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e8c0550586
Improves the type of `os.date` based on its documentation https://create.roblox.com/docs/reference/engine/libraries/os#date We know that the DateTypeResult table is only returned when the format string is either "*t" or "!*t", and otherwise its just a formatted string. This changes the type to showcase this appropriately. I put the more strict type first in the overload because the ordering makes a difference Note: the API docs used in studio (https://github.com/MaximumADHD/Roblox-Client-Tracker/blob/roblox/api-docs/en-us.json) may need to be updated to reflect the overloaded type instead. ![image](https://user-images.githubusercontent.com/19635171/226919224-e9e8703b-2729-44b0-93f6-434c01bda204.png) It may be possible to add a lint of this too to provide analysis similar to how `string.format` works with a FormatString error. Will leave that for a different PR though
205 lines
6.9 KiB
C++
205 lines
6.9 KiB
C++
// This file is part of the Luau programming language and is licensed under MIT License; see LICENSE.txt for details
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#include "Luau/BuiltinDefinitions.h"
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namespace Luau
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{
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static const std::string kBuiltinDefinitionLuaSrc = R"BUILTIN_SRC(
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declare bit32: {
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band: (...number) -> number,
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bor: (...number) -> number,
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bxor: (...number) -> number,
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btest: (number, ...number) -> boolean,
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rrotate: (x: number, disp: number) -> number,
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lrotate: (x: number, disp: number) -> number,
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lshift: (x: number, disp: number) -> number,
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arshift: (x: number, disp: number) -> number,
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rshift: (x: number, disp: number) -> number,
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bnot: (x: number) -> number,
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extract: (n: number, field: number, width: number?) -> number,
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replace: (n: number, v: number, field: number, width: number?) -> number,
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countlz: (n: number) -> number,
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countrz: (n: number) -> number,
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}
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declare math: {
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frexp: (n: number) -> (number, number),
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ldexp: (s: number, e: number) -> number,
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fmod: (x: number, y: number) -> number,
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modf: (n: number) -> (number, number),
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pow: (x: number, y: number) -> number,
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exp: (n: number) -> number,
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ceil: (n: number) -> number,
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floor: (n: number) -> number,
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abs: (n: number) -> number,
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sqrt: (n: number) -> number,
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log: (n: number, base: number?) -> number,
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log10: (n: number) -> number,
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rad: (n: number) -> number,
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deg: (n: number) -> number,
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sin: (n: number) -> number,
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cos: (n: number) -> number,
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tan: (n: number) -> number,
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sinh: (n: number) -> number,
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cosh: (n: number) -> number,
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tanh: (n: number) -> number,
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atan: (n: number) -> number,
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acos: (n: number) -> number,
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asin: (n: number) -> number,
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atan2: (y: number, x: number) -> number,
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min: (number, ...number) -> number,
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max: (number, ...number) -> number,
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pi: number,
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huge: number,
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randomseed: (seed: number) -> (),
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random: (number?, number?) -> number,
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sign: (n: number) -> number,
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clamp: (n: number, min: number, max: number) -> number,
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noise: (x: number, y: number?, z: number?) -> number,
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round: (n: number) -> number,
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}
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type DateTypeArg = {
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year: number,
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month: number,
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day: number,
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hour: number?,
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min: number?,
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sec: number?,
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isdst: boolean?,
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}
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type DateTypeResult = {
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year: number,
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month: number,
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wday: number,
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yday: number,
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day: number,
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hour: number,
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min: number,
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sec: number,
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isdst: boolean,
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}
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declare os: {
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time: (time: DateTypeArg?) -> number,
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date: ((formatString: "*t" | "!*t", time: number?) -> DateTypeResult) & ((formatString: string?, time: number?) -> string),
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difftime: (t2: DateTypeResult | number, t1: DateTypeResult | number) -> number,
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clock: () -> number,
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}
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declare function require(target: any): any
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declare function getfenv(target: any): { [string]: any }
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declare _G: any
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declare _VERSION: string
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declare function gcinfo(): number
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declare function print<T...>(...: T...)
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declare function type<T>(value: T): string
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declare function typeof<T>(value: T): string
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-- `assert` has a magic function attached that will give more detailed type information
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declare function assert<T>(value: T, errorMessage: string?): T
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declare function error<T>(message: T, level: number?): never
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declare function tostring<T>(value: T): string
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declare function tonumber<T>(value: T, radix: number?): number?
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declare function rawequal<T1, T2>(a: T1, b: T2): boolean
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declare function rawget<K, V>(tab: {[K]: V}, k: K): V
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declare function rawset<K, V>(tab: {[K]: V}, k: K, v: V): {[K]: V}
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declare function rawlen<K, V>(obj: {[K]: V} | string): number
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declare function setfenv<T..., R...>(target: number | (T...) -> R..., env: {[string]: any}): ((T...) -> R...)?
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declare function ipairs<V>(tab: {V}): (({V}, number) -> (number?, V), {V}, number)
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declare function pcall<A..., R...>(f: (A...) -> R..., ...: A...): (boolean, R...)
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-- FIXME: The actual type of `xpcall` is:
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-- <E, A..., R1..., R2...>(f: (A...) -> R1..., err: (E) -> R2..., A...) -> (true, R1...) | (false, R2...)
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-- Since we can't represent the return value, we use (boolean, R1...).
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declare function xpcall<E, A..., R1..., R2...>(f: (A...) -> R1..., err: (E) -> R2..., ...: A...): (boolean, R1...)
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-- `select` has a magic function attached to provide more detailed type information
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declare function select<A...>(i: string | number, ...: A...): ...any
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-- FIXME: This type is not entirely correct - `loadstring` returns a function or
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-- (nil, string).
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declare function loadstring<A...>(src: string, chunkname: string?): (((A...) -> any)?, string?)
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declare function newproxy(mt: boolean?): any
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declare coroutine: {
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create: <A..., R...>(f: (A...) -> R...) -> thread,
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resume: <A..., R...>(co: thread, A...) -> (boolean, R...),
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running: () -> thread,
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status: (co: thread) -> "dead" | "running" | "normal" | "suspended",
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-- FIXME: This technically returns a function, but we can't represent this yet.
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wrap: <A..., R...>(f: (A...) -> R...) -> any,
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yield: <A..., R...>(A...) -> R...,
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isyieldable: () -> boolean,
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close: (co: thread) -> (boolean, any)
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}
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declare table: {
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concat: <V>(t: {V}, sep: string?, i: number?, j: number?) -> string,
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insert: (<V>(t: {V}, value: V) -> ()) & (<V>(t: {V}, pos: number, value: V) -> ()),
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maxn: <V>(t: {V}) -> number,
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remove: <V>(t: {V}, number?) -> V?,
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sort: <V>(t: {V}, comp: ((V, V) -> boolean)?) -> (),
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create: <V>(count: number, value: V?) -> {V},
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find: <V>(haystack: {V}, needle: V, init: number?) -> number?,
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unpack: <V>(list: {V}, i: number?, j: number?) -> ...V,
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pack: <V>(...V) -> { n: number, [number]: V },
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getn: <V>(t: {V}) -> number,
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foreach: <K, V>(t: {[K]: V}, f: (K, V) -> ()) -> (),
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foreachi: <V>({V}, (number, V) -> ()) -> (),
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move: <V>(src: {V}, a: number, b: number, t: number, dst: {V}?) -> {V},
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clear: <K, V>(table: {[K]: V}) -> (),
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isfrozen: <K, V>(t: {[K]: V}) -> boolean,
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}
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declare debug: {
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info: (<R...>(thread: thread, level: number, options: string) -> R...) & (<R...>(level: number, options: string) -> R...) & (<A..., R1..., R2...>(func: (A...) -> R1..., options: string) -> R2...),
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traceback: ((message: string?, level: number?) -> string) & ((thread: thread, message: string?, level: number?) -> string),
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}
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declare utf8: {
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char: (...number) -> string,
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charpattern: string,
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codes: (str: string) -> ((string, number) -> (number, number), string, number),
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codepoint: (str: string, i: number?, j: number?) -> ...number,
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len: (s: string, i: number?, j: number?) -> (number?, number?),
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offset: (s: string, n: number?, i: number?) -> number,
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}
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-- Cannot use `typeof` here because it will produce a polytype when we expect a monotype.
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declare function unpack<V>(tab: {V}, i: number?, j: number?): ...V
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)BUILTIN_SRC";
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std::string getBuiltinDefinitionSource()
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{
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std::string result = kBuiltinDefinitionLuaSrc;
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return result;
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}
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} // namespace Luau
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