4.5 Definition of default values

31.1273GPPnon-removable Universal Subscriber Identity Module (nrUSIM) application behavioural test specificationRelease 17TSUICC-terminal interaction

4.5.1 Definition of the Default UICC

As Default UICC for the present document the values of the Default UICC as defined in TS 31.121 [2] clause 4.1.1 are used with the following exceptions:

PIN

Key reference: 01

Logically: 0000

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

Hex

30

30

30

30

FF

FF

FF

FF

Unblock PIN

Key reference: 01

Logically: 11111111

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

Hex

31

31

31

31

31

31

31

31

PIN2

Key reference: 81

Logically: 9999

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

Hex

39

39

39

39

FF

FF

FF

FF

Unblock PIN2

Key reference: 81

Logically: 22222222

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

Hex

32

32

32

32

32

32

32

32

If the usage of EFs with random value generation is indicated, the appropriate values defined in clause 4.5.8 of the present document are used instead. For required EFs/DFs not explicitly defined in TS 31.121 [2], clause 4.1.1 or in the initial conditions of the particular test case, it is recommended to use the values from GSMA TS.48 [9] UICC Test Profile (see NOTE 2).

NOTE 1: Installation, provisioning or modification methods for EFs and DFs defined in the test USIMs or in the test cases are out of scope of the present document. Respective methods have to be provided by the UE vendor.

NOTE 2: The usage of file values defined in GSMA TS.48 [9] does not imply that remote SIM provisioning as defined in GSMA or profiles as defined by the TCA have to be supported by the nrUSIM.

4.5.2 Definition of E-UTRAN/EPC UICC

In general, the values of the E-UTRAN/EPC UICC are identical to the values of the Default UICC. E‑UTRAN/EPC UICC specific configurations, as defined in TS 31.121 [2], clause 4.4 apply.

EF/DF definitions provided in the Initial condition clause of a test case/test sequence take precedence over values defined as default.

4.5.3 Definition of E-UTRAN/EPC ISIM-UICC

The E-UTRAN/EPC ISIM-UICC shall contain a USIM as defined in clause 4.5.2 of the present document and an ISIM for IMS access as defined in TS 31.121 [2], clause 4.5.3.

EF/DF definitions provided in the Initial condition clause of a test case/test sequence take precedence over values defined as default.

4.5.4 Definition of ACSGL/OCSGL E-UTRAN/EPC UICC

In general, the values of the ACSGL/OCSGL E-UTRAN/EPC UICC are identical to the values of the Default UICC. ACSGL/OCSGL E-UTRAN/EPC UICC specific configurations, as defined in TS 31.121 [2], clause 4.6 apply.

EF/DF definitions provided in the Initial condition clause of a test case/test sequence take precedence over values defined as default.

4.5.5 Definition of Non-Access Stratum Configuration UICC

In general, the values of the Non-Access Stratum Configuration UICC are identical to the values of the Default UICC. Non-Access Stratum Configuration UICC specific configurations, as defined in TS 31.121 [2], clause 4.7 apply.

EF/DF definitions provided in the Initial condition clause of a test case/test sequence take precedence over values defined as default.

4.5.6 Definition of Non-Access Stratum Configuration of EUTRAN/EPC UICC

In general, the values of the Non-Access Stratum Configuration of EUTRAN/EPC UICC are identical to the values of the Default UICC. Non-Access Stratum Configuration of EUTRAN/EPC UICC specific configurations, as defined in TS 31.121 [2], clause 4.8 apply.

EF/DF definitions provided in the Initial condition clause of a test case/test sequence take precedence over values defined as default.

4.5.7 Definition of 5G-NR UICC

In general, the values of the 5G-NR UICC are identical to the values of the Default UICC. 5G-NR UICC specific configurations, as defined in TS 31.121 [2], clause 4.9 apply.

EF/DF definitions provided in the Initial condition clause of a test case/test sequence take precedence over values defined as default.

4.5.8 Definition of default values for EFs commonly used with random value generation

4.5.8.1 EFIMSI with 3-digit MNC and random value

EFIMSI

Logically:

2460813579135x

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

Hex

08

21

64

80

31

75

19

53

Fx

D: x ∈ {0x0; …; 0x9, 0xF}

4.5.8.2 EFIMSI "short", with 3-digit MNC and random value

EFIMSI

Logically:

24608135x

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

Hex

05

21

64

80

31

x5

FF

FF

FF

D: x ∈ {0x0; …; 0x9, 0xF}

4.5.8.3 EFIMSI "short", with 2-digit MNC and random value

EFIMSI

Logically:

24681357x

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

Hex

05

29

64

18

53

x7

FF

FF

FF

D: x ∈ {0x0; …; 0x9, 0xF}

4.5.8.4 EFIMSI "long", with 3-digit MNC and random value

EFIMSI

Logically:

24608111111111x

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

Hex

08

29

64

80

11

11

11

11

x1

D: x ∈ {0x0; …; 0x9, 0xF}

4.5.8.5 EFIMSI for SUCI calculation tests

EFIMSI

Logically:

24608135793579x

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

Hex

08

29

64

80

31

75

39

75

x9

D: x ∈ {0x0; …; 0x9, 0xF}

4.5.8.6 EFIMSI for "change IMSI" tests

EFIMSI

Logically:

24608122223333x

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

Hex

08

29

64

80

21

22

32

33

X3

D: x ∈ {0x0; …; 0x9, 0xF}

4.5.8.7 EFRouting_Indicator with 2-digit MNC and random value

EFRouting_Indicator

Logically:

1y

Coding:

Byte

B1

B2

B3

B4

Hex

y1

FF

FF

FF

D: y ∈ {0x0; …; 0x9, 0xF}

4.5.8.8 EFLOCI with "short" random TMSI value

EFLOCI

Logically:

LAI-MCC: 246

LAI-MNC: 081

LAI-LAC: 0001

TMSI: 0000214x

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

B10

B11

Hex

00

00

21

4x

42

16

80

00

01

FF

00

D: x ∈ {0x0; …; 0x9}

4.5.8.9 EFLOCI with "long" random TMSI value

EFLOCI

Logically:

LAI-MCC: 246

LAI-MNC: 081

LAI-LAC: 0001

TMSI: 214×0000

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

B9

B10

B11

Hex

21

4x

00

00

42

16

80

00

01

FF

00

D: x ∈ {0x0; …; 0x9}

4.5.8.10 EFEPSLOCI

EFEPSLOCI

Logically:

GUTI: 24608100010266uvwxyz

Last visited registered TAI: 246/081/0001

EPS update status: not updated

Coding:

Byte

B1

B2

B3

B4

B5

B6

B7

B8

Hex

0B

F6

42

16

80

00

01

02

B9

B10

B11

B12

B13

B14

B15

B16

66

vu

xw

zy

42

16

80

00

B17

B18

01

01

D: u, v, w, x, y, z ∈ {0x0; …; 0x9}