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EVE SDE Schema

Documentation for third-party developers

skinrSlotCategories.jsonl

Schema

  • _key (required): integer
    Range: 1 .. 3
  • name (required): string

Code snippets

// <auto-generated />
//
// To parse this JSON data, add NuGet 'Newtonsoft.Json' then do:
//
//    using QuickType;
//
//    var skinrSlotCategorie = SkinrSlotCategorie.FromJson(jsonString);

namespace QuickType
{
    using System;
    using System.Collections.Generic;

    using System.Globalization;
    using Newtonsoft.Json;
    using Newtonsoft.Json.Converters;

    public partial class SkinrSlotCategorie
    {
        [JsonProperty("_key")]
        public long Key { get; set; }

        [JsonProperty("name")]
        [JsonConverter(typeof(MinMaxLengthCheckConverter))]
        public string Name { get; set; }
    }

    public partial class SkinrSlotCategorie
    {
        public static SkinrSlotCategorie FromJson(string json) => JsonConvert.DeserializeObject<SkinrSlotCategorie>(json, QuickType.Converter.Settings);
    }

    public static class Serialize
    {
        public static string ToJson(this SkinrSlotCategorie self) => JsonConvert.SerializeObject(self, QuickType.Converter.Settings);
    }

    internal static class Converter
    {
        public static readonly JsonSerializerSettings Settings = new JsonSerializerSettings
        {
            MetadataPropertyHandling = MetadataPropertyHandling.Ignore,
            DateParseHandling = DateParseHandling.None,
            Converters =
            {
                new IsoDateTimeConverter { DateTimeStyles = DateTimeStyles.AssumeUniversal }
            },
        };
    }

    internal class MinMaxLengthCheckConverter : JsonConverter
    {
        public override bool CanConvert(Type t) => t == typeof(string);

        public override object ReadJson(JsonReader reader, Type t, object existingValue, JsonSerializer serializer)
        {
            var value = serializer.Deserialize<string>(reader);
            if (value.Length >= 12 && value.Length <= 21)
            {
                return value;
            }
            throw new Exception("Cannot unmarshal type string");
        }

        public override void WriteJson(JsonWriter writer, object untypedValue, JsonSerializer serializer)
        {
            var value = (string)untypedValue;
            if (value.Length >= 12 && value.Length <= 21)
            {
                serializer.Serialize(writer, value);
                return;
            }
            throw new Exception("Cannot marshal type string");
        }

        public static readonly MinMaxLengthCheckConverter Singleton = new MinMaxLengthCheckConverter();
    }
}
// Code generated from JSON Schema using quicktype. DO NOT EDIT.
// To parse and unparse this JSON data, add this code to your project and do:
//
//    skinrSlotCategorie, err := UnmarshalSkinrSlotCategorie(bytes)
//    bytes, err = skinrSlotCategorie.Marshal()

package model

import "encoding/json"

func UnmarshalSkinrSlotCategorie(data []byte) (SkinrSlotCategorie, error) {
    var r SkinrSlotCategorie
    err := json.Unmarshal(data, &r)
    return r, err
}

func (r *SkinrSlotCategorie) Marshal() ([]byte, error) {
    return json.Marshal(r)
}

type SkinrSlotCategorie struct {
    Key  int64  `json:"_key"`
    Name string `json:"name"`
}
{"$schema":"https://json-schema.org/draft/2020-12/schema","type":"object","properties":{"_key":{"type":"integer","minimum":1,"maximum":3},"name":{"type":"string","minLength":12,"maxLength":21}},"required":["_key","name"]}
// To parse the JSON, install kotlin's serialization plugin and do:
//
// val json               = Json { allowStructuredMapKeys = true }
// val skinrSlotCategorie = json.parse(SkinrSlotCategorie.serializer(), jsonString)

package model

import kotlinx.serialization.*
import kotlinx.serialization.json.*
import kotlinx.serialization.descriptors.*
import kotlinx.serialization.encoding.*

@Serializable
data class SkinrSlotCategorie (
    @SerialName("_key")
    val key: Long,

    val name: String
)
<?php

// This is a autogenerated file:SkinrSlotCategorie

class SkinrSlotCategorie {
    private int $key; // json:_key Required
    private string $name; // json:name Required

    /**
     * @param int $key
     * @param string $name
     */
    public function __construct(int $key, string $name) {
        $this->key = $key;
        $this->name = $name;
    }

    /**
     * @param int $value
     * @throws Exception
     * @return int
     */
    public static function fromKey(int $value): int {
        return $value; /*int*/
    }

    /**
     * @throws Exception
     * @return int
     */
    public function toKey(): int {
        if (SkinrSlotCategorie::validateKey($this->key))  {
            return $this->key; /*int*/
        }
        throw new Exception('never get to this SkinrSlotCategorie::key');
    }

    /**
     * @param int
     * @return bool
     * @throws Exception
     */
    public static function validateKey(int $value): bool {
        if (!is_integer($value)) {
            throw new Exception("Attribute Error:SkinrSlotCategorie::key");
        }
        return true;
    }

    /**
     * @throws Exception
     * @return int
     */
    public function getKey(): int {
        if (SkinrSlotCategorie::validateKey($this->key))  {
            return $this->key;
        }
        throw new Exception('never get to getKey SkinrSlotCategorie::key');
    }

    /**
     * @return int
     */
    public static function sampleKey(): int {
        return 31; /*31:key*/
    }

    /**
     * @param string $value
     * @throws Exception
     * @return string
     */
    public static function fromName(string $value): string {
        return $value; /*string*/
    }

    /**
     * @throws Exception
     * @return string
     */
    public function toName(): string {
        if (SkinrSlotCategorie::validateName($this->name))  {
            return $this->name; /*string*/
        }
        throw new Exception('never get to this SkinrSlotCategorie::name');
    }

    /**
     * @param string
     * @return bool
     * @throws Exception
     */
    public static function validateName(string $value): bool {
        if (!is_string($value)) {
            throw new Exception("Attribute Error:SkinrSlotCategorie::name");
        }
        return true;
    }

    /**
     * @throws Exception
     * @return string
     */
    public function getName(): string {
        if (SkinrSlotCategorie::validateName($this->name))  {
            return $this->name;
        }
        throw new Exception('never get to getName SkinrSlotCategorie::name');
    }

    /**
     * @return string
     */
    public static function sampleName(): string {
        return 'SkinrSlotCategorie::name::32'; /*32:name*/
    }

    /**
     * @throws Exception
     * @return bool
     */
    public function validate(): bool {
        return SkinrSlotCategorie::validateKey($this->key)
        || SkinrSlotCategorie::validateName($this->name);
    }

    /**
     * @return stdClass
     * @throws Exception
     */
    public function to(): stdClass  {
        $out = new stdClass();
        $out->{'_key'} = $this->toKey();
        $out->{'name'} = $this->toName();
        return $out;
    }

    /**
     * @param stdClass $obj
     * @return SkinrSlotCategorie
     * @throws Exception
     */
    public static function from(stdClass $obj): SkinrSlotCategorie {
        return new SkinrSlotCategorie(
         SkinrSlotCategorie::fromKey($obj->{'_key'})
        ,SkinrSlotCategorie::fromName($obj->{'name'})
        );
    }

    /**
     * @return SkinrSlotCategorie
     */
    public static function sample(): SkinrSlotCategorie {
        return new SkinrSlotCategorie(
         SkinrSlotCategorie::sampleKey()
        ,SkinrSlotCategorie::sampleName()
        );
    }
}
from typing import Any, TypeVar, Type, cast


T = TypeVar("T")


def from_int(x: Any) -> int:
    assert isinstance(x, int) and not isinstance(x, bool)
    return x


def from_str(x: Any) -> str:
    assert isinstance(x, str)
    return x


def to_class(c: Type[T], x: Any) -> dict:
    assert isinstance(x, c)
    return cast(Any, x).to_dict()


class SkinrSlotCategorie:
    key: int
    name: str

    def __init__(self, key: int, name: str) -> None:
        self.key = key
        self.name = name

    @staticmethod
    def from_dict(obj: Any) -> 'SkinrSlotCategorie':
        assert isinstance(obj, dict)
        key = from_int(obj.get("_key"))
        name = from_str(obj.get("name"))
        return SkinrSlotCategorie(key, name)

    def to_dict(self) -> dict:
        result: dict = {}
        result["_key"] = from_int(self.key)
        result["name"] = from_str(self.name)
        return result


def skinr_slot_categorie_from_dict(s: Any) -> SkinrSlotCategorie:
    return SkinrSlotCategorie.from_dict(s)


def skinr_slot_categorie_to_dict(x: SkinrSlotCategorie) -> Any:
    return to_class(SkinrSlotCategorie, x)
// To parse this data:
//
//   import { Convert, SkinrSlotCategorie } from "./file";
//
//   const skinrSlotCategorie = Convert.toSkinrSlotCategorie(json);
//
// These functions will throw an error if the JSON doesn't
// match the expected interface, even if the JSON is valid.

export interface SkinrSlotCategorie {
    _key: number;
    name: string;
    [property: string]: any;
}

// Converts JSON strings to/from your types
// and asserts the results of JSON.parse at runtime
export class Convert {
    public static toSkinrSlotCategorie(json: string): SkinrSlotCategorie {
        return cast(JSON.parse(json), r("SkinrSlotCategorie"));
    }

    public static skinrSlotCategorieToJson(value: SkinrSlotCategorie): string {
        return JSON.stringify(uncast(value, r("SkinrSlotCategorie")), null, 2);
    }
}

function invalidValue(typ: any, val: any, key: any, parent: any = ''): never {
    const prettyTyp = prettyTypeName(typ);
    const parentText = parent ? ` on ${parent}` : '';
    const keyText = key ? ` for key "${key}"` : '';
    throw Error(`Invalid value${keyText}${parentText}. Expected ${prettyTyp} but got ${JSON.stringify(val)}`);
}

function prettyTypeName(typ: any): string {
    if (Array.isArray(typ)) {
        if (typ.length === 2 && typ[0] === undefined) {
            return `an optional ${prettyTypeName(typ[1])}`;
        } else {
            return `one of [${typ.map(a => { return prettyTypeName(a); }).join(", ")}]`;
        }
    } else if (typeof typ === "object" && typ.literal !== undefined) {
        return typ.literal;
    } else {
        return typeof typ;
    }
}

function jsonToJSProps(typ: any): any {
    if (typ.jsonToJS === undefined) {
        const map: any = {};
        typ.props.forEach((p: any) => map[p.json] = { key: p.js, typ: p.typ });
        typ.jsonToJS = map;
    }
    return typ.jsonToJS;
}

function jsToJSONProps(typ: any): any {
    if (typ.jsToJSON === undefined) {
        const map: any = {};
        typ.props.forEach((p: any) => map[p.js] = { key: p.json, typ: p.typ });
        typ.jsToJSON = map;
    }
    return typ.jsToJSON;
}

function transform(val: any, typ: any, getProps: any, key: any = '', parent: any = ''): any {
    function transformPrimitive(typ: string, val: any): any {
        if (typeof typ === typeof val) return val;
        return invalidValue(typ, val, key, parent);
    }

    function transformUnion(typs: any[], val: any): any {
        // val must validate against one typ in typs
        const l = typs.length;
        for (let i = 0; i < l; i++) {
            const typ = typs[i];
            try {
                return transform(val, typ, getProps);
            } catch (_) {}
        }
        return invalidValue(typs, val, key, parent);
    }

    function transformEnum(cases: string[], val: any): any {
        if (cases.indexOf(val) !== -1) return val;
        return invalidValue(cases.map(a => { return l(a); }), val, key, parent);
    }

    function transformArray(typ: any, val: any): any {
        // val must be an array with no invalid elements
        if (!Array.isArray(val)) return invalidValue(l("array"), val, key, parent);
        return val.map(el => transform(el, typ, getProps));
    }

    function transformDate(val: any): any {
        if (val === null) {
            return null;
        }
        const d = new Date(val);
        if (isNaN(d.valueOf())) {
            return invalidValue(l("Date"), val, key, parent);
        }
        return d;
    }

    function transformObject(props: { [k: string]: any }, additional: any, val: any): any {
        if (val === null || typeof val !== "object" || Array.isArray(val)) {
            return invalidValue(l(ref || "object"), val, key, parent);
        }
        const result: any = {};
        Object.getOwnPropertyNames(props).forEach(key => {
            const prop = props[key];
            const v = Object.prototype.hasOwnProperty.call(val, key) ? val[key] : undefined;
            result[prop.key] = transform(v, prop.typ, getProps, key, ref);
        });
        Object.getOwnPropertyNames(val).forEach(key => {
            if (!Object.prototype.hasOwnProperty.call(props, key)) {
                result[key] = transform(val[key], additional, getProps, key, ref);
            }
        });
        return result;
    }

    if (typ === "any") return val;
    if (typ === null) {
        if (val === null) return val;
        return invalidValue(typ, val, key, parent);
    }
    if (typ === false) return invalidValue(typ, val, key, parent);
    let ref: any = undefined;
    while (typeof typ === "object" && typ.ref !== undefined) {
        ref = typ.ref;
        typ = typeMap[typ.ref];
    }
    if (Array.isArray(typ)) return transformEnum(typ, val);
    if (typeof typ === "object") {
        return typ.hasOwnProperty("unionMembers") ? transformUnion(typ.unionMembers, val)
            : typ.hasOwnProperty("arrayItems")    ? transformArray(typ.arrayItems, val)
            : typ.hasOwnProperty("props")         ? transformObject(getProps(typ), typ.additional, val)
            : invalidValue(typ, val, key, parent);
    }
    // Numbers can be parsed by Date but shouldn't be.
    if (typ === Date && typeof val !== "number") return transformDate(val);
    return transformPrimitive(typ, val);
}

function cast<T>(val: any, typ: any): T {
    return transform(val, typ, jsonToJSProps);
}

function uncast<T>(val: T, typ: any): any {
    return transform(val, typ, jsToJSONProps);
}

function l(typ: any) {
    return { literal: typ };
}

function a(typ: any) {
    return { arrayItems: typ };
}

function u(...typs: any[]) {
    return { unionMembers: typs };
}

function o(props: any[], additional: any) {
    return { props, additional };
}

function m(additional: any) {
    return { props: [], additional };
}

function r(name: string) {
    return { ref: name };
}

const typeMap: any = {
    "SkinrSlotCategorie": o([
        { json: "_key", js: "_key", typ: 0 },
        { json: "name", js: "name", typ: "" },
    ], "any"),
};