ETSI TS 102 624-2-2009 Broadband Radio Access Networks (BRAN) HiperMAN Conformance Testing for the Network layer of HiperMAN WiMAX terminal devices Part 2 Test Suite Structure and .pdf

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1、 ETSI TS 102 624-2 V1.2.1 (2009-11)Technical Specification Broadband Radio Access Networks (BRAN);HiperMAN;Conformance Testing for the Network layer ofHiperMAN/WiMAX terminal devices;Part 2: Test Suite Structure and Test Purposes (TSS Essential, or potentially Essential, IPRs notified to ETSI in res

2、pect of ETSI standards“, which is available from the ETSI Secretariat. Latest updates are available on the ETSI Web server (http:/webapp.etsi.org/IPR/home.asp). Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out by ETSI. No guarantee can be given as to th

3、e existence of other IPRs not referenced in ETSI SR 000 314 (or the updates on the ETSI Web server) which are, or may be, or may become, essential to the present document. Foreword This Technical Specification (TS) has been produced by ETSI Technical Committee Broadband Radio Access Networks (BRAN).

4、 The present document specifies the Test Suite Structure and Test Purposes (TSS Conformance Testing for the Network Layer of HiperMAN/WiMAX terminal devices, as identified below: Part 1: “Protocol Implementation Conformance Statement (PICS) proforma“; Part 2: “Test Suite Structure and Test Purposes

5、(TSS Part 3: “Abstract Test Suite (ATS)“. ETSI ETSI TS 102 624-2 V1.2.1 (2009-11)61 Scope The present document contains the Test Suite Structure (TSS) and Test Purposes (TP) to test the HiperMAN/WiMAX terminals based on the WiMAX Forum Network Architecture specifications Release 1.5. The objective o

6、f the present document is to provide a basis for conformance tests for WiMAX terminal equipment giving a high probability of air interface inter-operability between different manufacturers WiMAX equipment. The ISO standard for the methodology of conformance testing (ISO/IEC 9646-1 21 and ISO/IEC 964

7、6-2 22) as well as the ETSI rules for conformance testing (ETS 300 406 20) are used as a basis for the test methodology. 2 References References are either specific (identified by date of publication and/or edition number or version number) or non-specific. For a specific reference, subsequent revis

8、ions do not apply. Non-specific reference may be made only to a complete document or a part thereof and only in the following cases: - if it is accepted that it will be possible to use all future changes of the referenced document for the purposes of the referring document; - for informative referen

9、ces. Referenced documents which are not found to be publicly available in the expected location might be found at http:/docbox.etsi.org/Reference. NOTE: While any hyperlinks included in this clause were valid at the time of publication ETSI cannot guarantee their long term validity. 2.1 Normative re

10、ferences The following referenced documents are indispensable for the application of the present document. For dated references, only the edition cited applies. For non-specific references, the latest edition of the referenced document (including any amendments) applies. 1 WiMAX Forum (Release 1.5):

11、 “WiMAX Forum Network Architecture, Stage 2: Architecture Tenets, Reference Model and Reference Points, Base Specification“. NOTE: Available at http:/www.wimaxforum.org/resources/documents/technical/release. 2 WiMAX Forum (Release 1.5): “WiMAX Forum Network Architecture, Stage 3: Detailed Protocols

12、and Procedures, Base Specification“. NOTE: Available at http:/www.wimaxforum.org/resources/documents/technical/release. 3 ETSI TS 102 624-1: “Broadband Radio Access Networks (BRAN); HiperMAN; Conformance Testing for the Network layer of HiperMAN/WiMAX terminal devices; Part 1: Protocol Implementatio

13、n Conformance Statement (PICS) proforma“. 4 IEEE 802.16e-2005: “IEEE Standard for Local and metropolitan area networks - Part 16: Air Interface for Fixed and Mobile Broadband Wireless Access Systems. Amendment 2: Physical and Medium Access Control Layers for Combined Fixed and Mobile Operation in Li

14、censed Bands and Corrigendum 1“. NOTE: Available at http:/standards.ieee.org/getieee802/802.16.html. 5 IETF RFC 791 (September 1981): “Internet Protocol“. ETSI ETSI TS 102 624-2 V1.2.1 (2009-11)76 IETF RFC 1256 (September 1991): “ICMP Router Discovery Messages “. 7 IETF RFC 5216: “The EAP-TLS Authen

15、tication Protocol“. 8 IETF RFC 2131 (March 1997): “Dynamic Host Configuration Protocol“. 9 IETF RFC 2132 (March 1997): “DHCP Options and BOOTP Vendor Extensions“. 10 IETF RFC 3344 (August 2002): “IP Mobility Support for IPv4“. 11 IETF RFC 4187 (January 2006): “Extensible Authentication Protocol Meth

16、od for 3rd Generation Authentication and Key Agreement (EAP-AKA)“. 12 IETF RFC 5281: “Extensible Authentication Protocol Tunneled Transport Layer Security Authenticated Protocol Version 0 (EAP-TTLSv0)“. 13 Void. 14 IETF RFC 4861: “Neighbor Discovery for IP version 6 (IPv6)“. 15 IETF RFC 4862: “IPv6

17、Stateless Address Autoconfiguration“. 16 IETF RFC 3315 (July 2003): “Dynamic Host Configuration Protocol for IPv6 (DHCPv6)“. 17 IETF RFC 3775 (June 2004): “Mobility Support in IPv6“. 18 IETF RFC 4285 (January 2006): “Authentication Protocol for Mobile IPv6“. 19 IETF RFC 5246: “The Transport Layer Se

18、curity (TLS) Protocol Version 1.2“. 20 ETSI ETS 300 406: “Methods for Testing and Specification (MTS); Protocol and profile conformance testing specifications; Standardization methodology“. 21 ISO/IEC 9646-1 (1994): “Information technology - Open Systems Interconnection - Conformance testing methodo

19、logy and framework - Part 1: General concepts“. (See also ITU-T Recommendation X.290 (1991). 22 ISO/IEC 9646-2 (1994): “Information technology - Open Systems Interconnection - Conformance testing methodology and framework - Part 2: Abstract Test Suite specification“. (See also ITU-T Recommendation X

20、.291 (1991). 23 ISO/IEC 9646-6 (1994): “Information technology - Open Systems Interconnection - Conformance testing methodology and framework - Part 6: Protocol profile test specification“. 24 ISO/IEC 9646-7 (1995): “Information technology - Open Systems Interconnection - Conformance testing methodo

21、logy and framework - Part 7: Implementation Conformance Statement“. 25 ETSI TS 155 205: “Digital cellular telecommunications system (Phase 2+); Specification of the GSM-MILENAGE algorithms: An example algorithm set for the GSM Authentication and Key Generation Functions A3 and A8 (3GPP TS 55.205 ver

22、sion 7.0.0 Release 7)“. 26 WiMAX Forum (Release 1.5): “WiMAX Forum Network Architecture; Stage 3: Architecture, detailed Protocols and Procedures: WiMAX Over-The-Air General Provisioning System Specification“. NOTE: Available at http:/www.wimaxforum.org/resources/documents/technical/release. 27 WiMA

23、X Forum (Release 1.5): “WiMAX Forum Network Architecture; Stage 3: Architecture, detailed Protocols and Procedures: Over-The-Air Provisioning Stage 3: Architecture, detailed Protocols and Procedures; WiMAX Over-The-Air Provisioning Stage 3: Architecture, detailed Protocols and Procedures; Emergency

24、Services Support“. NOTE: Available at http:/www.wimaxforum.org/resources/documents/technical/release. 30 WiMAX Forum (Release 1.5): “WiMAX Forum Network Architecture; Stage 3: Architecture, detailed Protocols and Procedures; IP Multimedia Subsystem (IMS) Interworking“. NOTE: Available at http:/www.w

25、imaxforum.org/resources/documents/technical/release. 31 WiMAX Forum (Release 1.5): “WiMAX Forum Network Architecture; Protocol and Procedures for Location Based Services“. NOTE: Available at http:/www.wimaxforum.org/resources/documents/technical/release. 32 Void. 33 IETF RFC 2782 (February 2000): “A

26、 DNS RR for specifying the location of services (DNS SRV)“. 34 IETF RFC 2616 (June 1999): “Hypertext Transfer Protocol - HTTP/1.1“. 35 Open Mobile Alliance OMA-TS-DM-Protocol-V1-2-20070209-A (February 2007) (V1.2): “OMA Device Management Protocol“. 36 Broadband Forum (December 2007, Issue 1 Amnd. 2)

27、: “TR-069; CPE WAN Management Protocol v1.1“. 37 IETF RFC 5031 (January 2008): “A Uniform Resource Name (URN) for Emergency and Other Well-Known Services“. 38 Void. 39 ETSI TS 124 229: “Digital cellular telecommunications system (Phase 2+); Universal Mobile Telecommunications System (UMTS); Internet

28、 Protocol (IP) multimedia call control protocol based on Session Initiation Protocol (SIP) and Session Description Protocol (SDP); Stage 3 (3GPP TS 24.229 Release 7)“. 40 IETF RFC 4282 (December 2005): “The Network Access Identifier“. 41 ETSI TS 102 178: “Broadband Radio Access Networks (BRAN); Hipe

29、rMAN; Data Link Control (DLC) layer“. 2.2 Informative references The following referenced documents are not essential to the use of the present document but they assist the user with regard to a particular subject area. For non-specific references, the latest version of the referenced document (incl

30、uding any amendments) applies. i.1 ETSI TS 102 624-3: “Broadband Radio Access Networks (BRAN); HiperMAN; Conformance Testing for the Network layer of HiperMAN/WiMAX terminal devices; Part 3: Abstract Test Suite (ATS)“. ETSI ETSI TS 102 624-2 V1.2.1 (2009-11)93 Definitions and abbreviations 3.1 Defin

31、itions For the purposes of the present document, the terms and definitions given in ISO/IEC 9646-7 24, TS 102 178 41 and IEEE 802.16e 4 apply. 3.2 Abbreviations For the purposes of the present document, the abbreviations given in ISO/IEC 9646-1 21, ISO/IEC 9646-6 23, ISO/IEC 9646-7 24, TS 102 178 41

32、, IEEE 802.16e 4 and the following apply: AKA Authentication and Key Agreement AVP Attribute Value Pair BI Invalid BehaviourBO Inopportune Behaviour BS Base Station BU Binding Update BV Valid BehaviourDAD Duplicate Address Detection DHCP Dynamic Host Configuration Protocol DL DownlinkEAP Extensible

33、Authentication Protocol FQDN Fully Qualified Domain Name IP Internet Protocol ISF Initial Service Flow IUT Implementation Under Test MAC Medium Access Control MS Mobile Station NAI Network Access Identifier NAP Network Access Provider NSP Network Service Provider PDU Protocol Data Unit PICS Protocol

34、 Implementation Conformance Statement QoS Quality of Service TE Test Equipment TI Timer TLS Transport Layer Security TP Test Purposes TSS Test Suite Structure TTLS Tunneled Transport Layer Security UL Uplink 4 Test Suite Structure (TSS) 4.1 Structure Figure 1 shows the MS NWK Test Suite Structure (T

35、SS) including its subgroups defined for conformance testing. Group Function Sub-function Network Entry Client DHCPv4 Client MIP v4 mobility management IPv4 Transport Security ETSI ETSI TS 102 624-2 V1.2.1 (2009-11)10Group Function Sub-function Device authentication (EAP-TLS) Fragmentation User authe

36、ntication (EAP-AKA) User authentication (EAP-TTLSv0) FragmentationCMAC Keys EAP-TTLSv0/MS-CHAP-v02 IPv6 Transport Client MIP v6 mobility management OTA Provisioning and Activation OMA BootstrapProvisioning TR-069 based BootstrapProvisioningEmergency Services Location Based Services IP-IMS Interworki

37、ng Figure 1: TSS for WiMAX Forum Network architecture The test suite is structured as a tree with the root defined as MS representing the “Network architecture protocols for MS“. The tree is of rank 3 with the first rank a Group, the second a Function, and the third a sub-function. The third rank is

38、 broken down into the standard ISO conformance test categories CA, BV, BI, BO and TI (discussed below). 4.2 Test groups Each test group has up to a maximum of three levels. The first level is the protocol services. The second level separates the protocol services into the various functional areas. T

39、he third level are the sub-functional areas. The fourth level, if required, is used to indicate the category of the test of the test purpose. This fourth level is not shown in figure 1. 4.2.1 Protocol services The protocol groups identify the Network Layer protocol services defined in WiMAX Forum Ne

40、twork Architecture 1, and 2 relevant for MS. 4.2.1.1 Network Discovery and Selection (NWE) This test group contains test purposes for MS detection and selection of network service provider. 4.2.1.2 Proxy MIPv4 (DHCP) This test group contains test purposes for MS Proxy MIPv4 behaviour (DHCP) includin

41、g address acquisition, and address renewal. 4.2.1.3 Client MIPv4 (CMIPv4) This test group contains test purposes for MS Client MIPv4 behaviour (CMIPv4) including registration, re-registration, session termination, and mobility management. 4.2.1.4 IPv4 Transport (IPv4) This test group contains test p

42、urposes for specific IPv4 requirements (Fragmentation) defined in the Network Architecture. ETSI ETSI TS 102 624-2 V1.2.1 (2009-11)114.2.1.5 Security (SEC) This test group contains test purposes for MS authentication procedures, device and user authentication. 4.2.1.6 Client MIPv6 (CMIPv6) This test

43、 group contains test purposes for MS Client MIPv6 (CMIPv6) procedures including registration, handover, session renewal, and termination. 4.2.1.7 IPv6 Transport (IPv6) This test group contains test purposes for MS IPv6 address management, including acquisition, renewal, and fragmentation. 4.2.1.8 Ov

44、er-The-Air (OTA) Provisioning and Activation This test group contains test purposes for OTA MS management procedures based on either OMA or TR-069protocols. 4.2.1.9 Emergency Services This test group contains test purposes for MS Emergency Service functions. 4.2.1.10 Location Based Services This tes

45、t group contains test purposes for MS Location Based Service functions. 4.2.1.11 IP-IMS interworking This test group contains test purposes for MS interworking with IP-IMS services. 4.2.2 Main test types The main test types are the valid behaviour group, the invalid behaviour group and the inopportu

46、ne behaviour group. 4.2.2.1 Valid Behaviour (BV) tests This test group shall verify that the IUT reacts in conformity with the base specifications after receipt or exchange of valid Protocol Data Units (PDUs). Valid PDUs means that the exchange of messages and the content of the exchanged messages a

47、re considered as valid. 4.2.2.2 Invalid Behaviour (BI) tests This test sub group shall verify that the IUT reacts in conformity with the base specifications after receipt of a syntactically invalid PDU. 4.2.2.3 Inopportune Behaviour (BO) tests This test sub group shall verify that the IUT reacts in

48、conformity with the base specifications after receipt of a syntactically correct PDU not expected in the actual message exchange. 4.2.2.4 Timer and counter (TI) tests This test group shall verify that the IUT reacts in conformity with the base specifications after expiry of a defined timer or counte

49、r. ETSI ETSI TS 102 624-2 V1.2.1 (2009-11)125 Test Purposes (TP) 5.1 Introduction 5.1.1 TP definition conventions The TPs are defined by the rules shown in table 1. Table 1: TP definition rules TP Definition Item Item Description TP Id The TP Id is a unique identifier formed according to the TP naming conventions defined in the clause below. WiMAX Forum Nwrk Architecture Reference A pointer to the base specification requirement from which the TP is derived (specificat

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