) return 1;
|
|
if (X <= 10 || X > 12ULL) return 1;
|
|
if (Y <= 10 || Y > 12) return 1;
|
|
|
|
return 0;
|
|
}
|
|
|
|
int TestWithMinMaxInt(int X) {
|
|
if (X <= X + 0xFFFFFFFFU) return 1;
|
|
if (X <= X + 0x7FFFFFFF) return 1;
|
|
if (X <= X + 0x80000000) return 1;
|
|
if (X <= 0xFFFFFFFFU && X > 0) return 1;
|
|
if (X <= 0xFFFFFFFFU && X > 0U) return 1;
|
|
|
|
if (X + 0x80000000 == X - 0x80000000) return 1;
|
|
// CHECK-MESSAGES: :[[@LINE-1]]:22: warning: logical expression is always true
|
|
|
|
if (X > 0x7FFFFFFF || X < ((-0x7FFFFFFF)-1)) return 1;
|
|
if (X <= 0x7FFFFFFF && X >= ((-0x7FFFFFFF)-1)) return 1;
|
|
|
|
return 0;
|
|
}
|