zig/std/special/compiler_rt/fixsfti_test.zig
Wink Saville 634d11ab28 Add add compiler_rt routines for float to signed integer conversion
And add std.math.f128_* constants.

The routines are:

  __fixdfdi, __fixdfsi, __fixdfti,
  __fixsfdi, __fixsfsi, __fixsfti,
  __fixtfdi, __fixtfsi, __fixtfti.

These all call fixint which is a generic zig function that does the
conversion:

  pub fn fixint(comptime fp_t: type, comptime fixint_t: type, a: fp_t) fixint_t

There are also a set tests:

  __fixdfdi_test, __fixdfsi_test, __fixdfti_test,
  __fixsfdi_test, __fixsfsi_test, __fixsfti_test,
  __fixtfdi_test, __fixtfsi_test, __fixtfti_test.
2018-12-12 00:21:42 -05:00

85 lines
3.4 KiB
Zig

const __fixsfti = @import("fixsfti.zig").__fixsfti;
const std = @import("std");
const math = std.math;
const assert = std.debug.assert;
const warn = std.debug.warn;
fn test__fixsfti(a: f32, expected: i128) void {
const x = __fixsfti(a);
//warn("a={}:{x} x={}:{x} expected={}:{x}:u128({x})\n", a, @bitCast(u32, a), x, x, expected, expected, @bitCast(u128, expected));
assert(x == expected);
}
test "fixsfti" {
//warn("\n");
test__fixsfti(-math.f32_max, math.minInt(i128));
test__fixsfti(-0x1.FFFFFFFFFFFFFp+1023, math.minInt(i128));
test__fixsfti(-0x1.FFFFFFFFFFFFFp+1023, -0x80000000000000000000000000000000);
test__fixsfti(-0x1.0000000000000p+127, -0x80000000000000000000000000000000);
test__fixsfti(-0x1.FFFFFFFFFFFFFp+126, -0x80000000000000000000000000000000);
test__fixsfti(-0x1.FFFFFFFFFFFFEp+126, -0x80000000000000000000000000000000);
test__fixsfti(-0x1.FFFFFF0000000p+126, -0x80000000000000000000000000000000);
test__fixsfti(-0x1.FFFFFE0000000p+126, -0x7FFFFF80000000000000000000000000);
test__fixsfti(-0x1.FFFFFC0000000p+126, -0x7FFFFF00000000000000000000000000);
test__fixsfti(-0x1.0000000000001p+63, -0x8000000000000000);
test__fixsfti(-0x1.0000000000000p+63, -0x8000000000000000);
test__fixsfti(-0x1.FFFFFFFFFFFFFp+62, -0x8000000000000000);
test__fixsfti(-0x1.FFFFFFFFFFFFEp+62, -0x8000000000000000);
test__fixsfti(-0x1.FFFFFFp+62, -0x8000000000000000);
test__fixsfti(-0x1.FFFFFEp+62, -0x7fffff8000000000);
test__fixsfti(-0x1.FFFFFCp+62, -0x7fffff0000000000);
test__fixsfti(-0x1.000000p+31, -0x80000000);
test__fixsfti(-0x1.FFFFFFp+30, -0x80000000);
test__fixsfti(-0x1.FFFFFEp+30, -0x7FFFFF80);
test__fixsfti(-0x1.FFFFFCp+30, -0x7FFFFF00);
test__fixsfti(-2.01, -2);
test__fixsfti(-2.0, -2);
test__fixsfti(-1.99, -1);
test__fixsfti(-1.0, -1);
test__fixsfti(-0.99, 0);
test__fixsfti(-0.5, 0);
test__fixsfti(-math.f32_min, 0);
test__fixsfti(0.0, 0);
test__fixsfti(math.f32_min, 0);
test__fixsfti(0.5, 0);
test__fixsfti(0.99, 0);
test__fixsfti(1.0, 1);
test__fixsfti(1.5, 1);
test__fixsfti(1.99, 1);
test__fixsfti(2.0, 2);
test__fixsfti(2.01, 2);
test__fixsfti(0x1.FFFFFCp+30, 0x7FFFFF00);
test__fixsfti(0x1.FFFFFEp+30, 0x7FFFFF80);
test__fixsfti(0x1.FFFFFFp+30, 0x80000000);
test__fixsfti(0x1.000000p+31, 0x80000000);
test__fixsfti(0x1.FFFFFCp+62, 0x7FFFFF0000000000);
test__fixsfti(0x1.FFFFFEp+62, 0x7FFFFF8000000000);
test__fixsfti(0x1.FFFFFFp+62, 0x8000000000000000);
test__fixsfti(0x1.FFFFFFFFFFFFEp+62, 0x8000000000000000);
test__fixsfti(0x1.FFFFFFFFFFFFFp+62, 0x8000000000000000);
test__fixsfti(0x1.0000000000000p+63, 0x8000000000000000);
test__fixsfti(0x1.0000000000001p+63, 0x8000000000000000);
test__fixsfti(0x1.FFFFFC0000000p+126, 0x7FFFFF00000000000000000000000000);
test__fixsfti(0x1.FFFFFE0000000p+126, 0x7FFFFF80000000000000000000000000);
test__fixsfti(0x1.FFFFFF0000000p+126, 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF);
test__fixsfti(0x1.FFFFFFFFFFFFEp+126, 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF);
test__fixsfti(0x1.FFFFFFFFFFFFFp+126, 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF);
test__fixsfti(0x1.0000000000000p+127, 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF);
test__fixsfti(0x1.FFFFFFFFFFFFFp+1023, 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF);
test__fixsfti(0x1.FFFFFFFFFFFFFp+1023, math.maxInt(i128));
test__fixsfti(math.f32_max, math.maxInt(i128));
}