144 lines
4.4 KiB
Zig
144 lines
4.4 KiB
Zig
const std = @import("../std.zig");
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const math = std.math;
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const expect = std.testing.expect;
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const maxInt = std.math.maxInt;
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/// Returns whether x is an infinity, ignoring sign.
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pub fn isInf(x: var) bool {
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const T = @TypeOf(x);
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switch (T) {
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f16 => {
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const bits = @bitCast(u16, x);
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return bits & 0x7FFF == 0x7C00;
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},
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f32 => {
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const bits = @bitCast(u32, x);
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return bits & 0x7FFFFFFF == 0x7F800000;
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},
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f64 => {
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const bits = @bitCast(u64, x);
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return bits & (maxInt(u64) >> 1) == (0x7FF << 52);
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},
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f128 => {
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const bits = @bitCast(u128, x);
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return bits & (maxInt(u128) >> 1) == (0x7FFF << 112);
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},
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else => {
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@compileError("isInf not implemented for " ++ @typeName(T));
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},
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}
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}
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/// Returns whether x is an infinity with a positive sign.
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pub fn isPositiveInf(x: var) bool {
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const T = @TypeOf(x);
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switch (T) {
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f16 => {
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return @bitCast(u16, x) == 0x7C00;
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},
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f32 => {
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return @bitCast(u32, x) == 0x7F800000;
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},
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f64 => {
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return @bitCast(u64, x) == 0x7FF << 52;
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},
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f128 => {
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return @bitCast(u128, x) == 0x7FFF << 112;
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},
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else => {
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@compileError("isPositiveInf not implemented for " ++ @typeName(T));
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},
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}
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}
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/// Returns whether x is an infinity with a negative sign.
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pub fn isNegativeInf(x: var) bool {
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const T = @TypeOf(x);
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switch (T) {
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f16 => {
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return @bitCast(u16, x) == 0xFC00;
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},
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f32 => {
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return @bitCast(u32, x) == 0xFF800000;
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},
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f64 => {
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return @bitCast(u64, x) == 0xFFF << 52;
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},
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f128 => {
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return @bitCast(u128, x) == 0xFFFF << 112;
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},
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else => {
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@compileError("isNegativeInf not implemented for " ++ @typeName(T));
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},
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}
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}
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test "math.isInf" {
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if (std.Target.current.os.tag == .windows) {
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// TODO https://github.com/ziglang/zig/issues/508
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return error.SkipZigTest;
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}
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expect(!isInf(@as(f16, 0.0)));
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expect(!isInf(@as(f16, -0.0)));
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expect(!isInf(@as(f32, 0.0)));
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expect(!isInf(@as(f32, -0.0)));
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expect(!isInf(@as(f64, 0.0)));
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expect(!isInf(@as(f64, -0.0)));
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expect(!isInf(@as(f128, 0.0)));
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expect(!isInf(@as(f128, -0.0)));
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expect(isInf(math.inf(f16)));
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expect(isInf(-math.inf(f16)));
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expect(isInf(math.inf(f32)));
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expect(isInf(-math.inf(f32)));
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expect(isInf(math.inf(f64)));
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expect(isInf(-math.inf(f64)));
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expect(isInf(math.inf(f128)));
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expect(isInf(-math.inf(f128)));
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}
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test "math.isPositiveInf" {
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if (std.Target.current.os.tag == .windows) {
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// TODO https://github.com/ziglang/zig/issues/508
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return error.SkipZigTest;
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}
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expect(!isPositiveInf(@as(f16, 0.0)));
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expect(!isPositiveInf(@as(f16, -0.0)));
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expect(!isPositiveInf(@as(f32, 0.0)));
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expect(!isPositiveInf(@as(f32, -0.0)));
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expect(!isPositiveInf(@as(f64, 0.0)));
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expect(!isPositiveInf(@as(f64, -0.0)));
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expect(!isPositiveInf(@as(f128, 0.0)));
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expect(!isPositiveInf(@as(f128, -0.0)));
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expect(isPositiveInf(math.inf(f16)));
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expect(!isPositiveInf(-math.inf(f16)));
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expect(isPositiveInf(math.inf(f32)));
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expect(!isPositiveInf(-math.inf(f32)));
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expect(isPositiveInf(math.inf(f64)));
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expect(!isPositiveInf(-math.inf(f64)));
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expect(isPositiveInf(math.inf(f128)));
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expect(!isPositiveInf(-math.inf(f128)));
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}
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test "math.isNegativeInf" {
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if (std.Target.current.os.tag == .windows) {
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// TODO https://github.com/ziglang/zig/issues/508
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return error.SkipZigTest;
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}
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expect(!isNegativeInf(@as(f16, 0.0)));
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expect(!isNegativeInf(@as(f16, -0.0)));
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expect(!isNegativeInf(@as(f32, 0.0)));
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expect(!isNegativeInf(@as(f32, -0.0)));
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expect(!isNegativeInf(@as(f64, 0.0)));
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expect(!isNegativeInf(@as(f64, -0.0)));
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expect(!isNegativeInf(@as(f128, 0.0)));
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expect(!isNegativeInf(@as(f128, -0.0)));
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expect(!isNegativeInf(math.inf(f16)));
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expect(isNegativeInf(-math.inf(f16)));
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expect(!isNegativeInf(math.inf(f32)));
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expect(isNegativeInf(-math.inf(f32)));
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expect(!isNegativeInf(math.inf(f64)));
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expect(isNegativeInf(-math.inf(f64)));
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expect(!isNegativeInf(math.inf(f128)));
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expect(isNegativeInf(-math.inf(f128)));
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}
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