| 1 | const std = @import("std"); |
| 2 | const builtin = @import("builtin"); |
| 3 | const math = std.math; |
| 4 | const arch = builtin.cpu.arch; |
| 5 | const compiler_rt = @import("../compiler_rt.zig"); |
| 6 | const symbol = compiler_rt.symbol; |
| 7 | |
| 8 | comptime { |
| 9 | symbol(&__fminh, "__fminh"); |
| 10 | symbol(&fminf, "fminf"); |
| 11 | symbol(&fmin, "fmin"); |
| 12 | symbol(&__fminx, "__fminx"); |
| 13 | symbol(&fminq, "fminf128"); |
| 14 | symbol(&fminl, "fminl"); |
| 15 | } |
| 16 | |
| 17 | fn __fminh(x: compiler_rt.f16.Abi, y: compiler_rt.f16.Abi) callconv(.c) compiler_rt.f16.Abi { |
| 18 | return compiler_rt.f16.toAbi(fmin_f16(compiler_rt.f16.fromAbi(x), compiler_rt.f16.fromAbi(y))); |
| 19 | } |
| 20 | pub fn fmin_f16(x: f16, y: f16) f16 { |
| 21 | return generic_fmin(f16, x, y); |
| 22 | } |
| 23 | |
| 24 | fn fminf(x: compiler_rt.f32.Abi, y: compiler_rt.f32.Abi) callconv(.c) compiler_rt.f32.Abi { |
| 25 | return compiler_rt.f32.toAbi(fmin_f32(compiler_rt.f32.fromAbi(x), compiler_rt.f32.fromAbi(y))); |
| 26 | } |
| 27 | pub fn fmin_f32(x: f32, y: f32) f32 { |
| 28 | return generic_fmin(f32, x, y); |
| 29 | } |
| 30 | |
| 31 | fn fmin(x: compiler_rt.f64.Abi, y: compiler_rt.f64.Abi) callconv(.c) compiler_rt.f64.Abi { |
| 32 | return compiler_rt.f64.toAbi(fmin_f64(compiler_rt.f64.fromAbi(x), compiler_rt.f64.fromAbi(y))); |
| 33 | } |
| 34 | pub fn fmin_f64(x: f64, y: f64) f64 { |
| 35 | return generic_fmin(f64, x, y); |
| 36 | } |
| 37 | |
| 38 | fn __fminx(x: compiler_rt.f80.Abi, y: compiler_rt.f80.Abi) callconv(.c) compiler_rt.f80.Abi { |
| 39 | return compiler_rt.f80.toAbi(fmin_f80(compiler_rt.f80.fromAbi(x), compiler_rt.f80.fromAbi(y))); |
| 40 | } |
| 41 | pub fn fmin_f80(x: f80, y: f80) f80 { |
| 42 | return generic_fmin(f80, x, y); |
| 43 | } |
| 44 | |
| 45 | fn fminq(x: compiler_rt.f128.Abi, y: compiler_rt.f128.Abi) callconv(.c) compiler_rt.f128.Abi { |
| 46 | return compiler_rt.f128.toAbi(fmin_f128(compiler_rt.f128.fromAbi(x), compiler_rt.f128.fromAbi(y))); |
| 47 | } |
| 48 | pub fn fmin_f128(x: f128, y: f128) f128 { |
| 49 | return generic_fmin(f128, x, y); |
| 50 | } |
| 51 | |
| 52 | pub fn fminl(x: c_longdouble, y: c_longdouble) callconv(.c) c_longdouble { |
| 53 | switch (@typeInfo(c_longdouble).float.bits) { |
| 54 | 64 => return fmin_f64(x, y), |
| 55 | 80 => return fmin_f80(x, y), |
| 56 | 128 => return fmin_f128(x, y), |
| 57 | else => comptime unreachable, |
| 58 | } |
| 59 | } |
| 60 | |
| 61 | inline fn generic_fmin(comptime T: type, x: T, y: T) T { |
| 62 | if (math.isNan(x)) |
| 63 | return y; |
| 64 | if (math.isNan(y)) |
| 65 | return x; |
| 66 | if (math.signbit(x) != math.signbit(y)) |
| 67 | return if (math.signbit(x)) x else y; |
| 68 | return if (x < y) x else y; |
| 69 | } |
| 70 | |
| 71 | test "generic_fmin" { |
| 72 | inline for ([_]type{ f32, f64, c_longdouble, f80, f128 }) |T| { |
| 73 | const nan_val = math.nan(T); |
| 74 | const Int = @Int(.unsigned, @bitSizeOf(T)); |
| 75 | |
| 76 | try std.testing.expect(math.isNan(generic_fmin(T, nan_val, nan_val))); |
| 77 | try std.testing.expectEqual(@as(T, 1.0), generic_fmin(T, nan_val, 1.0)); |
| 78 | try std.testing.expectEqual(@as(T, 1.0), generic_fmin(T, 1.0, nan_val)); |
| 79 | |
| 80 | try std.testing.expectEqual(@as(T, 1.0), generic_fmin(T, 1.0, 10.0)); |
| 81 | try std.testing.expectEqual(@as(T, -1.0), generic_fmin(T, 1.0, -1.0)); |
| 82 | |
| 83 | try std.testing.expectEqual(@as(Int, @bitCast(@as(T, -0.0))), @as(Int, @bitCast(generic_fmin(T, 0.0, -0.0)))); |
| 84 | try std.testing.expectEqual(@as(Int, @bitCast(@as(T, -0.0))), @as(Int, @bitCast(generic_fmin(T, -0.0, 0.0)))); |
| 85 | } |
| 86 | } |