const std = @import("std"); const abi = @import("abi.zig"); const temporal_types = @import("temporal.zig"); const PlainTime = @This(); const Duration = @import("Duration.zig"); _inner: *abi.c.PlainTime, // Import types from temporal.zig pub const Unit = temporal_types.Unit; pub const RoundingMode = temporal_types.RoundingMode; pub const DifferenceSettings = temporal_types.DifferenceSettings; pub const RoundOptions = temporal_types.RoundingOptions; pub const WithOptions = struct { hour: ?u8 = null, minute: ?u8 = null, second: ?u8 = null, millisecond: ?u16 = null, microsecond: ?u16 = null, nanosecond: ?u16 = null, }; // Helper to wrap PlainTime pointer fn wrapPlainTime(result: anytype) !PlainTime { const ptr = (try abi.extractResult(result)) orelse return abi.TemporalError.Generic; return PlainTime{ ._inner = ptr }; } // Constructor - creates a PlainTime with all parameters pub fn init( hour_val: u8, minute_val: u8, second_val: u8, millisecond_val: u16, microsecond_val: u16, nanosecond_val: u16, ) !PlainTime { return wrapPlainTime(abi.c.temporal_rs_PlainTime_try_new( hour_val, minute_val, second_val, millisecond_val, microsecond_val, nanosecond_val, )); } // Parse from string pub fn from(s: []const u8) !PlainTime { return fromUtf8(s); } fn fromUtf8(utf8: []const u8) !PlainTime { const view = abi.toDiplomatStringView(utf8); return wrapPlainTime(abi.c.temporal_rs_PlainTime_from_utf8(view)); } fn fromUtf16(utf16: []const u16) !PlainTime { const view = abi.toDiplomatString16View(utf16); return wrapPlainTime(abi.c.temporal_rs_PlainTime_from_utf16(view)); } // Comparison pub fn compare(a: PlainTime, b: PlainTime) i8 { return abi.c.temporal_rs_PlainTime_compare(a._inner, b._inner); } pub fn equals(self: PlainTime, other: PlainTime) bool { return abi.c.temporal_rs_PlainTime_equals(self._inner, other._inner); } // Arithmetic pub fn add(self: PlainTime, duration: Duration) !PlainTime { return wrapPlainTime(abi.c.temporal_rs_PlainTime_add(self._inner, duration._inner)); } pub fn subtract(self: PlainTime, duration: Duration) !PlainTime { return wrapPlainTime(abi.c.temporal_rs_PlainTime_subtract(self._inner, duration._inner)); } pub fn until(self: PlainTime, other: PlainTime, options: DifferenceSettings) !Duration { const settings = options.toCApi(); const result = abi.c.temporal_rs_PlainTime_until(self._inner, other._inner, settings); const ptr = (try abi.extractResult(result)) orelse return abi.TemporalError.Generic; return .{ ._inner = ptr }; } pub fn since(self: PlainTime, other: PlainTime, options: DifferenceSettings) !Duration { const settings = options.toCApi(); const result = abi.c.temporal_rs_PlainTime_since(self._inner, other._inner, settings); const ptr = (try abi.extractResult(result)) orelse return abi.TemporalError.Generic; return .{ ._inner = ptr }; } // Rounding pub fn round(self: PlainTime, options: RoundOptions) !PlainTime { return wrapPlainTime(abi.c.temporal_rs_PlainTime_round(self._inner, options.toCApi())); } // Property accessors pub fn hour(self: PlainTime) u8 { return abi.c.temporal_rs_PlainTime_hour(self._inner); } pub fn minute(self: PlainTime) u8 { return abi.c.temporal_rs_PlainTime_minute(self._inner); } pub fn second(self: PlainTime) u8 { return abi.c.temporal_rs_PlainTime_second(self._inner); } pub fn millisecond(self: PlainTime) u16 { return abi.c.temporal_rs_PlainTime_millisecond(self._inner); } pub fn microsecond(self: PlainTime) u16 { return abi.c.temporal_rs_PlainTime_microsecond(self._inner); } pub fn nanosecond(self: PlainTime) u16 { return abi.c.temporal_rs_PlainTime_nanosecond(self._inner); } // Modification pub fn with(self: PlainTime, options: WithOptions) !PlainTime { const partial = abi.c.PartialTime{ .hour = abi.toOption(abi.c.OptionU8, options.hour), .minute = abi.toOption(abi.c.OptionU8, options.minute), .second = abi.toOption(abi.c.OptionU8, options.second), .millisecond = abi.toOption(abi.c.OptionU16, options.millisecond), .microsecond = abi.toOption(abi.c.OptionU16, options.microsecond), .nanosecond = abi.toOption(abi.c.OptionU16, options.nanosecond), }; const overflow_opt = abi.c.ArithmeticOverflow_option{ .is_ok = true, .unnamed_0 = .{ .ok = abi.c.ArithmeticOverflow_Constrain }, }; return wrapPlainTime(abi.c.temporal_rs_PlainTime_with(self._inner, partial, overflow_opt)); } // String conversions pub fn toString(self: PlainTime, allocator: std.mem.Allocator) ![]u8 { return toStringWithOptions(self, allocator, .{}); } fn toStringWithOptions(self: PlainTime, allocator: std.mem.Allocator, options: temporal_types.ToStringRoundingOptions) ![]u8 { const rounding_opts = options.toCApi(); var write = abi.DiplomatWrite.init(allocator); defer write.deinit(); const result = abi.c.temporal_rs_PlainTime_to_ixdtf_string( self._inner, rounding_opts, &write.inner, ); if (!result.is_ok) return error.TemporalError; return try write.toOwnedSlice(); } pub fn toJSON(self: PlainTime, allocator: std.mem.Allocator) ![]u8 { return toString(self, allocator); } pub fn toLocaleString(self: PlainTime, allocator: std.mem.Allocator) ![]u8 { // For now, just use toString - locale-specific formatting would require more work return toString(self, allocator); } pub fn valueOf(self: PlainTime) !void { _ = self; // PlainTime should not be used in arithmetic/comparison operations implicitly return error.ValueError; } // ---------- Tests --------------------- test init { { const time = try init(14, 30, 45, 123, 456, 789); try std.testing.expectEqual(@as(u8, 14), time.hour()); try std.testing.expectEqual(@as(u8, 30), time.minute()); try std.testing.expectEqual(@as(u8, 45), time.second()); try std.testing.expectEqual(@as(u16, 123), time.millisecond()); try std.testing.expectEqual(@as(u16, 456), time.microsecond()); try std.testing.expectEqual(@as(u16, 789), time.nanosecond()); } { const time = try init(0, 0, 0, 0, 0, 0); try std.testing.expectEqual(@as(u8, 0), time.hour()); try std.testing.expectEqual(@as(u8, 0), time.minute()); try std.testing.expectEqual(@as(u8, 0), time.second()); } { const time = try init(23, 59, 59, 999, 999, 999); try std.testing.expectEqual(@as(u8, 23), time.hour()); try std.testing.expectEqual(@as(u8, 59), time.minute()); try std.testing.expectEqual(@as(u8, 59), time.second()); } } test from { { const time = try from("14:30:45.123456789"); try std.testing.expectEqual(@as(u8, 14), time.hour()); try std.testing.expectEqual(@as(u8, 30), time.minute()); try std.testing.expectEqual(@as(u8, 45), time.second()); try std.testing.expectEqual(@as(u16, 123), time.millisecond()); try std.testing.expectEqual(@as(u16, 456), time.microsecond()); try std.testing.expectEqual(@as(u16, 789), time.nanosecond()); } { const time = try from("14:30"); try std.testing.expectEqual(@as(u8, 14), time.hour()); try std.testing.expectEqual(@as(u8, 30), time.minute()); try std.testing.expectEqual(@as(u8, 0), time.second()); } { const time = try from("14:30:45"); try std.testing.expectEqual(@as(u8, 14), time.hour()); try std.testing.expectEqual(@as(u8, 30), time.minute()); try std.testing.expectEqual(@as(u8, 45), time.second()); } } test compare { { const time1 = try init(14, 30, 45, 123, 456, 789); const time2 = try init(14, 30, 45, 123, 456, 789); try std.testing.expectEqual(@as(i8, 0), compare(time1, time2)); } { const time1 = try init(14, 30, 45, 123, 456, 789); const time2 = try init(15, 30, 45, 123, 456, 789); try std.testing.expectEqual(@as(i8, -1), compare(time1, time2)); } { const time1 = try init(15, 30, 45, 123, 456, 789); const time2 = try init(14, 30, 45, 123, 456, 789); try std.testing.expectEqual(@as(i8, 1), compare(time1, time2)); } } test equals { { const time1 = try init(14, 30, 45, 123, 456, 789); const time2 = try init(14, 30, 45, 123, 456, 789); try std.testing.expect(time1.equals(time2)); } { const time1 = try init(14, 30, 45, 123, 456, 789); const time2 = try init(15, 30, 45, 123, 456, 789); try std.testing.expect(!time1.equals(time2)); } } test add { { const time = try init(14, 30, 0, 0, 0, 0); const duration = try Duration.from("PT1H30M"); const result = try time.add(duration); try std.testing.expectEqual(@as(u8, 16), result.hour()); try std.testing.expectEqual(@as(u8, 0), result.minute()); } { const time = try init(23, 30, 0, 0, 0, 0); const duration = try Duration.from("PT1H"); const result = try time.add(duration); try std.testing.expectEqual(@as(u8, 0), result.hour()); try std.testing.expectEqual(@as(u8, 30), result.minute()); } } test subtract { { const time = try init(16, 0, 0, 0, 0, 0); const duration = try Duration.from("PT1H30M"); const result = try time.subtract(duration); try std.testing.expectEqual(@as(u8, 14), result.hour()); try std.testing.expectEqual(@as(u8, 30), result.minute()); } { const time = try init(0, 30, 0, 0, 0, 0); const duration = try Duration.from("PT1H"); const result = try time.subtract(duration); try std.testing.expectEqual(@as(u8, 23), result.hour()); try std.testing.expectEqual(@as(u8, 30), result.minute()); } } test with { { const time = try init(14, 30, 45, 123, 456, 789); const result = try time.with(.{ .hour = 18 }); try std.testing.expectEqual(@as(u8, 18), result.hour()); try std.testing.expectEqual(@as(u8, 30), result.minute()); try std.testing.expectEqual(@as(u8, 45), result.second()); } { const time = try init(14, 30, 45, 123, 456, 789); const result = try time.with(.{ .hour = 18, .minute = 15, .second = 0 }); try std.testing.expectEqual(@as(u8, 18), result.hour()); try std.testing.expectEqual(@as(u8, 15), result.minute()); try std.testing.expectEqual(@as(u8, 0), result.second()); } } test toString { const time = try init(14, 30, 45, 123, 456, 789); const str = try time.toString(std.testing.allocator); defer std.testing.allocator.free(str); // Should be in format: 14:30:45.123456789 try std.testing.expect(str.len > 0); try std.testing.expect(std.mem.indexOf(u8, str, "14:30:45") != null); } test toJSON { const time = try init(14, 30, 45, 123, 456, 789); const str = try time.toJSON(std.testing.allocator); defer std.testing.allocator.free(str); try std.testing.expect(str.len > 0); } test round { const time = try init(14, 30, 45, 999, 999, 999); const rounded = try time.round(.{ .smallest_unit = .second }); try std.testing.expectEqual(@as(u8, 14), rounded.hour()); try std.testing.expectEqual(@as(u8, 30), rounded.minute()); try std.testing.expectEqual(@as(u8, 46), rounded.second()); try std.testing.expectEqual(@as(u16, 0), rounded.millisecond()); try std.testing.expectEqual(@as(u16, 0), rounded.microsecond()); try std.testing.expectEqual(@as(u16, 0), rounded.nanosecond()); } test since { const time1 = try init(15, 30, 0, 0, 0, 0); const time2 = try init(14, 0, 0, 0, 0, 0); const dur = try time1.since(time2, .{}); try std.testing.expectEqual(@as(i64, 1), dur.hours()); try std.testing.expectEqual(@as(i64, 30), dur.minutes()); } test until { const time1 = try init(14, 0, 0, 0, 0, 0); const time2 = try init(15, 30, 0, 0, 0, 0); const dur = try time1.until(time2, .{}); try std.testing.expectEqual(@as(i64, 1), dur.hours()); try std.testing.expectEqual(@as(i64, 30), dur.minutes()); }