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ARXML Serialization Rules, AUTOSAR(128) 22-11, FO, No.779

Last updated at Posted at 2022-11-30

ARXML Serialization Rules, No.779, 2021-11
https://www.autosar.org/fileadmin/standards/R22-11/FO/AUTOSAR_TPS_ARXMLSerializationRules.pdf

AUTOSAR R21-11記事一覧はこちら。

AUTOSAR 21-11, 42文書読んだ。2022年5月中に半分到達予定。
https://qiita.com/kaizen_nagoya/items/648b32867635993410c8

AUTOSAR R21-11(0) 仕様ダウンロード一覧。単語帳。参考文献資料作成
https://qiita.com/kaizen_nagoya/items/9b3a1b9b8d1e8d7e288e

用語(terms)

term definition
Class The name of the class as defined in the UML model.
Package The UML package the class is defined in. This is only listed to help locating the class in the overall meta model.
Note The comment the modeler gave for the class (class note). Stereotypes and UML tags of the class are also denoted here.
Base Classes If applicable, the list of direct base classes. The headers in the table have the following meaning:
Attribute The name of an attribute of the class. Note that AUTOSAR does not distinguish between class attributes and owned association ends.
Type The type of an attribute of the class.
Mul. The assigned multiplicity of the attribute, i.e. how many instances of the given data type are associated with the attribute.
Kind Specifies, whether the attribute is aggregated in the class (aggr aggregation), an UML attribute in the class (attr primitive attribute), or just referenced by it (ref reference). Instance references are also indicated (iref instance reference) in this field.
Note The comment the modeler gave for the class attribute (role note). Stereotypes and UML tags of the class are also denoted here.
Artifact This is a Work Product Definition that provides a description and definition for tangible work product types. Artifacts may be composed of other artifacts ([12]). At a high level, an artifact is represented as a single conceptual file.
AUTOSAR Tool This is a software tool which supports one or more tasks defined as AUTOSAR tasks in the methodology. Depending on the supported tasks, an AUTOSAR tool can act as an authoring tool, a converter tool, a processor tool or as a combination of those (see separate definitions).
AUTOSAR Authoring Tool An AUTOSAR Tool used to create and modify AUTOSAR XML Descriptions. Example: System Description Editor.
AUTOSAR Converter Tool An AUTOSAR Tool used to create AUTOSAR XML files by converting information from other AUTOSAR XML files. Example: ECU Flattener
AUTOSAR Definition This is the definition of parameters which can have values. One could say that the parameter values are Instances of the definitions. But in the meta model hierarchy of AUTOSAR, definitions are also instances of the meta model and therefore considered as a description. Examples for AUTOSAR definitions are: EcucParameterDef, PostBuildVariantCriterion, SwSystemconst.
AUTOSAR XML Description In AUTOSAR this means "filled Template". In fact an AUTOSAR XML description is the XML representation of an AUTOSAR model. The AUTOSAR XML description can consist of several files. Each individual file represents an AUTOSAR partial model and shall validate successfully against the AUTOSAR XML schema.
AUTOSAR Meta-Model This is an UML2.0 model that defines the language for describing AUTOSAR systems. The AUTOSAR meta-model is an UML representation of the AUTOSAR templates. UML2.0 class diagrams are used to describe the attributes and their interrelationships. Stereotypes, UML tags and OCL expressions (object constraint language) are used for defining specific semantics and constraints.
AUTOSAR Meta-Model Tool The AUTOSAR Meta-Model Tool is the tool that generates different views (class tables, list of constraints, diagrams, XML Schema etc.) on the AUTOSAR meta-model.
AUTOSAR Model This is a representation of an AUTOSAR product. The AUTOSAR model represents aspects suitable to the intended use according to the AUTOSAR methodology. Strictly speaking, this is an instance of the AUTOSAR meta-model. The information contained in the AUTOSAR model can be anything that is representable according to the AUTOSAR meta-model.
AUTOSAR Partial Model In AUTOSAR, the possible partitioning of models is marked in the meta-model by atpSplitable. One partial model is represented in an AUTOSAR XML description by one file. The partial model does not need to fulfill all semantic constraints applicable to an AUTOSAR model.
AUTOSAR Processor Tool An AUTOSAR Tool used to create non-AUTOSAR files by processing information from AUTOSAR XML files. Example: RTE Generator
AUTOSAR Specification Element An AUTOSAR Specification Element is a named element that is part of an AUTOSAR specification. Examples: requirement, constraint, specification item, class or attribute in the meta model, methodology, deliverable, methodology activity, model element, bsw module etc.
AUTOSAR Template The term "Template" is used in AUTOSAR to describe the format different kinds of descriptions. The term template comes from the idea, that AUTOSAR defines a kind of form which shall be filled out in order to describe a model. The filled form is then called the description. In fact the AUTOSAR templates are now defined as a meta-model.
AUTOSAR Validation Tool A specialized AUTOSAR Tool which is able to check an AUTOSAR model against the rules defined by a profile.
AUTOSAR XML Schema This is a W3C XML schema that defines the language for exchanging AUTOSAR models. This Schema is derived from the AUTOSAR meta-model. The AUTOSAR XML Schema defines the AUTOSAR data exchange format.
Blueprint This is a model from which other models can be derived by copy and refinement. Note that in contrast to meta model resp. types, this process is not an instantiation.
Instance Generally this is a particular exemplar of a model or of a type.
Life Cycle Life Cycle is the course of development/evolutionary stages of a model element during its life time.
Meta-Model This defines the building blocks of a model. In that sense, a Meta-Model represents the language for building models.
Meta-Data This includes pertinent information about data, including information about the authorship, versioning, access-rights, timestamps etc.
Model A Model is an simplified representation of reality. The model represents the aspects suitable for an intended purpose.
Partial Model This is a part of a model which is intended to be persisted in one particular artifact.
Pattern in GST This is an approach to simplify the definition of the meta model by applying a model transformation. This transformation creates an enhanced model out of an annotated model.
Profile Authoring Support Data Data that is used for efficient authoring of a profile. E.g. list of referable constraints, meta-classes, meta-attributes or other reusable model assets (blueprints)
Profile Authoring Tool A specialized AUTOSAR Tool which focuses on the authoring of profiles for data exchange points. It e.g. provides support for the creation of profiles from scratch, modification of existing profiles or composition of existing profiles.
Profile Compatibility Checker Tool A specialized AUTOSAR Tool which focuses on checking the compatibility of profiles for data exchange. Note that this compatibility check includes manual compatibility checks by engineers and automated assistance using more formal algorithms.
Profile Consistency Checker Tool A specialized AUTOSAR Tool which focuses on checking the consistency of profiles.
Property A property is a structural feature of an object. As an example a “connector” has the properties “receive port” and “send port” Properties are made variant by the atpVariation.
Prototype This is the implementation of a role of a type within the definition of another type. In other words a type may contain Prototypes that in turn are typed by "Types". Each one of these prototypes becomes an instance when this type is instantiated.
Type A type provides features that can appear in various roles of this type.
Value This is a particular value assigned to a “Definition”.
Variability Variability of a system is its quality to describe a set of variants. These variants are characterized by variant specific property settings and / or selections. As an example, such a system property selection manifests itself in a particular “receive port” for a connection. This is implemented using the atpVariation.
Variant A system variant is a concrete realization of a system, so that all its properties have been set respectively selected. The software system has no variability anymore with respect to the binding time. This is implemented using EvaluatedVariantSet.
Variation Binding A variant is the result of a variation binding process that resolves the variability of the system by assigning particular values/selections to all the system’s properties. This is implemented by VariationPoint.
Variation Binding Time The variation binding time determines the step in the methodology at which the variability given by a set of variable properties is resolved. This is implemented by vh.LatestBindingtime at the related properties.
Variation Definition Time The variation definition time determines the step in the methodology at which the variation points are defined.
Variation Point A variation point indicates that a property is subject to variation. Furthermore, it is associated with a condition and a binding time which define the system context for the selection / setting of a concrete variant. This is implemented by VariationPoint.

英日

日本語は仮訳

no. count word 日本語
1 957 the その
2 911 xml Extensible Markup Language(短縮名)
3 790 xsd XML Schema Definition(短縮名)
4 527 of
5 518 type
6 475 element 要素
7 385 schema 図式
8 359 autosar AUTomotive Open System Architecture(短縮名)
9 312 name 名前
10 295 is です
11 250 production 製造
12 243 rules 規則
13 242 to
14 225 property 財産
15 216 b b
16 187 in の中に
17 177 tps_xmlspr_ tps_xmlspr_
18 174 a 一つの
19 168 complex 複雑
20 157 c c
21 152 for にとって
22 151 role 役割
23 140 class
24 136 wrapper 包み
25 129 and
26 129 by
27 129 minoccurs minoccurs
28 124 occurs 発生する
29 123 max 最大
30 119 are です
31 117 multiplicity 多様性
32 116 document 資料
33 114 r r
34 110 choice 選択
35 110 if もし
36 109 example
37 109 model 模型
38 105 ref reference(短縮名)
39 100 create 作る
40 99 TRUE
41 98 meta
42 98 not いいえ
43 97 elements 要素
44 95 id identifier, 識別子(短縮名)
45 92 representation 表現
46 91 autosar_tps_xml autosar_tps_xml
47 91 fo foundation(短縮名)
48 90 FALSE
49 88 ar AUTOSAR(短縮名)
50 87 attribute 属性
51 86 value 価値
52 86 with
53 85 all すべて
54 84 an 一つの
55 81 this これ
56 80 that それ
57 79 defined 定義した
58 79 instance 実例
59 75 tagged タグ付き
60 72 att attribute(短縮名)
61 72 uml Unified Modeling Language(短縮名)
62 71 composite 複合
63 70 properties 特性
64 64 upper 上の
65 63 string 文字列
66 62 be です
67 61 description 説明
68 60 group
69 56 figure
70 55 lower 低い
71 53 as なので
72 50 types
73 49 default 既定値
74 49 sequence 順序
75 46 d d
76 46 on の上
77 46 then それから
78 46 tr_aprxml_ tr_aprxml_
79 45 values
80 44 see 見る
81 44 set 設定する
82 42 created 作った
83 42 no いいえ
84 41 rule 規則
85 41 stereo 立体
86 39 reference 参照
87 38 component 成分
88 38 target 目標
89 37 aggregation 集約
90 37 pattern 類型
91 37 unbounded 無制限
92 36 association 協会
93 36 mapping 対応付け
94 36 primitive 原生的
95 35 configuration 構成
96 35 or または
97 35 used 使った
98 34 o o
99 33 applies 適用する
100 33 represented 表現

minoccurs
https://www.techscore.com/tech/XML/XML_Schema/Schema2/2_4

maxoccursは計数せずに分解しているのか未確認。

参考(reference)

 
Glossary も 参考に入れましょう。
https://www.autosar.org/fileadmin/standards/foundation/22-11/AUTOSAR_TR_Glossary.pdf

[1] AUTOSAR XML Schema Production Rules
AUTOSAR_TPS_XMLSchemaProductionRules
[2] Software Component Template
AUTOSAR_TPS_SoftwareComponentTemplate
[3] System Template
AUTOSAR_TPS_SystemTemplate
[4] Specification of ECU Configuration
AUTOSAR_TPS_ECUConfiguration
[5] Meta Model
AUTOSAR_MMOD_MetaModel
[6] Meta Model-generated XML Schema
AUTOSAR_MMOD_XMLSchema
[7] Standardization Template
AUTOSAR_TPS_StandardizationTemplate
[8] Extensible Markup Language (XML), v1.0
http://www.w3.org/TR/REC-xml/
[9] XML Schema 1.0
http://www.w3.org/TR/xmlschema-1
[10] Generic Structure Template
AUTOSAR_TPS_GenericStructureTemplate
[11] Unified Modeling Language: Superstructure, Version 2.0, OMG Available Specification, ptc/05-07-04
http://www.omg.org/cgi-bin/apps/doc?formal/05-07-04
[12] Software Process Engineering Meta-Model Specification
http://www.omg.org/spec/SPEM/2.0/

Countdown Calendar 2022

今年企画した6つのCountdown Calendarと、それぞれの記事一つをご紹介します。

AUTOSAR Countdown Calendar 2022
https://qiita.com/advent-calendar/2022/autosar

AUTOSAR References to ISO, IEC, ITU, IEEE, RFC and SEA etc.
https://qiita.com/kaizen_nagoya/items/d7d252211e10a79516df

Automotive Handbook Countdown Calendar 2022
https://qiita.com/advent-calendar/2022/automotivehandbook

Basic principles, ボッシュ自動車handbook(英語)11版まとめ<2>
https://qiita.com/kaizen_nagoya/items/24a1ba5da3d09b2a95d1

2022 いいねをいただいた記事ランキング(O.K.版) Countdown Calendar 2022
https://qiita.com/advent-calendar/2022/goods

2022年1月下旬 いいねをいただいた記事 16
https://qiita.com/kaizen_nagoya/items/0ee589a8edaeab24fd2a

CDCale(O.K.) Countdown Calendar 2022
https://qiita.com/advent-calendar/2022/adventcalendar2022

「会議は15分未満」に。小耳にはさんだ話。
https://qiita.com/kaizen_nagoya/items/510c47c5d1e8d03145db

ABC language (O.K.版) Calendar 2022
https://qiita.com/advent-calendar/2022/abc_ok

LLVMソースコードのコンパイルをしようと思ってハマった罠とそこから脱出するための努力
https://qiita.com/kaizen_nagoya/items/16f270e42b947756ced3

ABC maker(O.K版)Calendar 2022
https://qiita.com/advent-calendar/2022/abcmaker

JAXA/IPA クリティカルソフトウェアワークショップ WOCS言語関連発表(改定版)
https://qiita.com/kaizen_nagoya/items/4789832baf494cb74626

CountdownCalendar2022 報告
https://qiita.com/kaizen_nagoya/items/5b4b99cb9ad571f4094b

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AUTOSAR Abstract Platformへの道(詳細編)
https://qiita.com/kaizen_nagoya/items/cb217133884fa0a2c704

2023年1月 記事数一覧
https://qiita.com/kaizen_nagoya/items/78153968c5de76a7fd83

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https://qiita.com/kaizen_nagoya/items/3ffdc82caee3a325d1d7

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https://qiita.com/kaizen_nagoya/items/1fee270be00ef90ca4ec

三方良し Udemy 車載LAN入門講座 CAN通信編
https://qiita.com/kaizen_nagoya/items/bed038c52510fea72c0a

詳解 車載ネットワーク CAN, CAN FD, LIN, CXPI, Ethernetの仕組みと設計のために(1) 著者  <エンジニア夏休み企画 読書感想文>
https://qiita.com/kaizen_nagoya/items/e9971698a108c3dba794

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更新資料 

Abstract Platform, Vehicle Modelへの対応版
ARXML Serialization Rules, No.779, FO, AUTOSAR 22-11 新
https://qiita.com/kaizen_nagoya/items/6b083762e2e835f191f0

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4月以降、せっせとリンクリストを作り、統計を取って確率を説明しようとしている。
2025年2月末を目標にしている。

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https://qiita.com/kaizen_nagoya/items/f77520d378d33451d6fe

仮説(0)一覧(目標100現在40)
https://qiita.com/kaizen_nagoya/items/f000506fe1837b3590df

音楽 一覧(0)
https://qiita.com/kaizen_nagoya/items/b6e5f42bbfe3bbe40f5d

@kazuo_reve 新人の方によく展開している有益な情報」確認一覧
https://qiita.com/kaizen_nagoya/items/b9380888d1e5a042646b

Qiita(0)Qiita関連記事一覧(自分)
https://qiita.com/kaizen_nagoya/items/58db5fbf036b28e9dfa6

鉄道(0)鉄道のシステム考察はてっちゃんがてつだってくれる
https://qiita.com/kaizen_nagoya/items/26bda595f341a27901a0

安全(0)安全工学シンポジウムに向けて: 21
https://qiita.com/kaizen_nagoya/items/c5d78f3def8195cb2409

一覧の一覧( The directory of directories of mine.) Qiita(100)
https://qiita.com/kaizen_nagoya/items/7eb0e006543886138f39

Ethernet 記事一覧 Ethernet(0)
https://qiita.com/kaizen_nagoya/items/88d35e99f74aefc98794

Wireshark 一覧 wireshark(0)、Ethernet(48)
https://qiita.com/kaizen_nagoya/items/fbed841f61875c4731d0

線網(Wi-Fi)空中線(antenna)(0) 記事一覧(118/300目標)
https://qiita.com/kaizen_nagoya/items/5e5464ac2b24bd4cd001

OSEK OS設計の基礎 OSEK(100)
https://qiita.com/kaizen_nagoya/items/7528a22a14242d2d58a3

Error一覧 error(0)
https://qiita.com/kaizen_nagoya/items/48b6cbc8d68eae2c42b8

++ Support(0) 
https://qiita.com/kaizen_nagoya/items/8720d26f762369a80514

Coding(0) Rules, C, Secure, MISRA and so on
https://qiita.com/kaizen_nagoya/items/400725644a8a0e90fbb0

coding (101) 一覧を作成し始めた。omake:最近のQiitaで表示しない5つの事象
https://qiita.com/kaizen_nagoya/items/20667f09f19598aedb68

プログラマによる、プログラマのための、統計(0)と確率のプログラミングとその後
https://qiita.com/kaizen_nagoya/items/6e9897eb641268766909

なぜdockerで機械学習するか 書籍・ソース一覧作成中 (目標100)
https://qiita.com/kaizen_nagoya/items/ddd12477544bf5ba85e2

言語処理100本ノックをdockerで。python覚えるのに最適。:10+12
https://qiita.com/kaizen_nagoya/items/7e7eb7c543e0c18438c4

プログラムちょい替え(0)一覧:4件
https://qiita.com/kaizen_nagoya/items/296d87ef4bfd516bc394

Python(0)記事をまとめたい。
https://qiita.com/kaizen_nagoya/items/088c57d70ab6904ebb53

官公庁・学校・公的団体(NPOを含む)システムの課題、官(0)
https://qiita.com/kaizen_nagoya/items/04ee6eaf7ec13d3af4c3

「はじめての」シリーズ  ベクタージャパン 
https://qiita.com/kaizen_nagoya/items/2e41634f6e21a3cf74eb

AUTOSAR(0)Qiita記事一覧, OSEK(75)
https://qiita.com/kaizen_nagoya/items/89c07961b59a8754c869

プログラマが知っていると良い「公序良俗」
https://qiita.com/kaizen_nagoya/items/9fe7c0dfac2fbd77a945

LaTeX(0) 一覧 
https://qiita.com/kaizen_nagoya/items/e3f7dafacab58c499792

自動制御、制御工学一覧(0)
https://qiita.com/kaizen_nagoya/items/7767a4e19a6ae1479e6b

Rust(0) 一覧 
https://qiita.com/kaizen_nagoya/items/5e8bb080ba6ca0281927

100以上いいねをいただいた記事16選
https://qiita.com/kaizen_nagoya/items/f8d958d9084ffbd15d2a

小川清最終講義、最終講義(再)計画, Ethernet(100) 英語(100) 安全(100)
https://qiita.com/kaizen_nagoya/items/e2df642e3951e35e6a53

<この記事は個人の過去の経験に基づく個人の感想です。現在所属する組織、業務とは関係がありません。>

文書履歴(document history)

ver. 0.01 初稿  20221201
ver. 0.02 URL追記 20230131

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