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    ETSI EN 300 497-4-1999 Digital Enhanced Cordless Telecommunications (DECT) Common Interface (CI) Test Case Library (TCL) Part 4 Test Suite Structure and Test Purposes (TSS&TP) - Da_1.pdf

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    ETSI EN 300 497-4-1999 Digital Enhanced Cordless Telecommunications (DECT) Common Interface (CI) Test Case Library (TCL) Part 4 Test Suite Structure and Test Purposes (TSS&TP) - Da_1.pdf

    1、ETSI EN 300 497-4 V0.3.0 (1999-10) European Standard (Telecommunications series) Digital Enhanced Cordless Telecommunications (DECT); Common Interface (Ci); Test Case Library (TCL); Part 4: Test Suite Structure (TSS) and Test Purposes (TP) - Data Link Control (DLC) layer STDmETSI EN 300 497-4-ENGL 1

    2、999 = 3400855 0444b70 58b m ETSI EN 300 497-4 V0.3.0 (1999-10) 2 Reference RENIDECT-040131-4 (41pOOIOO.PDF) Keywords DECT, testing, TSS Essential, orpotentially Essential, IPRs notified to ETSI in respect of ETSI standards“, which is available from the ETSI Secretariat. Latest updates are available

    3、on the ETSI Web server (http:/lwuw.etsi.orgipr). Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out by ETSI. No guarantee can be given as to the existence of other IPRs not referenced in SR O00 3 14 (or the updates on the ETSI Web server) which are, or ma

    4、y be, or may become, essential to the present document. Foreword This European Standard (Telecommunications series) has been produced by ETSI Project Digital Enhanced Cordless Telecommunications (DECT). The present document is part 4 of a multi-part EN covering the Common Interface (CI); Test Case L

    5、ibrary (TCL), as identified below: Part 1: Part 2: Part 3: Part 4: Part 5: Part 6: “Test Suite Structure (TSS) and Test Purposes (TP) for Medium Access Control (MAC) layer“; “Abstract Test Suite (ATS) for Medium Access Control (MAC) layer - Portable radio Termination (PT)“; “Abstract Test Suite (ATS

    6、) for Medium Access Control (MAC) layer - Fixed radio Termination (FT)“; “Test Suite Structure (TSS) and Test Purposes (TP) - Data Link Control (DLC) layer“; “Abstract Test Suite (ATS) - Data Link Control (DLC) layer“; “Test Suite Structure (TSS) and Test Purposes (TP) - Network (NWK) layer - Portab

    7、le radio Termination (PT)“; “Abstract Test Suite (ATS) for Network (NWK) layer - Portable radio Termination (PT)“; “Test Suite Structure (TSS) and Test Purposes (TP) - Network (NWK) layer - Fixed radio Termination (FT)“; “Abstract Test Suite (ATS) for Network (NWK) layer - Fixed radio Termination (F

    8、T)“. Part 7: Part 8: Part 9: National transposition dates Date of adoption of this EN: Date of latest announcement of the present document (doa): 17 September 1999 3 1 December 1999 Date of latest publication of new National Standard or endorsement of the present document (dop/e): 30 June 2000 I Dat

    9、e of withdrawal of any conflicting National Standard (dow): 30 June 2000 I ETSI 6 ETSI EN 300 497-4 V0.3.0 (1999-10) I Scope The present document contains the Test Suite Structure (TSS) and Test Purposes (TP) to test the Digital Enhanced Cordless Telecommunications (DECT) Data Link Control (DLC) lay

    10、er. The objective of this test specification is to provide a basis for approval tests for DECT equipment giving a high probability of air interface inter-operability between different manufacturers DECT equipment. The IS0 standard for the methodology of conformance testing (ISOIIEC 9646-1 lo and ISO

    11、/IEC 9646-2 1 i) as well as the ETSI rules for conformance testing (ETS 300 406 9) are used as the basis for the test methodology. Test specifications for the Physical Layer (PHL), Medium Access Control (MAC) layer, and Network (NWK) layer are provided in other the DECT standards. 2 References The f

    12、ollowing documents contain provisions which, through reference in this text, constitute provisions of the present document. References are either specific (identified by date of publication, edition number, version number, etc.) or non-specific. For a specific reference, subsequent revisions do not

    13、apply. For a non-specific reference, the latest version applies. A non-specific reference to an ETS shall also be taken to refer to later versions published as an EN with the same number. EN 300 175-1 : “Digital Enhanced Cordless Telecommunications (DECT); Common Interface (CI); Part 1: Overview“. E

    14、N 300 175-2: “Digital Enhanced Cordless Telecommunications (DECT); Common Interface (CI); Part 2: Physical Layer (PHL)“. EN 300 175-3: “Digital Enhanced Cordless Telecommunications (DECT); Common Interface (CI); Part 3: Medium Access Control (MAC) layer“. EN 300 175-4: “Digital Enhanced Cordless Tel

    15、ecommunications (DECT); Common Interface (CI); Part 4: Data Link Control (DLC) layer“. EN 300 175-5: “Digital Enhanced Cordless Telecommunications (DECT); Common Interface (CI); Part 5: Network (NWK) layer“. EN 300 1 75-6: “Digital Enhanced Cordless Telecommunications (DECT); Common Interface (CI);

    16、Part 6: Identities and addressing“. EN 300 175-7: “Digital Enhanced Cordless Telecommunications (DECT); Common Interface (CI); Part 7: Security features“. EN 300 175-8: “Digital Enhanced Cordless Telecommunications (DECT); Common Interface (CI); Part 8: Speech coding and transmission“. ETS 300 406:

    17、“Methods for Testing and Specification (MTS); Protocol and profile conformance testing specifications; Standardization methodology“. ISOAEC 9646-1 : “Information technology; Open Systems Interconnection; Conformance testing methodology and framework; Part 1 : General concepts“. ISOIEC 9646-2: “Infor

    18、mation technology; Open Systems Interconnection; Conformance testing methodology and framework; Part 2: Abstract Test Suite Specification“. ETSI STD-ETSI EN 300 497-4-ENGL D 3400855 0444b75 Ob8 7 ETCI EN 300 497-4 V0.3.0 (1999-10) Directive 98/13/EC of the European Parliament and of the Council of 1

    19、2 February 1998 relating to telecommunications terminal equipment and satellite earth station equipment, including the mutual recognition of their conformity. TBR 6: “Digital Enhanced Cordless Telecommunications ECT); General terminal attachment requirements“. TBR 10: “Digital Enhanced Cordless Tele

    20、communications (DECT); General terminal attachment requirements; Telephony applications“. TBR 22 including Amendment 2: “Digital Enhanced Cordless Telecommunications (DECT); Attachment requirements for terminal equipment for DECT Generic Access Profile (GAP) applications“. I21 i31 1141 1151 3 3. I D

    21、efinitions and abbreviations Def i n it ions For the purposes of the present document, the definitions given in ISODEC 9646-1 lo, ISOIIEC 9646-2 i 11, EN 300 175-1 i, EN 300 175-4 4, EN 300 175-6 6 and EN 300 175-7 7 apply. 3.2 Abbreviations For the purposes of the present document, the following ab

    22、breviations apply: BI BO BV CL CIO CA C-plane DECT DLC FP FT IUT LAPC Lb LLME LT MAC NWK PDU PHL PICS PIXIT PP PT RFP SAP1 TDMA TP TSS ULI U-plane Invalid Behaviour Inopportune Behaviour Valid Behaviour Connectionless mode Connection Oriented mode Capability tests Control plane Digital Enhanced Cord

    23、less Telecommunications Data Link Control layer Fixed Part Fixed radio Termination Implementation Under Test a DLC layer C-plane protocol entity a DLC broadcast entity Lower Layer Management Entity Lower Tester Medium Access Control layer Network layer Protocol Data Unit Physical Layer Protocol Impl

    24、ementation Conformance Statement Protocol Implementation Extra Information for Testing Portable Part Portable radio Termination Radio Fixed Part Service Access Point Identifier Time Division Multiple Access Test Purposes Test Suite Structure Unassigned Link Identifier (U-Plane) User plane ETSI 8 ETS

    25、I EN 300 497-4 V0.3.0 (1999-10) Management Entity 4 Medium Access Control layer (24 Physical layer (1) Test Suite Structure (TSS) 4. I Overview The Data Link Control (DLC) layer is layer 2b of the DECT protocol stack. The separation of the user information fiom the DECT signalling data is managed by

    26、 the allocation of two independent planes: - - the Control plane (C-plane). the User plane (U-plane); and (3) Lower Network layer Figure 1: DECT protocol stack The U-plane is the part of the DLC implementation that is responsible for the transmission of the user data. The U-plane may provide a serie

    27、s of different services and facilities, grouped into categories (LUX families). The C-Plane is the second part of DECT DLC and is mainly involved with the transfer of signalling information. It provides the means to support DECT Connection Oriented, Connectionless and Broadcast services (the broadca

    28、st service exists only at the FT to PT direction). DECT DLC provides three classes of operation (Unacknowledged for CL services, Single frame and Multifiame for C/O services). At the DLC layer, C-plane and U-plane resources are considered as completely independent. The association of C and U-plane r

    29、esources to serve a higher layer service (e.g. to setup and maintain a call) is a NWK layer responsibility. Moreover, no interaction is required between the services provided by each of the planes. Figure 2 shows the DLC (TSS) including its subgroups and defined for the conformance testing. ETSI STD

    30、-ETSI EN 300 497-4-ENGL 1997 3400855 0444b77 930 = 9 ETSI EN 300 497-4 V0.3.0 (1999-10) DLC - -I C-piane - -f Class U d Class A -I Class B -I Lb Class O Class I P -i U-plane -I Class 2 -+ Class 3 4.2 Figure 2: DLC TSS TSS The test suite is structured as a tree with a first level defined as DLC repre

    31、senting the protocol group “DLC for Portable Part (PP) and Fixed Part (FP)“. 4.3 Test groups The test groups are organized in three levels. The first level creates two protocol groups representing the protocol plane. The second level separates the protocol plane in functional modules. The last level

    32、 contains the standard IS0 subgroups CA, BV, BO and BI. ETSI STD-ETSI EN 300 497-4-ENGL $999 m 3400855 0444678 877 IO ETSI EN 300 497-4 V0.3.0 (1999-10) 4.3.1 Protocol groups The protocol groups identifies the DECT DLC planes, C-Plane and U-Plane, as defined in EN 300 175 i to 8. 4.3.1.1 C-plane The

    33、 C-plane protocol group is divided in four functional modules. The first functional module identifies the LAPC Class U services. The second functional module identifies the LAPC Class A services. The third functional module identifies the LAPC Class B services. The last functional module identifies

    34、the broadcast services Lb. 4.3.1.2 U-plane The U-plane protocol group is divided in four functional modules. The first functional module identifies the Class O transmission procedures. The second functional module identifies the Class 1 transmission procedures. The third functional module identifies

    35、 the Class 2 transmission procedures. The last functional module identifies the Class 3 transmission procedures. 4.3.2 Main test groups The main test groups are the Capability group (CA), the Valid Behaviour group (BV), the inopportune Behaviour group (BO) and the Invalid Behaviour group (BI). 4.3.2

    36、.1 Capability (CA) tests This test sub group shall provide limited testing of the major IUT capabilities aiming to assure that the claimed capabilities are correctly supported, in accordance with the PICS. 4.3.2.2 Valid Behaviour (BV) tests This test sub group shall veri that the IUT reacts in confo

    37、rmity with the standard, on receipt or exchange of a valid Protocol Data Units (PDUs). Valid PDUs, means, that the exchange of messages and the content of the exchanged messages are considered as valid. 4.3.2.3 Inopportune Behaviour (BO) tests This test sub group shall veri that the IUT is capable o

    38、f a valid reaction, when an inopportune protocol event occurs. Such an event is syntactically correct but it occurs when it is not expected. 4.3.2.4 Invalid Behaviour (BI) tests This test sub group shall veri that the IUT reacts in conformity with the standard, on receipt of a syntactically invalid

    39、Protocol Data Unit (PDU). ETSI STD.ETSIEN 300 497-4-ENGL 1999 3400855 0444679 703 TP Id according to the TP naming conventions 11 ETSI EN 300 497-4 V0.3.0 (1999-10) Reference Initial condition Stimulus 5 Test Purposes (TP) 5.1 Introduction 5.1 .I TP definition conventions The TPs are defined followi

    40、ng particular rules as shown in table 1. Table 1: TP definition rules Reference Condition Stimulus Expected behaviour Expected behaviour The TP Id is a unique identifier it shall be specified according to the TP naming conventions defined in the subclause below. The reference should contain the refe

    41、rences of the subject to be validated by the actus TP (specification reference, clause, paragraph). The condition defines in which initial state the IUT has to be to apply the actual TP. The stimulus defines the test event to which the TP is related. Definition of the events that are expected from t

    42、he IUT to conform to the base 5.1.2 TP naming conventions The identifier of the TP is built according to table 2. Table 2: TP naming convention Identifier: TPx-*n nn = functional module U C-plane Class U services A C-plane Class A services B C-plane Class B services L C-plane Broadcast services O U-

    43、plane transmission Class O 1 U-plane transmission Class 1 2 U-plane transmission Class 2 3 U-plane transmission Class 3 v BV, Valid Behaviour Tests O BO, Inopportune Behaviour Tests I Bi, invalid Behaviour Tests x = Type of testing C CA, Capability Tests cnnn = sequential number (000-999) Test Purpo

    44、se Number 5.1.3 Sources of TP definitions All TPs are specified according to EN 300 175-4 4. The functions of the LC entity (frame delimiting, checksum generationchecking, fragmentation of DLC frames, and routing of frame to/from logical channels) are implicitly covered by the TP designed for the C-

    45、plane. STD-ETSI EN 300 497-4-ENGL 1999 I 3400855 0444680 425 12 ETSI EN 300 497-4 V0.3.0 (1999-10) DLCIC-PlanelClassUITPUC-000 DLCIC-PlanelClassUITPUC-O01 DLCIC-PlanelClassUTTPUC-O02 DLCIC-PlanelClassUTTPUC-O03 5.2 C-plane EN 300 175-4 4, subclause 9.3. Only applicable when a procedure is specified

    46、in the PIXIT to force the IUT to send an UI frame. Verify that the IUT is able to generate an UI frame by using MAC connectionless services. EN 300 175-4 4, subclause 9.3. Only applicable when a procedure is specified in the PIXIT to force the IUT to send an UI frame. Verify that the IUT is able to

    47、generate an UI frame by using an open MAC connection. EN 300 175-4 4, subclause 9.3. Only applicable when a procedure is specified in the PIXIT to determine UI frame reception. Verify that the IUT is able to receive an UI frame over MAC connectionless services. EN 300 175-4 4, subclause 9.3. Only ap

    48、plicable when a procedure is specified in the PIXIT to determine UI frame reception. Verify that the IUT is able to receive an UI frame over an open MAC 5.2.1 LAPC Class U service DLCIC-PlanelClassUTTPUV-O00 DLCIC-PlanelClassUTTPUV-O01 5.2.1.1 CA tests EN 300 175-4 4, subclause 9.3.2. Only applicabl

    49、e when a procedure is specified in the PIXIT to determine UI frame reception. Verify that the IUT, on receipt of the first UI frame in an open MAC connection, considers the Class U link as established. EN 300 175-4 4, subclause 9.3.4. Only applicable when a procedure is specified in the PIXIT to determine UI frame reception. VeriS that the IUT, on receipt of the a Class U upward release from the peer DLC entity in an open MAC connection, considers the Class U link as released. ETSI STD-ETSI EN 300 497-4-ENGL 1999 m 3400855 0444b81 3bL 9 ETSI EN


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