// RUN: %clang_cc1 %s -fsyntax-only -ffixed-point -verify=expected,both -fexperimental-new-constant-interpreter
// RUN: %clang_cc1 %s -fsyntax-only -ffixed-point -verify=ref,both
static_assert((bool)1.0k);
static_assert(!((bool)0.0k));
static_assert((bool)0.0k); // both-error {{static assertion failed}}
static_assert(1.0k == 1.0k);
static_assert(1.0k == 1);
static_assert(1.0k != 1.0k); // both-error {{failed due to requirement '1.0k != 1.0k'}}
static_assert(1.0k != 1); // both-error {{failed due to requirement '1.0k != 1'}}
static_assert(-12.0k == -(-(-12.0k)));
constexpr _Accum acc = (0.5r, 6.9k);
/// Zero-init.
constexpr _Accum A{};
static_assert(A == 0.0k);
static_assert(A == 0);
namespace IntToFixedPointCast {
constexpr _Accum B = 13;
static_assert(B == 13.0k);
static_assert(B == 13);
constexpr _Fract sf = -1;
static_assert(sf == -1.0k);
static_assert(sf == -1);
}
namespace FixedPointToIntCasts {
constexpr _Accum A = -13.0k;
constexpr int I = A;
static_assert(I == -13);
}
namespace FloatToFixedPointCast {
constexpr _Fract sf = 1.0; // both-error {{must be initialized by a constant expression}} \
// both-note {{outside the range of representable values of type 'const _Fract'}}
constexpr _Fract sf2 = 0.5;
static_assert(sf2 == 0.5);
constexpr float sf2f = sf2;
static_assert(sf2f == 0.5);
}
namespace BinOps {
constexpr _Accum A = 13;
static_assert(A + 1 == 14.0k);
static_assert(1 + A == 14.0k);
static_assert((A + A) == 26);
static_assert(A + 100000 == 14.0k); // both-error {{is not an integral constant expression}} \
// both-note {{is outside the range of representable values}}
static_assert((A - A) == 0);
constexpr short _Accum mul_ovf1 = 255.0hk * 4.5hk; // both-error {{must be initialized by a constant expression}} \
// both-note {{value 123.5 is outside the range of representable values of type 'short _Accum'}}
constexpr short _Accum div_ovf1 = 255.0hk / 0.5hk; // both-error {{must be initialized by a constant expression}} \
// both-note {{value -2.0 is outside the range of representable values of type 'short _Accum'}}
}
namespace FixedPointCasts {
constexpr _Fract B = 0.3;
constexpr _Accum A = B;
constexpr _Fract C = A;
}
namespace Cmp {
constexpr _Accum A = 13.0k;
constexpr _Accum B = 14.0k;
static_assert(B > A);
static_assert(B >= A);
static_assert(A < B);
static_assert(A <= B);
}