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5.3.3 Testing countersignature
This clause defines the test assertions for counter-signature attribute presence in CMS signature. TA id: CAdES_BB/CS/1 Normative source: [1] – Clause 5.2.7 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For a signer, CMS signature includes countersignature attribute. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.4 Testing content-reference
This clause defines the test assertions for content-reference attribute presence in CMS signature. TA id: CAdES_BB/CR/1 Normative source: [1] – Clause 5.2.11 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include content-reference attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.5 Testing content-identifier
This clause defines the test assertions for content-identifier attribute presence in CMS signature. TA id: CAdES_BB/CI/1 Normative source: [1] – Clause 5.2.12 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include content-identifier attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 13
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5.3.6 Testing content-hints
This clause defines the test assertions for content-hints attribute presence in CMS signature. TA id: CAdES_BB/CH/1 Normative source: [1] – Clause 5.2.4.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include content-hints attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.7 Testing commitment-type-indication
This clause defines the test assertions for commitment-type-indication attribute presence in CMS signature. TA id: CAdES_BB/CTI/1 Normative source: [1] – Clause 5.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include commitment-type-indication attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.8 Testing signer-location
This clause defines the test assertions for signer-location attribute presence in CMS signature. TA id: CAdES_BB/SL/1 Normative source: [1] – Clause 5.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include signer-location attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.9 Testing signer-attributes-v2
This clause defines the test assertions for signer-attributes-v2 attribute presence in CMS signature. TA id: CAdES_BB/SA/1 Normative source: [1] – Clause 5.2.6 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include signer-attributes-v2 attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.10 Testing content-time-stamp
This clause defines the test assertions for content-time-stamp attribute presence in CMS signature. TA id: CAdES_BB/CTS/1 Normative source: [1] – Clause 5.2.8 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include content-time-stamp attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 14
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5.3.11 Testing mime-type
This clause defines the test assertions for mime-type attribute presence in CMS signature. TA id: CAdES_BB/MT/1 Normative source: [1] – Clause 5.2.4.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include mime-type attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.12 Testing signature-policy-identifier
This clause defines the test assertions for signature-policy-identifier attribute presence in CMS signature. TA id: CAdES_BB/SPID/1 Normative source: [1] – Clause 5.2.9 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications include signature-policy-identifier attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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5.3.13 Testing signature-policy-store
This clause defines the test assertions for signature-policy-store attribute presence in CMS signature. TA id: CAdES_BB/SPS/1 Normative source: [1] – Clause 5.2.10 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Prerequisites: CAdES_BB/SPID/1 Predicate: For new signatures, applications include signature-policy-store attribute in CMS signature. Prescription level: permitted Tag: CAdES baseline and extended signatures.
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6 Testing conformance to CAdES-B-T signatures
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6.1 General
CAdES-B-T signatures as specified in [1] are built on CAdES-B-B signatures. In consequence, CAdES-B-T signatures shall fulfill the requirements specified in clause 5 of the present document and all the requirements defined in clause 6.2. The following clause specifies assertions for testing those constraints imposed or permitted by the CAdES-B-T signatures specification [1] to the CMS Signature elements.
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6.2 Testing CAdES attributes
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6.2.1 Testing SignatureTimeStamp
This clause defines the test assertion for SignatureTimeStamp attribute presence in CMS signature. TA id: CAdES_BB/STS/1 Normative source: [1] – Clause 5.3 Target: CAdES signature generator claiming conformance to CAdES-B-T signatures as specified in [1] or to CAdES-E-T, -E-C, -E-X, -E-X-Long, -E-X-L, -E-A extended signatures as specified in [2] Predicate: For new signatures, applications include signature-time-stamp attribute in CAdES signature. Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 15
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7 Testing conformance to CAdES-B-LT signatures
7.1 General CAdES-B-LT signatures as specified in [1] are built on CAdES-B-T signatures. In consequence, CAdES-B-LT signatures shall fulfill the requirements specified in clauses 5 and 6 of the present document and all the requirements defined in clause 7.2. The following clauses specify assertions for testing those constraints imposed or permitted by the CAdES-B-LT signatures specification [1] to the CMS Signature elements.
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7.2 Testing CAdES attributes
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7.2.1 Testing Certificate and Revocation references and values
This clause defines the test assertion for certificate, attribute certificate and revocation references and values attributes presence in CAdES signatures. TA id: CAdES_BS/CCR/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include complete-certificate–references attribute in CAdES signature. Prescription level: mandatory Tag: CAdES-B-LT baseline signatures. TA id: CAdES_BS/CRR/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include complete-revocation–references attribute in CAdES signature. Prescription level: mandatory Tag: CAdES-B-LT baseline signatures. TA id: CAdES_BS/ACR/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include attribute-certificate–references attribute in CAdES signature. Prescription level: mandatory Tag: CAdES-B-LT baseline signatures. TA id: CAdES_BS/ARR/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include attribute-revocation–references attribute in CAdES signature. Prescription level: mandatory Tag: CAdES-B-LT baseline signatures. TA id: CAdES_BS/CV/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include certificate–values attribute in CAdES signature. Prescription level: mandatory Tag: CAdES baseline signatures. TA id: CAdES_BS/RV/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include revocation-values attribute in CAdES signature. Prescription level: mandatory Tag: CAdES-B-LT signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 16
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7.2.2 Testing time-stamp attributes
This clause defines the test assertion for time-stamp attributes presence in CAdES signature. TA id: CAdES_BS/ESCTS/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include CAdES-C-time-stamp attribute in CAdES signature. Prescription level: mandatory Tag: CAdES-B-LT signatures. TA id: CAdES_BS/TSCCR/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications do not include time-stamped-certs-crls-references attribute in CAdES signature. Prescription level: mandatory Tag: CAdES-B-LT signatures.
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7.2.3 Testing SignedData.certificates attribute
This clause defines the test assertions for SignedData.certificates attribute. TA id: CAdES_BS/SDC/2 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications include all certificates needed for path building in the SignedData.certificates attribute. Prescription level: mandatory Tag: CAdES-B-LT signatures.
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7.2.4 Testing revocation values
This clause defines the test assertions for SignedData.crls attribute. TA id: CAdES_BS/SDCRL/1 Normative source: [1] – Clause 6.3 Target: CAdES signature generator claiming conformance to CAdES-B-LT signatures as specified in [1] Predicate: For new signatures, applications include the full set of revocation data (CRL or OCSP responses) that have been used in the validation of the signature itself in the SignedData.crls attribute. Prescription level: mandatory Tag: CAdES-B-LT signatures.
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8 Testing conformance to CAdES-B-LTA signatures
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8.1 General
CAdES-B-LTA signatures as specified in [1] are built on CAdES-B-LT signatures. In consequence, CAdES-B-LTA signatures shall fulfill the requirements specified in clauses 5, 6 and 7 of the present document and all the requirements defined in clause 8.2. The following clauses specify assertions for testing those constraints imposed or permitted by the CAdES-B-LTA signatures specification [1] to the CMS Signature elements. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 17
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8.2 Testing CAdES attributes
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8.2.1 Testing ArchiveTimeStampV3
This clause defines the test assertion for archive-time-stamp-v3 attribute presence in CAdES signature. TA id: CAdES_BB/ATSV3/1 Normative source: [1] – Clause 5.5.3 Target: CAdES signature generator claiming conformance to CAdES-B-LTA signatures as specified in [1] or to CAdES-E-A extended signatures as specified in [2] Predicate: For new signatures, applications include archive-time-stamp-v3 attribute in CAdES signature. Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_BB/ATSHI/1 Normative source: [1] – Clause 5.5.2 Target: CAdES signature generator claiming conformance to CAdES-B-LTA signatures as specified in [1] or to CAdES-E-A extended signatures as specified in [2] Prerequisites: CAdES_BS/ATSV3/1 Predicate: For new signatures, applications include ats-hash-index-v3 attribute in archive-time- stamp-v3 attribute in CAdES signature. Prescription level: mandatory Tag: CAdES baseline and extended signatures.
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8.2.2 Testing time-stamp attributes
This clause defines the test assertion for time-stamp attributes presence in CAdES signature. TA id: CAdES_BB/ATS/1 Normative source: [1] Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications do not include archive-time-stamp (OID 1.2.840.113549.1.9.16.2.27) attribute in CAdES signature. Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_BB/ATSV2/1 Normative source: [1] – Clause A.2.4 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications do not include archive-time-stampV2 (OID 1.2.840.113549.1.9.16.2.48) attribute in CAdES signature. Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_BB/LTV/1 Normative source: [1] – Clause A.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: For new signatures, applications do not include long-term-validation attribute in CAdES signature. Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 18 Annex A (normative): Test assertions derived from attributes definition A.1 General This annex specifies test assertions focused on testing the structure of the attributes specified by CAdES [1] and CMS [3]. A.2 Testing CMS defined attributes A.2.1 Testing content-type attribute TA id: CAdES_ASN/CTY/1 Normative source: [3] – Clause 11.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the content-type attribute id-contentType OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9) 3 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CTY/2 Normative source: [3] – Clause 11.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: Content-type attribute values have ASN.1 type OBJECT IDENTIFIER Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.2 Testing data content-type TA id: CAdES_ASN/CTY/3 Normative source: [3] – Clause 4 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the data content type id-data OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs7(7) 1 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.3 Testing signed-data content-type TA id: CAdES_ASN/CTY/4 Normative source: [3] – Clause 5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the signed-data content type id-signedData OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs7(7) 2 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.4 Testing message-digest attribute TA id: CAdES_ASN/MD/1 Normative source: [3] – Clause 11.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the message-digest attribute id-messageDigest OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9) 4 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 19 TA id: CAdES_ASN/MD/2 Normative source: [3] – Clause 11.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: Message-digest attribute values have ASN.1 type OCTET STRING Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.5 Testing CMSVersion TA id: CAdES_ASN/CMSV/1 Normative source: [3] – Clause 10.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CMSVersion values have ASN.1 type INTEGER in the set {1, 2, 3, 4, 5} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.6 Testing DigestAlgorithmIdentifiers TA id: CAdES_ASN/DAI/1 Normative source: [3] – Clause 10.1.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: DigestAlgorithmIdentifiers values have ASN.1 type SET of SEQUENCE in which every sequence includes, at least, an OBJECT IDENTIFIER identifying a cryptographic algorithm Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.7 Testing SignatureAlgorithmIdentifiers TA id: CAdES_ASN/SAI/1 Normative source: [3] – Clause 10.1.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SignatureAlgorithmIdentifiers values have ASN.1 type SET of SEQUENCE in which every sequence includes, at least, an OBJECT IDENTIFIER identifying a cryptographic algorithm Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.8 Testing EncapsulatedContentInfo TA id: CAdES_ASN/ECI/1 Normative source: [3] – Clause 5.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: EncapsulatedContentInfo has ASN.1 type SEQUENCE including an OBJECT IDENTIFIER, identifying the content type, and, optionally, an OCTET STRING Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.9 Testing SignedData.certificates TA id: CAdES_ASN/SDC/1 Normative source: [3] – Clause 10.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SignedData.certificates values have ASN.1 type SET of CHOICES Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 20 A.2.10 Testing SignedData.crls TA id: CAdES_ASN/SDCRL/1 Normative source: [3] – Clause 10.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SignedData.crls values have ASN.1 type SET of CHOICES Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.11 Testing SignerInfo attribute TA id: CAdES_ASN/SI/1 Normative source: [3] – Clause 5.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SignerInfo has ASN.1 type SEQUENCE including CMSVersion, SignerIdentifier, DigestAlgorithmIdentifier, optional SignedAttributes, SignatureAlgorithmIdentifier, SignatureValue and optional UnsignedAttributes attributes. Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.2.12 Testing AlgorithmIdentifier TA id: CAdES_ASN/AI/1 Normative source: [3] – Clause 10.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: AlgorithmIdentifier values have ASN.1 type SEQUENCE including at least, an OBJECT IDENTIFIER identifying a cryptographic algorithm Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3 Testing basic attributes for CAdES signatures A.3.1 Testing signing-time attribute TA id: CAdES_ASN/STI/1 Normative source: [3] – Clause 11.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the signing-time attribute id-signingTime OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9) 5 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/STI/2 Normative source: [3] – Clause 11.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: Signing-time attribute values have ASN.1 type CHOICE of {UTCTime, GeneralizedTime} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/STI/3 Normative source: [3] – Clause 11.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: Dates between 1 January 1950 and 31 December 2049 (inclusive) are encoded as UTCTime. Any dates with year values before 1950 or after 2049 are encoded as GeneralizedTime Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 21 A.3.2 Testing ESS signing-certificate TA id: CAdES_ASN/ESS/1 Normative source: [1] – Clause 5.2.2.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the ESS signing-certificate attribute id-aa- signingCertificate OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9) smime(16) id-aa(2) 12 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ESS/2 Normative source: [1] – Clause 5.2.2.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ESS signing-certificate attribute values have ASN.1 type SEQUENCE of {SEQUENCE of ESSCertID, SEQUENCE of PolicyInformation OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ESS/3 Normative source: [1] – Clause 5.2.2.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ESSCertID values have ASN.1 type SEQUENCE of {Hash, IssuerSerial OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ESS/4 Normative source: [1] – Clause 5.2.2.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: Hash values have ASN.1 type OCTET STRING Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ESS/5 Normative source: [1] – Clause 5.2.2.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: IssuerSerial values have ASN.1 type SEQUENCE of {GeneralNames, CertificateSerialNumber} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.3 Testing ESS signing-certificate-v2 TA id: CAdES_ASN/ESSv2/1 Normative source: [1] – Clause 5.2.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the ESS signing-certificate-v2 attribute id- aa-signingCertificateV2 OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9) smime(16) id-aa(2) 47 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ESSv2/2 Normative source: [1] – Clause 5.2.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ESS signing-certificate-v2 attribute values have ASN.1 type SEQUENCE of {SEQUENCE of ESSCertIDv2, SEQUENCE of PolicyInformation OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ESSv2/3 Normative source: [1] – Clause 5.2.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ESSCertIDv2 values have ASN.1 type SEQUENCE of {AlgorithmIdentifier, Hash, IssuerSerial OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 22 A.3.4 Testing countersignature TA id: CAdES_ASN/CS/1 Normative source: [3] – Clause 11.4 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the countersignature attribute id- countersignature OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9) 6 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CS/2 Normative source: [3] – Clause 11.4 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: countersignature attribute values have ASN.1 type SignerInfo Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.5 Testing content-reference TA id: CAdES_ASN/CR/1 Normative source: [1] – Clause 5.2.11 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the content-reference attribute id-aa- contentReference OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs- 9(9) smime(16) id-aa(2) 10 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CR/2 Normative source: [1] – Clause 5.2.11 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: contentReference attribute values have ASN.1 type SEQUENCE of {ContentType, ContentIdentifier, OCTET STRING} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.6 Testing content-identifier TA id: CAdES_ASN/CI/1 Normative source: [1] – Clause 5.2.12 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the content-identifier attribute id-aa- contentIdentifier OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs- 9(9) smime(16) id-aa(2) 7 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CI/2 Normative source: [1] – Clause 5.2.12 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: contentIdentifier attribute values have ASN.1 type OCTET STRING Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 23 A.3.7 Testing content-hints TA id: CAdES_ASN/CH/1 Normative source: [1] – Clause 5.2.4.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the content-hints attribute id-aa-contentHint OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id- aa(2) 4} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CH/2 Normative source: [1] – Clause 5.2.4.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: contentHint attribute values have ASN.1 type SEQUENCE of {UTF8String, ContentType} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.8 Testing commitment-type-indication TA id: CAdES_ASN/CTI/1 Normative source: [1] – Clause 5.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the commitment-type-indication attribute id- aa-ets-commitmentType OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 16} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CTI/2 Normative source: [1] – Clause 5.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CommitmentTypeIndication attribute values have ASN.1 type SEQUENCE of {CommitmentTypeIdentifier, SEQUENCE of CommitmentTypeQualifier OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CTI/3 Normative source: [1] – Clause 5.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CommitmentTypeIdentifier attribute values have ASN.1 type OBJECT IDENTIFIER Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CTI/4 Normative source: [1] – Clause 5.2.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CommitmentTypeQualifier attribute values have ASN.1 type SEQUENCE of {OBJECT IDENTIFIER, Qualifier OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.9 Testing signer-location TA id: CAdES_ASN/SL/1 Normative source: [1] – Clause 5.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the signer-location attribute id-aa-ets- signerLocation OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs- 9(9) smime(16) id-aa(2) 17 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SL/2 Normative source: [1] – Clause 5.2.5 ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 24 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SignerLocation attribute values have ASN.1 type SEQUENCE of { countryName [0] DirectoryString OPTIONAL, localityName [1] DirectoryString OPTIONAL, postalAddress [2] PostalAddress OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SL/3 Normative source: [1] – Clause 5.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: PostalAddress attribute values have ASN.1 type SEQUENCE SIZE(1..6) OF DirectoryString Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SL/4 Normative source: [1] – Clause 5.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: At least one of the fields countryName, localityName or postalAddress shall be present Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.10 Testing signer-attributes-v2 TA id: CAdES_ASN/SA/1 Normative source: [1] – Clause 5.2.6.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the signer-attributes-v2 attribute id-aa-ets- signerAttrV2 OBJECT IDENTIFIER ::= { itu-t(0) identified-organization(4) etsi(0) cades(19122) attributes(1) 1 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SA/2 Normative source: [1] – Clause 5.2.6.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: signerAttrV2 attribute values have ASN.1 type SEQUENCE of {claimedAttributes [0] ClaimedAttributes OPTIONAL, certifiedAttributesV2 [1] CertifiedAttributesV2 OPTIONAL, signedAssertions [2] SignedAssertions OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SA/3 Normative source: [1] – Clause 5.2.6.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ClaimedAttributes attribute values have ASN.1 type SEQUENCE of Attribute Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SA/4 Normative source: [1] – Clause 5.2.6.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CertifiedAttributesV2 attribute values have ASN.1 type SEQUENCE OF CHOICE {attributeCertificate [0] AttributeCertificate, otherAttributeCertificate [1] OtherAttributeCertificate} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SA/5 Normative source: [1] – Clause 5.2.6.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: Attribute attribute values have ASN.1 type SEQUENCE of {OBJECT IDENTIFIER, SET OF DirectoryString} Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 25 TA id: CAdES_ASN/SA/6 Normative source: [1] – Clause 5.2.6.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: AttributeCertificate attribute values have ASN.1 type SEQUENCE of {AttributeCertificateInfo, AlgorithmIdentifier, BIT STRING} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SA/7 Normative source: [1] – Clause 5.2.6.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: AttributeCertificateInfo attribute values have ASN.1 type SEQUENCE of {AttCertVersion, Holder, AttCertIssuer, AlgorithmIdentifier, CertificateSerialNumber, AttCertValidityPeriod, SEQUENCE OF Attribute, UniqueIdentifier OPTIONAL, Extensions OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.11 Testing content-time-stamp TA id: CAdES_ASN/CTS/1 Normative source: [1] – Clause 5.2.8 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the content-time-stamp attribute id-aa-ets- contentTimestamp OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs- 9(9) smime(16) id-aa(2) 20 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CTS/2 Normative source: [1] – Clause 5.2.8 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: contentTimestamp attribute values have ASN.1 type TimeStampToken Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.12 Testing mime-type TA id: CAdES_ASN/MT/1 Normative source: [1] – Clause 5.2.4.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the mime-type attribute id-aa-ets-mimeType OBJECT IDENTIFIER ::= { itu-t(0) identified-organization(4) etsi(0) electronic-signature-standard (1733) attributes(2) 1 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/MT/2 Normative source: [1] – Clause 5.2.4.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: mimeType attribute values have ASN.1 type UTF8String Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.13 Testing signature-policy-identifier TA id: CAdES_ASN/SPI/1 Normative source: [1] – Clause 5.2.9.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the signature-policy-identifier attribute id- aa-ets-sigPolicyId OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9) smime(16) id-aa(2) 15 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 26 TA id: CAdES_ASN/SPI/2 Normative source: [1] – Clause 5.2.9.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: sigPolicyId attribute values have ASN.1 type CHOICE {SignaturePolicyId, SignaturePolicyImplied -- not used in this version} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SPI/3 Normative source: [1] – Clause 5.2.9.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SignaturePolicyId attribute values have ASN.1 type SEQUENCE of {OBJECT IDENTIFIER, SigPolicyHash, SEQUENCE of SigPolicyQualifierInfo OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SPI/4 Normative source: [1] – Clause 5.2.9.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SigPolicyHash attribute values have ASN.1 type SEQUENCE of {AlgorithmIdentifier, OCTET STRING} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SPI/5 Normative source: [1] – Clause 5.2.9.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SigPolicyQualifierInfo attribute values have ASN.1 type SEQUENCE of {noticeToUser | pointerToSigPolSpec | sigPolDocSpecification} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.14 Testing signature-policy-store TA id: CAdES_ASN/SPS/1 Normative source: [1] – Clause 5.2.10 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the signature-policy-store attribute id-aa- ets-sigPolicyStore OBJECT IDENTIFIER ::= { itu-t(0) identified-organization(4) etsi(0) cades(19122) attributes(1) 3 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SPS/2 Normative source: [1] – Clause 5.2.10 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: sigPolicyStore attribute values have ASN.1 type SEQUENCE of {SPDocSpecification, SignaturePolicyDocument} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/SPS/3 Normative source: [1] – Clause 5.2.10 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: SignaturePolicyDocument attribute values have ASN.1 type CHOICE of {OCTET STRING, IA5String} Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 27 A.3.15 Testing signature-time-stamp TA id: CAdES_ASN/STS/1 Normative source: [1] – Clause 5.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the signature-time-stamp attribute id-aa- signatureTimeStampToken OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 14 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/STS/2 Normative source: [1] – Clause 5.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: signatureTimeStampToken attribute values have ASN.1 type TimeStampToken Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.16 Testing complete-certificate-references TA id: CAdES_ASN/CCR/1 Normative source: [1] – Clause A.1.1.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the complete-certificate-references attribute id-aa-ets-certificateRefs OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 21 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CCR/2 Normative source: [1] – Clause A.1.1.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CompleteCertificateRefs attribute values have ASN.1 type SEQUENCE of {SEQUENCE of {OtherHash, IssuerSerial OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CCR/3 Normative source: [1] – Clause A.1.1.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: OtherHash attribute values have ASN.1 type CHOICE of {OtherHashValue, OtherHashAlgAndValue} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CCR/4 Normative source: [1] – Clause A.1.1.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: OtherHashAlgAndValue attribute values have ASN.1 type SEQUENCE of {AlgorithmIdentifier, OtherHashValue} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CCR/5 Normative source: [1] – Clause A.1.1.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: OtherHashValue attribute values have ASN.1 type OCTET STRING Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 28 A.3.17 Testing complete-revocation-references TA id: CAdES_ASN/CRR/1 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the complete-revocation-references attribute id-aa-ets-revocationRefs OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 22 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/2 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CompleteRevocationRefs attribute values have ASN.1 type SEQUENCE of { SEQUENCE of { crlids [0] CRLListID OPTIONAL, ocspids [1] OcspListID OPTIONAL, otherRev [2] OtherRevRefs OPTIONAL}} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/3 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CRLListID attribute values have ASN.1 type SEQUENCE of {SEQUENCE of {SEQUENCE of {OtherHash, CrlIdentifier OPTIONAL}}} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/4 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CrlIdentifier attribute values have ASN.1 type SEQUENCE of {Name, UTCTime, INTEGER OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/5 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: Name attribute values have ASN.1 type CHOICE of {SEQUENCE of {SET SIZE (1..MAX) of AttributeTypeAndValue}} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/6 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: AttributeTypeAndValue attribute values have ASN.1 type SEQUENCE of {AttributeType, AttributeValue} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/7 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: OcspListID attribute values have ASN.1 type SEQUENCE of {SEQUENCE of {SEQUENCE of {OcspIdentifier, OtherHash OPTIONAL}}} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/8 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: OcspIdentifier attribute values have ASN.1 type SEQUENCE of {ResponderID, GeneralizedTime} Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 29 TA id: CAdES_ASN/CRR/9 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ResponderID attribute values have ASN.1 type CHOICE of {Name, KeyHash} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CRR/10 Normative source: [1] – Clause A.1.2.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: KeyHash attribute values have ASN.1 type OCTET STRING Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.18 Testing certificate-values TA id: CAdES_ASN/CV/1 Normative source: [1] – Clause A.1.1.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the certificate-values attribute id-aa-ets- certValues OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 23 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/CV/2 Normative source: [1] – Clause A.1.1.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: CertificateValues attribute values have ASN.1 type SEQUENCE of {Certificate} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.19 Testing revocation-values TA id: CAdES_ASN/RV/1 Normative source: [1] – Clause A.1.2.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the revocation-values attribute id-aa-ets- revocationValues OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs- 9(9) smime(16) id-aa(2) 24 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/RV/2 Normative source: [1] – Clause A.1.2.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: RevocationValues attribute values have ASN.1 type SEQUENCE of {crlVals [0] SEQUENCE OF CertificateList OPTIONAL, ocspVals [1] SEQUENCE OF BasicOCSPResponse OPTIONAL, otherRevVals [2] OtherRevVals OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.20 Testing CAdES-C-time-stamp TA id: CAdES_ASN/ESCTS/1 Normative source: [1] – Clause A.1.5.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the CAdES-C-time-stamp attribute id-aa-ets- escTimeStamp OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 25} Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 30 TA id: CAdES_ASN/ESCTS/2 Normative source: [1] – Clause A.1.5.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ESCTimeStampToken attribute values have ASN.1 type TimeStampToken Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.21 Testing time-stamped-certs-crls-references TA id: CAdES_ASN/TSCCR/1 Normative source: [1] – Clause A.1.5.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the time-stamped-certs-crls-references attribute id-aa-ets-certCRLTimestamp OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 26} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/TSCCR/2 Normative source: [1] – Clause A.1.5.1 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: TimestampedCertsCRLs attribute values have ASN.1 type TimeStampToken Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.22 Testing ArchiveTimeStampV3 TA id: CAdES_ASN/ATSV3/1 Normative source: [1] – Clause 5.5.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the archive-time-stamp-v3 attribute id-aa-ets- archiveTimestampV3 OBJECT IDENTIFIER ::= { itu-t(0) identified-organization(4) etsi(0) electronic- signature-standard(1733) attributes(2) 4 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ATSV3/2 Normative source: [1] – Clause 5.5.3 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ArchiveTimeStampTokenV3 attribute values have ASN.1 type TimeStampToken Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.23 Testing ats-hash-index-v3 TA id: CAdES_ASN/ATSHI/1 Normative source: [1] – Clause 5.5.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the ats-hash-index-v3 attribute id-aa- ATSHashIndex-v3 OBJECT IDENTIFIER ::= { itu-t(0) identified-organization(4) etsi(0) cades(19122) attributes(1) 5 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ATSHI/2 Normative source: [1] – Clause 5.5.2 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ATSHashIndexV3 attribute values have ASN.1 type SEQUENCE of {AlgorithmIdentifier, SEQUENCE OF OCTET STRING, SEQUENCE OF OCTET STRING, SEQUENCE OF OCTET STRING} Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 31 A.3.24 Testing long-term-validation TA id: CAdES_ASN/LTV/1 Normative source: [1] – Clause A.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the long-term-validation attribute id-aa-ets- longTermValidation OBJECT IDENTIFIER ::= { itu-t(0) identified-organization(4) etsi(0) electronic- signature-standard (1733) attributes(2) 2 } Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/LTV/2 Normative source: [1] – Clause A.2.5 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: LongTermValidation attribute values have ASN.1 type SEQUENCE of {GeneralizedTime, CHOICE of {timeStamp [0] EXPLICIT TimeStampToken, evidenceRecord [1] EXPLICIT EvidenceRecord} OPTIONAL, extraCertificates [0] IMPLICIT CertificateSet OPTIONAL, extraRevocation [1] IMPLICIT RevocationInfoChoices OPTIONAL} Prescription level: mandatory Tag: CAdES baseline and extended signatures. A.3.25 Testing ArchiveTimeStampV2 TA id: CAdES_ASN/ATSV2/1 Normative source: [1] – Clause A.2.4 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: The following object identifier identifies the archive-time-stamp-v2 attribute id-aa-ets- archiveTimestampV2 OBJECT IDENTIFIER ::= { iso(1) member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs-9(9) smime(16) id-aa(2) 48} Prescription level: mandatory Tag: CAdES baseline and extended signatures. TA id: CAdES_ASN/ATSV2/2 Normative source: [1] – Clause A.2.4 Target: CAdES signature generator claiming conformance to CAdES signatures as specified in [1] or in [2] Predicate: ArchiveTimeStampTokenV2 attribute values have ASN.1 type TimeStampToken Prescription level: mandatory Tag: CAdES baseline and extended signatures. ETSI ETSI TS 119 124-4 V1.1.1 (2016-06) 32 History Document history V1.1.1 June 2016 Publication
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1 Scope
The present document describes the oneM2M defined information model for home appliances, including the description of how it is mapped with other information models from external organizations. It also explains the ontology for the home domain information model.
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2 References
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2.1 Normative references
References are either specific (identified by date of publication and/or edition number or version number) or non-specific. For specific references, only the cited version applies. For non-specific references, the latest version of the referenced document (including any amendments) applies. Referenced documents which are not found to be publicly available in the expected location might be found at https://docbox.etsi.org/Reference/. The following referenced documents are necessary for the application of the present document. [1] oneM2M Smart Device Template. [2] Java coding rule. [3] Void. [4] ETSI TS 118 104: "oneM2M; Service Layer Core Protocol (oneM2M TS-0004)". [5] ETSI TS 118 105: "oneM2M; Management Enablement (OMA) (oneM2M TS-0005)". [6] ISO 80000-1: "Quantities and units -- Part 1: General". [7] Open Mobile Alliance™ OMA-ER-Device-WebAPIs-V1-0-20160419-C: "Enabler Release Definition for DWAPI 1.0". [8] Void. [9] Void. [10] Void. [11] Void. [12] Void. [13] Void. [14] W3C® Recommendation: "XML Schema Part 2: Datatypes Second Edition", 28 October 2004. [15] NIST standard FIPS PUB 180-4: "Secure Hash Standard (SHS)". [16] IETF RFC 4566: "SDP: Session Description Protocol". [17] IANA Time Zone Database. [18] Void. [19] Open Mobile Alliance™ OMA-ER-GotAPI-V1-1-20151215-C: " Generic Open Terminal API Framework (GotAPI)". [20] NIST SP 330:2019: "The International System of Units (SI) 2019 Edition". ETSI ETSI TS 118 123 V4.8.1 (2024-02) 12 oneM2M TS-0023 version 4.8.1 Release 4
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2.2 Informative references
References are either specific (identified by date of publication and/or edition number or version number) or non-specific. For specific references, only the cited version applies. For non-specific references, the latest version of the referenced document (including any amendments) applies. The following referenced documents are not necessary for the application of the present document but they assist the user with regard to a particular subject area. [i.1] oneM2M Drafting Rules. [i.2] ETSI TS 118 517: "oneM2M; Home Domain Abstract Information Model (oneM2M TR-0017)". [i.3] ETSI TS 118 101: "oneM2M; Functional Architecture (oneM2M TS-0001)". [i.4] IEEE 802.15.4™: "IEEE Standard for Local and metropolitan area networks--Part 15.4: Low-Rate Wireless Personal Area Networks (LR-WPANs)". [i.5] ETSI TS 118 112: "oneM2M; Base Ontology (oneM2M TS-0012)". [i.6] https://en.wikipedia.org/wiki/Multiple-inheritance. [i.7] https://www.me.go.kr/home/web/index.do?menuId=10272&condition.code1=007. [i.8] OCF Device Specification V1.3.0. [i.9] Ju-Hun Park, Hui Sik Kim, Sang-A Hong, Sun Young Jang, "A Study on the Definition of Terms for Domestic Train Control System", Korean Society for Railway, 2015. [i.10] CTCS-3级列控系统总体技术方案 (Overall technology plan Train Control System), 中国铁道出 版社(Chinese Railway Press), 2008, ISBN: 9787113091590. [i.11] DSL Forum TR-069: "CPE WAN Management Protocol". [i.12] DSL Forum TR-181: "Broadband User Services (BUS)". [i.13] ETSI TS 118 106: "oneM2M; Management Enablement (BBF) (oneM2M TS-0006)".
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3 Definition of terms, symbols and abbreviations
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3.1 Terms
For the purposes of the present document, the following terms apply: Device Class ID: URN to identify the Device model definition ModuleClass ID: URN to identify the ModuleClass model definition
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3.2 Symbols
Void.
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3.3 Abbreviations
For the purposes of the present document, the following abbreviations apply: ATC Automatic Train Control ATP Automatic Train Protection BTM Balise Transmission Module ETSI ETSI TS 118 123 V4.8.1 (2024-02) 13 oneM2M TS-0023 version 4.8.1 Release 4 CTCS-3 Chinese Train Control System-3 GotAPI Generic Open Terminal Application Programming Interface DWAPI Device Web Application Programming Interface DWAPI-3DP Device Web Application Programming Interface for 3D printer DWAPI-PCH Device Web Application Programming Interface for Personal Connected Healthcare
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4 Conventions
The key words "Shall", "Shall not", "May", "Need not", "Should", "Should not" in the present document are to be interpreted as described in the oneM2M Drafting Rules [i.1].
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5 Harmonised Information Model
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5.1 Introduction
The present document intends to provide the unified means in the oneM2M system by defining a home appliance information model for the home domain devices such as TV, refrigerator, air conditioner, clothes washer, oven, and robot cleaner. For the reasons of interworking with external technologies and efficiency, the principle of the home appliance information model is designed based on HGI SDT 3.0 [1]. The principle of defining the home appliance information model is introduced in clause 5.2. ModuleClasses which oneM2M systems support are explained in clause 5.3. In the subsequent clause 5.5, Device models are defined.
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5.2 Design Principle of the Harmonised Information Model
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5.2.1 Basic design principle of information modelling
The design principle of the oneM2M abstract information model of home appliance, is to use SDT4.0 originally introduced in ETSI TS 118 517 [i.2]. Note that those terms starting with a capital letter in this clause are SDT terms and are explained in [1]. Domain is a unique name which acts like a namespace (e.g. "org.oneM2M.home.modules"). It is set by the organization creating the SDT, allowing reference to a package of definitions for the contained ModuleClasses and DeviceClass models. ModuleClasses specifies a single service (e.g. audioVolume, powerOn/Off) with one or more Actions, Properties, DataPoints and Events. Each service which is described as a ModuleClass can be re-used in many DeviceClasses. DeviceClass model is a physical, addressable, identifiable appliance, sensor and actuator with one or more ModuleClasses, Properties and SubDevices. SubDevice is a device which may be embedded in a DeviceClass and/or is addressed via another DeviceClass. Figure 5.2.1-1 depicts the basic structure of SDT 4.0. Further details about SDT 4.0 and its elements can be found in [1]. Specifications of new DeviceClass models and ModuleClasses are encouraged to re-use the definitions specified in the present document as much as possible. If re-use is not possible and new DeviceClass and/or ModuleClasses definitions are necessary, it is strongly advised to closely follow the guidelines and definition style from the present document. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 14 oneM2M TS-0023 version 4.8.1 Release 4 Figure 5.2.1-1: Design Structure of the Home Appliance Information Model using SDT 4.0 The R/W column of the ModuleClasses' data point tables in clause 5.3 reflects the intentions of how a data point in a ModuleClass shall be used semantically. This is a "behavioural contract" between applications or users of the modelled devices on the semantic level. Further, the devices or IPE's (for NoDN) are expected to implement and control the mappings in clause 5.2.2 to implement this "behavioural contract".
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5.2.2 Description rules for Module Classes and DeviceClasses
When the Home Appliances Information Model is described based on SDT, the following rules shall be applied: • Rule 1: CamelCase rule: - When naming each element, lowerCamelCase shall be used as the Java coding rules [2]. • Rule 2: Rule for description of Action, DataPoint: - DataPoint shall be used to represent stateless operations. (e.g. powerState of binarySwitch for on/off operations). - Action shall be used when describing stateful condition, handling unknown internal state conditions (e.g. upVolume/downVolume by increasing/decreasing the audioVolume in steps, handling transactional procedures, or checking integrity using username plus password at the same time). • Rule 3: Rule for description of DataPoint and Property: - Non-functional information shall be described as a Property. Functional information shall be described as a DataPoint. (E.g. non-functional information: version, id; functional information: targetTemperature, targetVolume). • Rule 4: Definition of the Domain: - The Domains are specified as "org.onem2m.[domain]", where [domain] is one of the following names: "agriculture", "city", "common", "health", "home", "industry", "railway", "vehicular" and "management". The name is chosen according to the domain in which the element is defined. - The sub-domains for DeviceClasses, SubDevices, ModuleClasses and Actions shall be specified as "org.onem2m.[domain].device", "org.onem2m.[domain].subdevice", "org.onem2m.[domain].moduleclass", and "org.onem2m.[domain].action" respectively. • Rule 5: Naming rule for the element: - the name of each element should be concise and avoid repeating its parent element name; but - it may include the name of its parent element for readability. (e.g. lightDimmerUp, lightDimmerDown under lightDimmer); ETSI ETSI TS 118 123 V4.8.1 (2024-02) 15 oneM2M TS-0023 version 4.8.1 Release 4 - all DeviceClasses, SubDevices, ModuleClasses, and Actions of a domain shall be uniquely named. • Rule 6: Criteria for marking elements as optional or mandatory: - An element shall only be defined as mandatory if it is foreseen to be universally mandatory to all implementing technologies. • Rule 7: Enumeration type: - When describing the meaning of values for enumeration type elements, they may be described under clause 5.6. - The enumeration types for the harmonized information model are based on <xs:integer>, and the numeric values are interpreted as specified in clause 5.6. - The name of an enumeration type shall start with the prefix "enum". This prefix shall not be used with non-enumeration type names. - All enumeration types are defined under the same domain calledHorizontal Domain, which does not contain any other entity. They also shall use the same XSD name space identifiers as defined in clause 6.5.1. Even if an enumeration type is used in multiple module classes from different domains, this enumeration type is defined only once. • Rule 8: Rule for unit in documentation: - SI (International Systems of Units in [20]) measurement (e.g. meter, kilogram, second) should be considered as first candidate. - Otherwise, it may be kept consistency with implementing technologies such as other SDO's specification. - Units of measures shall be given in the form of a shortcut compliant to Table 5.2.2-1. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 16 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.2.2-1: Shortcuts for units Original name Short name Explanation Ampere A Ampere Hour Ah Bar bar Celsius °C Centimeters cm Cubic Meter m3 Cubic meter per hour m3/h Decibel dB Decibel-milliwatts dBm Degrees deg Dots per inch dpi dpi is the common unit for spatial dot density g-force g-f Grams g Hertz Hz Kilocalories kcal Kilocalories per hour kcal/h Kilograms per square meter kg/m2 Kilopascal kPa kilovar kvar Kilowatt kW Megabyte MB 1 MB = 1 024 × 1 024 bytes MegaHertz MHz Meter m Meters per second m/s Miligram per cubic meter mg/m3 Microgram per cubic meter μg/m3 Milligram per deciliter mg/dl Milligram per liter mg/L Millimeter mm Millimeter of mercury mmHg Milliseconds ms Milliwatt per cubic centimetre mW/cm2 Minute min Odor unit per cubic meter OU/m3 Ohm ohm Parts per minute ppm Percent pct Picofarad pF Seconds s Siemens per meter S/m Volt V Watt W Watt hour Wh NOTE 1: Popular units in particular industrial domains should be considered (e.g. cm for human height, calories for energy consumption in healthcare domain). It should be made coherent in the present document, as possible. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 17 oneM2M TS-0023 version 4.8.1 Release 4 • Rule 9: Rule for type: - Measured and/or calculated values should be represented in float (without taking care of resolution of values). NOTE 2: It should be made coherent in the present document, as possible. Unit should not be fixed as a rule but be decided with correspondence to each DeviceClass or ModuleClass. • Rule 10: Inheritance of ModuleClasses: - A ModuleClass may inherit from another existing ModuleClass in order to provide additional functionalities based on the existing ModuleClass. However, inheritance from multiple ModuleClasses is not allowed (due to the "diamond problem" [i.6]). - Inheritance of ModuleClass shall only be used in the case that extending an existing ModuleClass is not appropriate, i.e. the functionality to be added is irrelevant to the original design purpose of the existing ModuleClass (e.g. adding a 'time' DataPoint to a 'binarySwitch' ModuleClass). • Rule 11: When to differentiate between current and target Data Points in ModuleClasses: - Device operations, which are executed when setting data points to specific values, may take some time to reach the desired result. For example, setting a new temperature to a heater does not immediately change the room temperature, but it may take some time for the heater to increase the temperature. Therefore, it is sometimes necessary to distinguish between current and target data points. - A ModuleClass shall provide an additional "target" data point when the "current" data point:  is writable; and  the functionality that is mapped to the data point is an operation, not a configuration function; and  the operation may take some time to start and/or to complete, or reach the desired result. - When a ModuleClass provides current and target data points then the name for the current data point shall have the prefix "current", and the name for the target data point shall have the prefix "target". Both data points shall have the same suffix, for example "currentTemperature" and "targetTemperature". • Rule 12: Algorithm to generate short names for DeviceClasses, ModuleClasses, Data Points, Actions: - Every domain in oneM2M defines their own short names, i.e. there may exist the same short name in more than one domain, but these short names are distinguished by the domain prefix. - Previous defined short names of the home domain, e.g. from a previous version of the present document, shall be taken into account. They are assigned to the same original names. - The algorithm to generate the short names from the original names works as follows:  The maximum length of a short name for TS-0023 is 5 characters. This length includes the optional appended distinguishing number (see below), but not the suffix for announced resources.  If the length of the original name is equal or less than 5 characters, then store the original name as an intermediate result.  Else, if the length of the original name is greater than 5 characters, then perform the following procedure: - The first and the last character of the original name are stored as first and second character as an intermediate result. - All the upper-case characters of the original name, starting with the first upper-case character, are inserted one by one before the last character of the intermediate result, up to a total length of 5 characters of the intermediate result. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 18 oneM2M TS-0023 version 4.8.1 Release 4 - In case the length of the intermediate result after these steps is less than 5 characters, then the intermediate result is filled with characters from the original string until the length of the intermediate result is 5 characters, following this procedure: the second character of the original name is inserted as the second character of the intermediate result while shifting all characters from the intermediate result by one character forward. This is repeated with the third, fourth, etc., character from the original name.  The intermediate result is now compared with all existing short names. If the intermediate result can be found in the list of existing short names, then execute the following steps until the intermediate result cannot be found in the list of previously defined short names: - Replace the last character of the intermediate result with an integer number, starting with 0. If the number becomes a two-digit number, then replace the last two characters of the intermediate result, and so forth. - Repeat the check described above. If the intermediate result is still the same as an existing short name, then the appended integer number is increased by 1, and the check is repeated.  The intermediate result is now stored as a new short name in the list of existing short names. - Short names for announced resources are created by taking the regular short name of the entity and appending the characters "Annc" to it. Short names for announced resources therefore have a maximum length of 9 characters. Table 5.2.2-2 provides some examples for short names that have been created by the described algorithm. Table 5.2.2-2: Examples for original name to short name mappings Original name short name co2 co2 clock clock currentJobMode cuJMe absoluteStartTime abSTe absoluteStopTime abST0 impactSensor impSr impactSensorAnnc impSrAnnc • Rule 13: Rule for R/W column: - The value used in this column defines the interface as it applies to the user of this module. The entity that this module represents (device AE or IPE AE) can read or write to any or all of the datapoints as needed in order to implement the defined interface to the user. <accessControlPolicy> resources shall be defined to enforce access control to the datapoints of the module defined such that R in the R/W column has RETRIEVE accessControlOperations and RW in the R/W column has RETRIEVE and UPDATE accessControlOperations. • Rule 14: Rule for Optional and Multiplicity: - The value used in the "Optional" column of ModuleClass definitions is mapped to the "optional" element attribute for SDT DataPoint elements. - The value used in the "Multiplicity" column of DeviceClass and SubDevice definitions is mapped to "minOccurs" and "maxOccurs" element attribute for SDT DeviceClass elements as follows:  1 : minOccurs = 1, maxOccurs = 1  0..1 : minOccurs = 0, maxOccurs = 1  0..N : minOccurs = 0, maxOccurs = unbound  1..N : minOccurs = 1, maxOccurs = unbound ETSI ETSI TS 118 123 V4.8.1 (2024-02) 19 oneM2M TS-0023 version 4.8.1 Release 4
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5.3 ModuleClasses
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5.3.1 Common Domain
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5.3.1.1 3Dprinter
This ModuleClass provides capabilities for a 3D printer. Table 5.3.1.1-1: Actions of 3Dprinter Return Type Name Argument Optional Documentation none start3Dprint none true Start 3D printing. none stop3Dprint none true Stop 3D printing. Table 5.3.1.1-2: DataPoints of 3Dprinter ModuleClass Name Type R/W Optional Unit Documentation printType hd:enum3DprinterTechnology R false The type of printing technology (see clause 5.6.1). printSizeX xs:float R false mm This data point represents the maximum size of a printing object in the direction of X-axis. printSizeY xs:float R false mm This data point represents the maximum size of printing object in the direction of Y-axis. printSizeZ xs:float R false mm This data point represents the maximum size of printing object in the direction of Z-axis. network xs:boolean R false This value indicates the Wide Area Network (WAN) connectivity of the 3D printer, such as Internet or GSM. "False" indicates that the printer does not have network connectivity to a WAN. "True" indicates that the printer has WAN network connectivity. memorySize xs:float R false MB This value represents the total memory size of the printer. The unit of measure is.
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5.3.1.2 acousticSensor
This ModuleClass provides capabilities for an acoustic sensor. Table 5.3.1.2-1: DataPoints of acousticSensor ModuleClass Name Type R/W Optional Unit Documentation loudness xs:float R false dB acousticStatus xs:integer R true The acousticStatus is expressed in percent, whereas a value of 0 means "no sound" and a value of 100 means "most noisy".
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5.3.1.3 airConJobMode
This ModuleClasses provides capabilities to control and monitor the job modes of an air conditioner. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 20 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.3.-1: DataPoints of airConJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd:enumAirConJobMode RW false Currently active job mode (see clause 5.6.3). currentJobModeName xs:string R true Name of the current job mode as a string. This can be used when currentJobMode is vendor-specific. jobModes list of hd:enumAirConJobMode R false List of possible job states the device supports (see clause 5.6.3).
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5.3.1.4 airFlow
This ModuleClass provides capabilities for controlling the air flow of a device. Table 5.3.1.4-1: DataPoints of airFlow ModuleClass Name Type Readable Optional Unit Documentation speed xs:integer RW false The current speed level in the range of the [minSpeed, maxSpeed] data points. minSpeed xs:integer R true The minimum value for the speed level. If not present, the default is 0. maxSpeed xs:integer R true The maximum value for the speed level. If not present, the default is 100. verticalDirection hd:enumVerticalDirecti on RW true The vertical direction of the air flow (see clause 5.6.36). supportedVerticalDirec tion List of hd:enumVerticalDirecti on R true List of supported vertical directions. horizontalDirection hd:enumHorizontalDire ction RW true The horizontal direction of the air flow (see clause 5.6.22). supportedHorizontalDir ection List of hd:enumHorizontalDire ction R true List of supported horizontal directions. automode xs:Boolean RW true Status of the automode feature. "True" indicates that the speed is set by the device, "False" indicates that the device is not controlling the speed.
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5.3.1.5 airPurifierJobMode
This ModuleClasses provides capabilities to control and monitor the job modes of an airPurifier. Table 5.3.1.5-1: DataPoints of airPurifierJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd:enumAirPurifierJobMode RW false Currently active job mode (see clause 5.6.4). currentJobModeName xs:string R true Name of the current job mode as a string. This can be used when currentJobMode is vendor-specific. jobModes list of hd:enumAirPurifierJobMode R false List of possible job states the device supports (see clause 5.6.4).
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5.3.1.6 airQualitySensor
This ModuleClass provides capabilities for a monitoring sensor that measures the air quality. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 21 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.6-1: DataPoints of airQualitySense ModuleClass Name Type R/W Optional Unit Documentation monitoringEnabled xs:boolean Rtrue true The current status of monitoring. "True" indicates enabled, and "False" indicates not enabled. pm1 xs:integer R true µg/m3 The concentration of particle matter under 1 µm. The minimum value is 0. pm25 xs:integer R true µg/m3 The concentration of particle matter under 2,5 µm. The minimum value is 0. pm10 xs:integer R true µg/m3 The concentration of particle matter under 10 µm. The minimum value is 0. tsp xs:float R true µg/m3 Total suspended particle. odor xs:integer R true OU/m3 The concentration of odor that reflects air pollution. The minimum value is 0. humidity xs:float R true pct The measured humidity. The minimum value is 0, and the maximum value is 100. temperature xs:float R true °C The current temperature. airPressure xs:float R true KPa The air pressure. co xs:float R true mg/m3 This value indicates the CO level. co2 xs:float R true mg/m3 This value indicates the CO2 level. ch2o xs:float R true µg/m3 This value indicates the CH2O level. voc xs:float R true ppm This value indicates the VOC (Volatile Organic Compounds). no2 xs:float R true µg/m3 This value indicates the concentration of NO2. so2 xs:float R true µg/m3 This value indicates the concentration of SO2. o3 xs:float R true µg/m3 This value indicates the concentration of O3. noise xs:float R true dB This value indicates the level of noise. windDirection xs:float R true deg The wind direction. The value range is [0-359]. North is 0,0 degrees, east is 90,0 degrees, south is 180,0 degrees, west is 270,0 degrees. windSpeed xs:float R true m/s The wind speed
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5.3.1.7 alarmSpeaker
This ModuleClass provides the capabilities to initiate and monitor an alarm. Table 5.3.1.7-1: DataPoints of alarmSpeaker ModuleClass Name Type R/W Optional Unit Documentation tone hd:enumTone RW true Representing the tones of the alarm (see clause 5.6.34). light hd:enumAlertColourCode R true Representing the lighting mode of the alarm (see clause 5.6.5). alarmStatus xs:boolean R false "True" indicates the alarm start while "False" indicates the alarm stop.
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5.3.1.8 audioVolume
This ModuleClass provides capabilities to control and monitor volume. Table 5.3.1.8-1: Actions of audioVolume Return Type Name Argument Optional Documentation none upVolume none true Increase the volume by the amount of the stepValue up to the maxValue. none downVolume none true Decrease the volume by the amount of the stepValue down to 0. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 22 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.8-2: DataPoints of audioVolume Name Type R/W Optional Unit Documentation volumePercentage xs:integer RW false The rounded percentage of the current volume in the range of [0, maxValue]. 0 percentage shall mean no sound produced. stepValue xs:integer R true Step value used by the "UpVolume" and "DownVolume" actions. maxValue xs:integer R true Maximum value allowed for Volume. maxValue is 100 by default if "maxValue" is not provided. muteEnabled xs:boolean RW false The current status of the mute enablement. "True" indicates enabled (that is, no sound), and "False" indicates not enabled (that is, sound is played).
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5.3.1.9 autoDocumentFeeder
This ModuleClasses provides capabilities to monitor the state of autoDocumentFeeder (ADF). ADF is a feature which takes several pages and feeds the paper one page at a time into a scanner or printer, allowing the user to scan, print or fax, multiple-page documents without having to manually replace each page. Table 5.3.1.9-1: DataPoints of autoDocumentFeeder ModuleClass Name Type R/W Optional Unit Documentation currentAdfState hd:enumAdfState R false Current state of the ADF. adfStates list of hd:enumAdfState R false List of possible ADF states that are supported by the device (see clause 5.6.2).
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5.3.1.10 battery
This ModuleClass provides capabilities to indicate the detection of low battery and gives an alarm if the triggering criterion is met. The level data point in the ModuleClass represents the current battery charge level. Table 5.3.1.10-1: DataPoints of battery ModuleClass Name Type R/W Optional Unit Documentation level xs:integer R false The rounded percentage of the current charging level of a battery in the range of [0, 100]. 0 percentage shall mean that no charge remains. capacity xs:integer R true mAh The total capacity of battery in mAh. rechargeable xs:boolean R true To indicate the battery is rechargeable or not. "True" indicates rechargeable. charging xs:boolean R True The status of charging. "True" indicates enabled, and "False" indicates not enabled. discharging xs:boolean R True The status of discharging. "True" indicates charging, and "False" indicates not charging. lowBattery xs:boolean R True To indicate that the battery is on a low charge level. batteryThreshold xs:integer RW True When a battery's "level" is less than "batteryThreshold" then "lowBattery" is set to "True". This datapoint can be used to raise an alarm, depending on the implementation. chargingVoltage xs:float R true V The voltage to charge the battery. chargingAmpere xs:float R true A The ampere to charge the battery. dischargingVoltage xs:float R true V The voltage to discharge the battery. dischargingAmpere xs:float R true A The ampere to discharge the battery. batteryMaterial hd:enumBatteryMaterial R true The material of the cell of the battery. batteryShape hd:enumBatteryShape R true The size of the battery such as "AAA".
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5.3.1.11 binaryObject
This ModuleClass describes the handling of a binary object (blob). ETSI ETSI TS 118 123 V4.8.1 (2024-02) 23 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.11-1: DataPoints of binaryObject ModuleClass Name Type R/W Optional Unit Documentation object xs:string RW false This data point contains the base64 encoded binary object. objectType xs:string RW false This data point contains the type and subtype of the binary object as a MIME type. size xs:integer RW true The size of the decoded binary object. hash xs:string RW true The hash code of the blob. If present, it is used to check the decoded content of the "object" data point for integrity. The algorithm used for generating the hash value is SHA-2 [15]. The data point contains the hash as a hex encoded value.
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5.3.1.12 binarySwitch
This ModuleClass provides capabilities to control and monitor the state of power. Table 5.3.1.12-1: Actions of binarySwitch ModuleClass Return Type Name Argument Optional Documentation none toggle none true Toggle the switch. Table 5.3.1.12-2: DataPoints of binarySwitch ModuleClass Name Type R/W Optional Unit Documentation state xs:boolean RW false The current status of the binarySwitch. "True" indicates turned-on, and "False" indicates turned-off.
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5.3.1.13 bioElectricalImpedanceAnalysis
This ModuleClass provides the analysis of human body tissue based on impedance measurement. Table 5.3.1.13-1: DataPoints of bioElectricalImpedanceAnalysis ModuleClass Name Type R/W Optional Unit Documentation water xs:float R false pct The water content measurement from the BIA. fat xs:float R false pct The fat content measurement from the BIA. muscle xs:float R false pct The muscle content measurement from the BIA. bone xs:float R false pct The bone content measurement from the BIA. visceraFat xs:float R false pct The viscera fat content measurement from the BIA. kcal xs:float R false kcal The kcal (kilocalories) measurement from the BIA. resistance xs:float R false ohm The resistance of human body.
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5.3.1.14 bodyCompositionAnalyser
This ModuleClass provides the capability to report the measurement of body composition analyser characteristics. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 24 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.14-1: DataPoints of body composition analyser ModuleClass Name Type R/W Optional Unit Documentation bodyLength xs:float R true cm The measurement of body length by Weight scale and Body composition analyser. bmi xs:float R true kg/m2 The measurement of Body Mass Index (BMI) by a weight scale and a body composition analyser. fatFreeMass xs:float R true kg The measurement of fat free mass by a weight scale and a body composition analyser. softLeanMass xs:float R true kg The measurement of soft lean mass by a weight scale and a body composition analyser. muscleMass xs:float R true kg The measurement of muscle mass by a weight scale and a body composition analyser. basalMetabolism xs:float R true kcal The measurement of basal metabolism by a weight scale and a body composition analyser. impedance xs:float R true ohm The measurement of impedance by a weight scale and a body composition analyser. proteinMass xs:float R true kg The measurement of protein mass by a weight scale and a body composition analyser. bodyWaterMass xs:float R true kg The measurement of body water mass by a weight scale and a body composition analyser. inorganicSaltMass xs:float R true g The measurement of inorganic salt mass by a weight scale and a body composition analyser. somatotype xs:string R true The measurement of somatotype by Weight scale and Body composition analyser.
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5.3.1.15 boiler
This ModuleClass provides capabilities to control the status of the boiling functionality for water heaters. Table 5.3.1.15-1: DataPoints of boiler ModuleClass Name Type R-W Optional Unit Documentation status xs:boolean RW false The status of boiling. "True" indicates boiling, "False" indicates not boiling.
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5.3.1.16 brewing
This ModuleClass provides capabilities to control and monitor a brewing process. It is intended to be part of devices that prepare hot drinks such as a coffee or a tea. Table 5.3.1.16-1: DataPoints of brewing ModuleClass Name Type R/W Optional Unit Documentation cupsNumber xs:integer RW false The current number of the cups requested to brew. strength hd:enumTasteStrength RW true The current strength of the drink taste (see clause 5.6.33). A higher value indicates a stronger taste.
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5.3.1.17 brightness
This ModuleClass provides capabilities to control and monitor the brightness of a light for example from a lamp. Brightness is scaled as a percentage. A lamp or a monitor can be adjusted to a level of light between very dim (0 % is the minimum brightness) and very bright (100 % is the maximum brightness). Table 5.3.1.17-1: DataPoints of brightness ModuleClass Name Type R/W Optional Unit Documentation brightness xs:integer RW false pct The status of brightness level. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 25 oneM2M TS-0023 version 4.8.1 Release 4
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5.3.1.18 clock
This ModuleClass provides capabilities to control and monitor time and date information. Table 5.3.1.18-1: DataPoints of clock ModuleClass Name Type R/W Optional Unit Documentation currentTime xs:time RW false Information of the current time currentDate xs:date RW false Information of the current date currentTimeZone xs:string RW true Name of current time zone according to the IANA Timezone data format (TZ) [17], for example, "America/New York".
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5.3.1.19 clothesDryerJobMode
This ModuleClasses provides capabilities to control and monitor the job modes of a clothes dryer. Table 5.3.1.19-1: DataPoints of clothesDryerJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd:enumClothesDryerJobMode RW false Currently active job mode (see clause 5.6.7). currentJobModeName xs:string R true The name of current job mode as a string. This can be used when "currentJobMode" is vendor-specific. jobModes list of hd:enumClothesDryerJobMode R false List of possible job states the device supports.
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5.3.1.20 clothesWasherJobMode
This ModuleClasses provides capabilities to control and monitor the job mode of a washer. Table 5.3.1.20-1: DataPoints of clothesWasherJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd: enumClothesWasherJobMode RW false Currently active job mode (see clause 5.6.8). currentJobModeName xs:string RW true The name of the current job mode as a string. This can be used when the currentJobMode is vendor- specific. jobModes list of hd:enumClothesWasherJobMode R false List of possible job states that the device supports (see clause 5.6.8).
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5.3.1.21 clothesWasherDryerJobMode
This ModuleClasses provides capabilities to control and monitor the job modes of clothesWasherDryer. Table 5.3.1.21-1: DataPoints of clothesWasherDryerJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd: enumClothesWasherDryerJobMode RW false Currently active job (see clause 5.6.8). currentJobModeName xs:string RW true The name of the current job mode as a string. This can be used when currentJobMode is vendor-specific. jobModes list of hd:enumClothesWasherDryerJobMode R false List of possible job states the device supports (see clause 5.6.8). ETSI ETSI TS 118 123 V4.8.1 (2024-02) 26 oneM2M TS-0023 version 4.8.1 Release 4
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5.3.1.22 clothesWasherJobModeOption
This ModuleClasses provides capabilities to control and monitor the washing job mode options of a washer. Table 5.3.1.22-1: DataPoints of clothesWasherJobModeOption ModuleClass Name Type R/W Optional Unit Documentation washTemp hd:enumGeneralTemperature RW true This data point represents the water temperature level (see clause 5.6.19). soilLevel hd:enumGeneralLevel RW true This data point represents the washing level (see clause 5.6.17). spinSpeed hd:enumGeneralSpeed RW true This data point represents the spin-dry speed level (see clause 5.6.18). preWash xs:boolean RW true This data point indicates pre-wash. "True" indicates enabled, "False" indicates disabled. speedWash xs:boolean RW true This data point indicates speed wash. "True" indicates enabled, "False" indicates disabled. steamTreat xs:boolean RW true This data point indicates steam treat. "True" indicates enabled, "False" indicates disabled. coldWash xs:boolean RW true This data point indicates cold wash. "True" indicates enabled, "False" indicates disabled. extraRinse xs:boolean RW true This data point indicates extra rinse. "True" indicates enabled, "False" indicates disabled.
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5.3.1.23 colour
This ModuleClass provides the capabilities to set the value of the Red, Green, and Blue colour channels for a colour device. Table 5.3.1.23-1: DataPoints of colour ModuleClass Name Type R/W Optional Unit Documentation red xs:integer RW false The value of the Red colour channel of RGB. The range is [0,255]. green xs:integer RW false The value of the Green colour channel of RGB. The range is [0,255]. blue xs:integer RW false The value of the Blue colour channel of RGB. The range is [0,255].
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5.3.1.24 colourSaturation
This ModuleClass provides capabilities to control and monitor a colour saturation value. Table 5.3.1.24-1: DataPoints of colourSaturation ModuleClass Name Type R/W Optional Unit Documentation colourSaturation xs:integer RW false The status of colour saturation level. "colourSaturation" has a range of [0,100]. A "colourSaturation" value of 0 means that a device displays or produces black and white images. A "colourSaturation" value of 50 means that a device displays or produces normal colour images. A "colourSaturation" value of 100 means that a device displays or produces very colourful images.
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5.3.1.25 connectivity
This ModuleClass provides capabilities to monitor network connectivity. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 27 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.25-1: DataPoints of connectivity ModuleClass Name Type R/W Optional Unit Documentation rsrp xs:integer R false dBm Reference Signal Received Power (RSRP) is a measurement of the received power level in an LTE cell network. rsrq xs:integer R true dB Reference signal received quality (RSRQ) indicates the quality of the received reference signal. RSRQ is defined as the ratio N×RSRP/(E-UTRA carrier RSSI), where N is the number of RB's of the E- UTRA carrier RSSI measurement bandwidth. The measurements in the numerator and denominator shall be made over the same set of resource blocks. cellID xs:integer R true Serving Cell ID in case Network Bearer Resource is a Cellular Network. rssi xs:integer R true dBm In telecommunications, Received Signal Strength Indicator (RSSI) is a measurement of the power present in a received radio signal. signalECL xs:integer R true Based on measurements of the reference signal's received power, the UE will select an entry coverage Enhancement Level (ECL) to camp into the cell. The coverage level will determine the Narrowband Physical Random Access Channel (NPRACH) resources used by the device and will inform the eNB of the device receiver sensitivity conditions. sinr xs:integer R true dB Signal to Interference Plus Noise Ratio (SINR) is commonly used in wireless communication as a way to measure the quality of wireless connections. pci xs:string R true Physical Cell ID is an identification of a cell at physical layer. dailyActivityTime xs:integer R true s Daily communication time (Starts at 00:00h) dailyNumberOfC onnections xs:integer R true Daily number of connections (Starts at 00:00h) commFreqValue xs:integer R true MHz Communication frequency value (commFreqValue) is the transmission frequency of the wireless signal. currentCycleBegi nn xs:datetim e R true A timestamp that indicates the beginning of the current cycle for counting the transfer volumina and transmission errors. currentCycleVolu me xs:integer R true bytes Number of bytes transferred since currentCycleBeginn currentCycleTran smissionErrors xs:integer R true Number of transmission errors since currentCycleBeginn minimumCommu nicationLatency xs:integer R true s The minimum time delay between the last communication attempt
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5.3.1.26 cookerHoodJobMode
This ModuleClasses provides capabilities to control and monitor the job modes of a cookerHood. Table 5.3.1.26-1: DataPoints of cookerHoodJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd: enumCookerHoodJobMode RW false The currently active job mode. currentJobModeName xs:string R true The name of the current job mode as a string. This can be used when currentJobMode is vendor-specific. jobModes list of hd: enumCookerHoodJobMode R false List of possible job states the device supports (see clause 5.6.10). ETSI ETSI TS 118 123 V4.8.1 (2024-02) 28 oneM2M TS-0023 version 4.8.1 Release 4
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5.3.1.27 credentials
This ModuleClass provides the capability to manage user credentials which allows a user to authenticate on an appliance or a server that is associated with the appliance. The authentication depends on a user login and password, or on a token. An example appliance which may include this ModuleClass is a camera. Table 5.3.1.27-1: DataPoints of credentials ModuleClass Name Type R/W Optional Unit Documentation loginName xs:string W true The user's login name. password xs:string W true The user's password. token xs:string W true An authentication token, for example an OAuth token.
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5.3.1.28 dehumidifierJobMode
This ModuleClasses provides capabilities to control and monitor the job modes of a dehumidifier device. Table 5.3.1.28-1: DataPoints of dehumidifierJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd:enumDehumidifierJobMode RW false The currently active job mode (see clause 5.6.11). currentJobModeName xs:string R true The name of the current job mode as a string. This can be used when currentJobMode is vendor-specific. jobModes list of hd:enumDehumidifierJobMode R false List of possible job states the device supports.
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5.3.1.29 dishWasherJobMode
This ModuleClasses provides capabilities to control and monitor the job modes of a dishWasher. Table 5.3.1.29-1: DataPoints: DataPoints of dishWasherJobMode ModuleClass Name Type R/W Optional Unit Documentation currentJobMode hd: enumDishWasherJobMode RW false The currently active job mode. currentJobModeName xs:string R true The name of the current job mode as a string. This can be used when the currentJobMode is vendor-specific. jobModes list of hd: enumDishWasherJobMode R false List of possible job states the device supports (see clause 5.6.12).
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5.3.1.30 doorStatus
This ModuleClass provides the status of a door. It is intended to be part of a device such as a refrigerator and an oven that might have multiple doors. Table 5.3.1.30-1: DataPoints of doorStatus ModuleClass Name Type R/W Optional Unit Documentation doorState hd:enumDoorState R false Current state of the door (see clause 5.6.15). openDuration m2m:timestamp R true The time duration the door has been open. openAlarm xs:boolean RW true The state of the door open alarm. "True" indicates that the open alarm is active. "False" indicates that the open alarm is not active. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 29 oneM2M TS-0023 version 4.8.1 Release 4
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5.3.1.31 electricVehicleConnector
This ModuleClass provides information about charging/discharging devices for electric vehicles. Table 5.3.1.31-1: DataPoints of electricVehicleConnector ModuleClass Name Type R/W Optional Unit Documentation Status xs:boolean R false The status of connection. "True" means connected, "False" means not connected. chargingCapacity xs:integer R true Ah Rated charging capacity. dischargingCapacity xs:integer R true Ah Rated discharging capacity.
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5.3.1.32 energyConsumption
This ModuleClass describes the measured energy consumed by the device since power up. One particular use case for the energyConsumption ModuleClass is a smart meter. Table 5.3.1.32-1: DataPoints of energyConsumption ModuleClass Name Type R/W Optional Unit Documentation power xs:float R true W The power of the device. absoluteEnergyConsumption xs:float R false Wh The absolute energy consumption, reflecting the real measurement of accumulative energy. roundingEnergyConsumption xs: integer R true This energy consumption data is calculated by multiplying significantDigits with multiplyingFactors, and rounding down the result. significantDigits xs:integer R true The number of effective digits for data. multiplyingFactors xs:float R true The unit for data multiplying factors, for example 1 kWh, 0,1 kWh, 0,01 kWh, etc. voltage xs:float R true V The voltage of the device. current xs:float R true A The current of the device. frequency xs:float R true Hz The frequency of the device. measuringScope xs:string RW true The measuring scope of the meter, for example the whole house, a room, or a device.
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5.3.1.33 energyGeneration
This ModuleClass provides information about generation data on electric generator devices such as a photo voltaic power system, fuel cells, or microgeneration. Table 5.3.1.33-1: DataPoints of energyGenerationModuleClass Name Type R/W Optional Unit Documentation powerGenerationData xs:float R true W Amount of instantaneous generation data. roundingEnergyGeneration xs:integer R true This energy consumption data is calculated by multiplying significantDigits with multiplyingFactors, and rounding down the result. significantDigits xs:integer R true The number of effective digits for data. multiplyingFactors xs:floatr R true The unit for data multiplying factors, for example 1 kWh, 0,1 kWh, 0,01 kWh, etc. generationSource xs:string RW false The type of generating source.
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5.3.1.34 faultDetection
This ModuleClass provides information about whether a fault has occurred in a device. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 30 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.34-1: DataPoints of faultDetection ModuleClass Name Type R/W Optional Unit Documentation status xs:boolean R false The status of fault detection. code xs:integer R true The numeric representation of the fault. description xs:string R true The message representation of the fault.
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5.3.1.35 filterInfo
This ModuleClass is for monitoring filter information of a device. Table 5.3.1.35-1: DataPoints of filterInfo ModuleClass Name Type R/W Optional Unit Documentation usedTime xs:integer R false The cumulative used time in seconds of a filter. needsReplacement xs:boolean R true This value indicates that the filter needs to be replaced. filterLifetime xs:integer R true Percentage lifetime remaining for the water filter.
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5.3.1.36 foaming
This ModuleClass provides capabilities to control and monitor desired parameters of foam e.g. for foaming milk. It is initially intended to be part of a device that prepare drinks with milk (for example a coffee machine or hot chocolate machine). Table 5.3.1.36-1: DataPoints of foaming ModuleClass Name Type R/W Optional Unit Documentation foamingStrength hd:enumFoamStrength RW false The current strength of foamed milk. A higher value indicates more foamed milk (see clause 5.6.16).
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5.3.1.37 galleryMode
This ModuleClass provides information about the mode of display. The galleryMode includes the display orientation, display interval and display order. Table 5.3.1.37-1: DataPoints of galleryMode ModuleClass Name Type R/W Optional Unit Documentation displayOrientation hd:displayOrientation RW false The orientation of display. displayInterval xs:integer RW true s The interval of changing display content. displayOrder hd:displayOrder RW true The sequence of the displaying content.
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5.3.1.38 gasChargingControl
This ModuleClass provides capabilities to recharge the gas meter. Table 5.3.1.38-1: DataPoints of gasChargingControl ModuleClass Name Type R/W Optional Unit Documentation billingNumber xs:string RW true The billing number of the remote recharge. rechargeCredit xs:float RW true Amount of recharge money in local currency. surplusCredit xs:float R true Amount of surplus money in local currency. rechargeGas xs:float RW true m3 Amount of recharge gas. surplusGas xs:float R true m3 Amount of surplus gas. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 31 oneM2M TS-0023 version 4.8.1 Release 4
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5.3.1.39 gasMeterAlarm
This ModuleClass provides capabilities to set service parameters of a gas meter. Table 5.3.1.39-1: DataPoints of gasMeterAlarm ModuleClass Name Type R/W Optional Unit Documentation lowGasAlarm xs:boolean R true The alarm of insufficient amount of gas. lowCreditAlarm xs:boolean R true The alarm of insufficient amount of money. leakageAlarm xs:boolean R true The alarm of gas leakage. lockedDownAlarm xs:boolean R true The alarm of the gas meter being locked. When the gas meter is in use, the lower wheel does not work, called the "dead meter". largeFlowAlarm xs:boolean R true The alarm of large flow occurring. The instantaneous flow passed exceeds the setting maximum flow of the gas meter. magneticDisturb xs:boolean R true The alarm of magnetic interference occurring. singleCountAlarm xs:boolean R true The alarm of single reed switch counting. The normal condition is that the double reed switches are working. If only a single reed switch is working, it means that the metering has a problem and shall fire the alarm.
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5.3.1.40 gasMeterReportInfo
This ModuleClass provides information of measurements of a gas meter. Table 5.3.1.40-1: DataPoints of gasMeterReportInfo ModuleClass Name Type R/W Optional Unit Documentation totalUseValue xs:float R false m3 The total consumption of gas. valveStatus xs:boolean R true The status of gas meter valve: • "True": open • "False": close
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5.3.1.41 geoLocation
This ModuleClass provides the capability to get or set geo-location information. Table 5.3.1.41-1: DataPoints of geoLocation ModuleClass Name Type R/W Optional Unit Documentation latitude xs:float RW false deg The current latitude part of a geo-location. longitude xs:float RW false deg The current longitude part of a geo-location. altitude xs:float RW true m The optional current altitude part of a geo-location. heading xs:float RW true The azimuth of a device measured in degrees to true north. North is 0,0 degrees, east is 90,0 degrees, south is 180,0 degrees, west is 270,0 degrees. A negative value indicates an unknown heading. horizontalAccuracy xs:float R true The optional current horizontal accuracy of the geo-location. The unit of measures is meters and describes a radius around the latitude/longitude coordinate. verticalAccuracy xs:float R true m The optional current vertical accuracy of the altitude. headingAccuracy xs:float R true deg The optional current maximum deviation between the heading and the true geomagnetic heading. targetLatitude xs:float RW true deg The optional target latitude part of a geo-location. This can be used to move a device to a new location. targetLongitude xs:float RW true deg The optional target longitude part of a geo-location. This can be used to move a device to a new location. targetAltitude xs:float RW true m The optional target altitude part of a geo-location. This can be used to move a device to a new altitude. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 32 oneM2M TS-0023 version 4.8.1 Release 4
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5.3.1.42 glucometer
This ModuleClass provides the capability to report the measurement of glucose characteristics. Table 5.3.1.42-1: DataPoints of glucometer ModuleClass Name Type R/W Optional Unit Documentation concentration xs:float R false mg/dl The measurement of concentration by Glucometer. hba1c xs:float R true pct The measurement of HbA1c by Glucometer. contextExercise xs:float R true pct The measurement of context exercise by Glucometer. contextMedication xs:float R true mg/dl The measurement of context medication by Glucometer. contextCarbohydratesAmount xs:float R true g The measurement of context carbohydrates by Glucometer. contextCarbohydratesSource xs:string R true The timing of meals (for example "breakfast carbohydrates"). contextMeal xs:string R true The style of meals (for example "casual"). contextLocation xs:string R true The body location where the Glucometer is worn (for example "finger"). contextTester xs:string R true The test style (for example "self"). contextHealth xs:string R true The severity of symptoms (for example "minor").
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5.3.1.43 grinder
This ModuleClass is for controlling a grinder, for example in a coffee machine. Table 5.3.1.43-1: DataPoints of grinder ModuleClass Name Type R/W Optional Unit Documentation useGrinder xs:boolean RW false The current status of the grinder enablement. "True" indicates enabled, and "False" indicates disabled. coarseness hd:enumGrindCoarseness RW true The wished coarseness of the solid supplies after grinding, for example for coffee beans (see clause 5.6.21). grainsRemaining hd:enumGrainsLevel R true The level of remaining grains in a machine having a grinder, for example for remaining coffee beans in the coffee machine grinder (see clause 5.6.20).
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5.3.1.44 heatingZone
This ModuleClass provides the capabilities to monitor the status of the heating zone, for example for a cooktop. Table 5.3.1.44-1: DataPoints of heatingZone ModuleClass Name Type R/W Optional Unit Documentation heatingLevel xs:integer R false The current heating level of the zone. The value range is from 0 (indicating that the zone is not heating) up to the maxHeatingLevel. maxHeatingLevel xs:integer R false The maximum value allowed for the heating level of the zone.
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5.3.1.45 height
This ModuleClass provides the capability to report the measurement of height. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 33 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.45-1: DataPoints of height ModuleClass Name Type R/W Optional Unit Documentation height xs:float R false cm The height measurement.
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5.3.1.46 hotWaterSupply
This ModuleClass provides information about the status of supplying hot water into tanks or bath tubs. Table 5.3.1.46-1: DataPoints of hotWaterSupply ModuleClass Name Type R/W Optional Unit Documentation bath xs:boolean RW true The status of whether a bath tub is filled.
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5.3.1.47 impactSensor
This ModuleClass describes the capabilities on an impact sensor. The impact is a high force or shock over a short time period and the impactSensor detects this. Table 5.3.1.47-1: DataPoints of impactSensor ModuleClass Name Type R/W Optional Unit Documentation impactStatus xs:boolean R false The "impactStatus" indicates as follows: "True" means that a physical impact is detected, "False" means indicates a normal status (no impact detected). impactLevel xs:float R true The "impactLevel" provides the level of impact. The unit of measure is "g" (G-force). impactDirectionHorizontal xs:float R true The "impactDirection" indicates the horizontal direction where the impact comes from. The value is 0 degrees to 360 degrees. 0 is the front of the sensor and with clockwise increment. impactDirectionVertical xs:float R true The "impactDirection" indicates the vertical direction where the impact comes from. The value is 0 degrees to 360 degrees. 0 is the front of the sensor and with upward increment.
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5.3.1.48 keepWarm
This module allows to control the 'keep warm' feature in devices like coffee machines, kettles etc. It allows to keep water warm for a desired time. This ModuleClass inherits from binarySwitch (see clause 5.3.1.12) to store setting for the 'keep warm' feature. If the "powerState" data point in a keepWarmSwitch is "True" then the 'keep warm' function will be performed just after boiling (or heating) process is finished (otherwise this function will not be applied). Table 5.3.1.48-1: DataPoints of keepWarm ModuleClass Name Type R/W Optional Unit Documentation time xs:integer RW true The desired duration of 'keep water warm' function. It indicates how long water shall be kept warm, for example after the boiling in a kettle. The value indicates a time expressed in minutes. targetTemperature xs:float RW true C Content temperature.
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5.3.1.49 keypad
This ModuleClass provides the capability to perform a user defined service through the key-in number. For example, a user can define key 1 as "perform a takeout from a restaurant with combo meal 1". The IoT service provider or user can define the services. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 34 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.49-1: DataPoints of keypad ModuleClass Name Type R/W Optional Unit Documentation keyNumber xs:integer R false The number of the pressed key.
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5.3.1.50 liquidLevel
This ModuleClass provides the desired level of water (or other liquid) for an appliance, for example the desired level of milk for a cup of coffee from a coffee machine. Table 5.3.1.50-1: DataPoints of liquidLevel ModuleClass Name Type R/W Optional Unit Documentation liquidLevel hd:enumLiquidLevel RW false The desired level of water or other liquid, for example the desired level of milk in a cup of coffee (see clause 5.6.24).
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5.3.1.51 liquidRemaining
This ModuleClass provides the status of water level (or other liquid) for an appliance, for example the level of remaining milk in a coffee machine. Table 5.3.1.51-1: DataPoints of liquidRemaining ModuleClass Name Type R/W Optional Unit Documentation liquidRemaining hd:enumLiquidLevel R false The remaining level of water or other liquid in an appliance (see clause 5.6.24).
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5.3.1.52 lock
This ModuleClass provides the function to lock and unlock an object. Table 5.3.1.52-1: DataPoints of lock ModuleClass Name Type R/W Optional Unit Documentation lock xs:boolean RW false "True" indicates the object is locked, while "False" indicates the object is not locked.
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5.3.1.53 mediaSelect
This ModuleClass provides capabilities to control and monitor media input and output of device such as TV or SetTopBox. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 35 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.53-1: DataPoints of mediaSelect ModuleClass Name Type R/W Optional Unit Documentation mediaID xs:integer RW false The numeric index of the activated media in the supported media sources list "supportedMediaSources". supportedMediaSources list of hd:enumSupportedMediaSource R false List of supported input or output media for the given device (see clause 5.6.32). mediaName xs:string R true Specifies a pre-defined media input or output. status xs:boolean R true Specifies whether the specific media instance is selected ("True") or not ("False"). mediaType hd:enumSupportedMediaSource R false Specifies the type of the media (see clause 5.6.32).
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5.3.1.54 motionSensor
This ModuleClass provides the capabilities to indicate the occurrence of motion and raising of an alarm if the triggering criterion is met. Table 5.3.1.54-1: DataPoints of motionSensor ModuleClass Name Type R/W Optional Unit Documentation alarm xs:boolean R false The detection of the motion occurrence. silentTime xs:integer RW true s The time that a motionSensor restrains from sending an alarm in case continuous motions are detected after one alarm is produced. This data point can be used to avoid repeated alarm reports. sensitivity xs:integer RW true The level of the detection accuracy of the motion sensor. This data point can be used to control the number of the report.
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5.3.1.55 numberValue
This ModuleClass provides the capabilities to represent a number. It also has capabilities for controlled increment and decrement a counter. It can be used to present a number-related functionality in a technology where there is only a weak semantic specification of that functionality. Table 5.3.1.55-1: Actions of numberValue ModuleClass Return Type Name Argument Optional Documentation none decrementNumberValue none true Decrement the "numberValue" by the value of "step", down to the value of "minimum". none incrementNumberValue none true Increment the "numberValue" by the value of "stepValue", up to the value of "maxValue". none resetNumberValue none true Reset the "numberValue" to its "defaultValue". ETSI ETSI TS 118 123 V4.8.1 (2024-02) 36 oneM2M TS-0023 version 4.8.1 Release 4 Table 5.3.1.55-2: DataPoints of numberValue ModuleClass Name Type R/W Optional Unit Documentation numberValue xs:float RW false The actual value of the number. minValue xs:float RW true The optional minimum value of the number. The default is the system-specific minimum value for a float value. maxValue xs:float RW true The optional maximum value of the number. The default is the system-specific maximum value for a float value. defaultValue xs:float RW true The optional default value for the number. The default is 0,0. step xs:float RW true The optional step size for controlled increment and decrement. The default is 1,0 , even when this data point is not implemented.
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5.3.1.56 openLevel
This ModuleClass provides the capabilities to control and monitor the open status of an entity, for example a curtain. Table 5.3.1.56-1: Actions of openLevel ModuleClass Return Type Name Argument Optional Documentation none open None true Increase the open level by the amount of the "stepValue" up to the "maxLevel". none close None true Decrease the open level by the amount of the "stepValue" down to the "minLevel". Table 5.3.1.56-2: DataPoints of openLevel ModuleClass Name Type R/W Optional Unit Documentation openLevel xs:integer RW false pct The rounded percentage of the current open level of entity in the range of [0, 100]. 0 percentage shall mean the entity is closed. stepValue xs:integer RW true The step value used by the "open" and "close" actions. minLevel xs:integer RW true The minimum value allowed for the "openLevel" status. The default value is 0, which means fully closed. maxLevel xs:integer RW true The maximum value allowed for the "openLevel" status. The default value is 100, which means fully opened.
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5.3.1.57 operationMode
This ModuleClasses provides capabilities to control or monitor the operation mode of appliances. Table 5.3.1.57-1: DataPoints of operationMode ModuleClass Name Type R/W Optional Unit Documentation startPause xs:boolean RW false A value of "True" triggers or starts an operation, and "False" pauses the operation.
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5.3.1.58 overcurrentSensor
This ModuleClass provides capabilities for an over-current sensor. Table 5.3.1.58-1: DataPoints of overcurrentSensor ModuleClass Name Type R/W Optional Unit Documentation overcurrentStatus xs:boolean R false The overcurrentStatus indicates as follows: "True" indicates that an over-current is detected, and "False" indicates a normal status, this means that an over-current is not detected. detectedTime m2m:timestamp R true The time when the over-current was detected. duration xs:float R true ms The duration of the detected over-current. ETSI ETSI TS 118 123 V4.8.1 (2024-02) 37 oneM2M TS-0023 version 4.8.1 Release 4