1 /* Do not modify this file. Changes will be overwritten. */
2 /* Generated automatically by the ASN.1 to Wireshark dissector compiler */
4 /* ../../tools/asn2wrs.py -p ulp -c ./ulp.cnf -s ./packet-ulp-template -D . -O ../../epan/dissectors ULP.asn SUPL.asn ULP-Components.asn */
6 /* Input file: packet-ulp-template.c */
8 #line 1 "../../asn1/ulp/packet-ulp-template.c"
10 * Routines for OMA UserPlane Location Protocol packet dissection
11 * Copyright 2006, Anders Broman <anders.broman@ericsson.com>
15 * Wireshark - Network traffic analyzer
16 * By Gerald Combs <gerald@wireshark.org>
17 * Copyright 1998 Gerald Combs
19 * This program is free software; you can redistribute it and/or
20 * modify it under the terms of the GNU General Public License
21 * as published by the Free Software Foundation; either version 2
22 * of the License, or (at your option) any later version.
24 * This program is distributed in the hope that it will be useful,
25 * but WITHOUT ANY WARRANTY; without even the implied warranty of
26 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
27 * GNU General Public License for more details.
29 * You should have received a copy of the GNU General Public License
30 * along with this program; if not, write to the Free Software
31 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
33 * ref OMA-TS-ULP-V1_0-20060127-C
34 * http://www.openmobilealliance.org
40 #include <epan/packet.h>
41 #include <epan/prefs.h>
42 #include <epan/asn1.h>
44 #include "packet-per.h"
45 #include "packet-tcp.h"
46 #include "packet-gsm_map.h"
48 #define PNAME "OMA UserPlane Location Protocol"
52 void proto_register_ulp(void);
54 static dissector_handle_t rrlp_handle
;
55 static dissector_handle_t lpp_handle
;
57 /* IANA Registered Ports
58 * oma-ulp 7275/tcp OMA UserPlane Location
59 * oma-ulp 7275/udp OMA UserPlane Location
61 static guint gbl_ulp_port
= 7275;
63 /* Initialize the protocol and registered fields */
64 static int proto_ulp
= -1;
67 #define ULP_HEADER_SIZE 2
69 static gboolean ulp_desegment
= TRUE
;
72 /*--- Included file: packet-ulp-hf.c ---*/
73 #line 1 "../../asn1/ulp/packet-ulp-hf.c"
74 static int hf_ulp_ULP_PDU_PDU
= -1; /* ULP_PDU */
75 static int hf_ulp_length
= -1; /* INTEGER_0_65535 */
76 static int hf_ulp_version
= -1; /* Version */
77 static int hf_ulp_sessionID
= -1; /* SessionID */
78 static int hf_ulp_message
= -1; /* UlpMessage */
79 static int hf_ulp_msSUPLINIT
= -1; /* SUPLINIT */
80 static int hf_ulp_msSUPLSTART
= -1; /* SUPLSTART */
81 static int hf_ulp_msSUPLRESPONSE
= -1; /* SUPLRESPONSE */
82 static int hf_ulp_msSUPLPOSINIT
= -1; /* SUPLPOSINIT */
83 static int hf_ulp_msSUPLPOS
= -1; /* SUPLPOS */
84 static int hf_ulp_msSUPLEND
= -1; /* SUPLEND */
85 static int hf_ulp_msSUPLAUTHREQ
= -1; /* SUPLAUTHREQ */
86 static int hf_ulp_msSUPLAUTHRESP
= -1; /* SUPLAUTHRESP */
87 static int hf_ulp_msSUPLTRIGGEREDSTART
= -1; /* Ver2_SUPLTRIGGEREDSTART */
88 static int hf_ulp_msSUPLTRIGGEREDRESPONSE
= -1; /* Ver2_SUPLTRIGGEREDRESPONSE */
89 static int hf_ulp_msSUPLTRIGGEREDSTOP
= -1; /* Ver2_SUPLTRIGGEREDSTOP */
90 static int hf_ulp_msSUPLNOTIFY
= -1; /* Ver2_SUPLNOTIFY */
91 static int hf_ulp_msSUPLNOTIFYRESPONSE
= -1; /* Ver2_SUPLNOTIFYRESPONSE */
92 static int hf_ulp_msSUPLSETINIT
= -1; /* Ver2_SUPLSETINIT */
93 static int hf_ulp_msSUPLREPORT
= -1; /* Ver2_SUPLREPORT */
94 static int hf_ulp_posMethod
= -1; /* PosMethod */
95 static int hf_ulp_notification
= -1; /* Notification */
96 static int hf_ulp_sLPAddress
= -1; /* SLPAddress */
97 static int hf_ulp_qoP
= -1; /* QoP */
98 static int hf_ulp_sLPMode
= -1; /* SLPMode */
99 static int hf_ulp_mAC
= -1; /* MAC */
100 static int hf_ulp_keyIdentity
= -1; /* KeyIdentity */
101 static int hf_ulp_ver2_SUPL_INIT_extension
= -1; /* Ver2_SUPL_INIT_extension */
102 static int hf_ulp_notificationType
= -1; /* NotificationType */
103 static int hf_ulp_encodingType
= -1; /* EncodingType */
104 static int hf_ulp_requestorId
= -1; /* OCTET_STRING_SIZE_1_maxReqLength */
105 static int hf_ulp_requestorIdType
= -1; /* FormatIndicator */
106 static int hf_ulp_clientName
= -1; /* OCTET_STRING_SIZE_1_maxClientLength */
107 static int hf_ulp_clientNameType
= -1; /* FormatIndicator */
108 static int hf_ulp_ver2_Notification_extension
= -1; /* Ver2_Notification_extension */
109 static int hf_ulp_sETCapabilities
= -1; /* SETCapabilities */
110 static int hf_ulp_locationId
= -1; /* LocationId */
111 static int hf_ulp_ver2_SUPL_START_extension
= -1; /* Ver2_SUPL_START_extension */
112 static int hf_ulp_posTechnology
= -1; /* PosTechnology */
113 static int hf_ulp_prefMethod
= -1; /* PrefMethod */
114 static int hf_ulp_posProtocol
= -1; /* PosProtocol */
115 static int hf_ulp_ver2_SETCapabilities_extension
= -1; /* Ver2_SETCapabilities_extension */
116 static int hf_ulp_agpsSETassisted
= -1; /* BOOLEAN */
117 static int hf_ulp_agpsSETBased
= -1; /* BOOLEAN */
118 static int hf_ulp_autonomousGPS
= -1; /* BOOLEAN */
119 static int hf_ulp_aFLT
= -1; /* BOOLEAN */
120 static int hf_ulp_eCID
= -1; /* BOOLEAN */
121 static int hf_ulp_eOTD
= -1; /* BOOLEAN */
122 static int hf_ulp_oTDOA
= -1; /* BOOLEAN */
123 static int hf_ulp_ver2_PosTechnology_extension
= -1; /* Ver2_PosTechnology_extension */
124 static int hf_ulp_tia801
= -1; /* BOOLEAN */
125 static int hf_ulp_rrlp
= -1; /* BOOLEAN */
126 static int hf_ulp_rrc
= -1; /* BOOLEAN */
127 static int hf_ulp_ver2_PosProtocol_extension
= -1; /* Ver2_PosProtocol_extension */
128 static int hf_ulp_sETAuthKey
= -1; /* SETAuthKey */
129 static int hf_ulp_keyIdentity4
= -1; /* KeyIdentity4 */
130 static int hf_ulp_ver2_SUPL_RESPONSE_extension
= -1; /* Ver2_SUPL_RESPONSE_extension */
131 static int hf_ulp_shortKey
= -1; /* BIT_STRING_SIZE_128 */
132 static int hf_ulp_longKey
= -1; /* BIT_STRING_SIZE_256 */
133 static int hf_ulp_requestedAssistData
= -1; /* RequestedAssistData */
134 static int hf_ulp_position
= -1; /* Position */
135 static int hf_ulp_sUPLPOS
= -1; /* SUPLPOS */
136 static int hf_ulp_ver
= -1; /* Ver */
137 static int hf_ulp_ver2_SUPL_POS_INIT_extension
= -1; /* Ver2_SUPL_POS_INIT_extension */
138 static int hf_ulp_almanacRequested
= -1; /* BOOLEAN */
139 static int hf_ulp_utcModelRequested
= -1; /* BOOLEAN */
140 static int hf_ulp_ionosphericModelRequested
= -1; /* BOOLEAN */
141 static int hf_ulp_dgpsCorrectionsRequested
= -1; /* BOOLEAN */
142 static int hf_ulp_referenceLocationRequested
= -1; /* BOOLEAN */
143 static int hf_ulp_referenceTimeRequested
= -1; /* BOOLEAN */
144 static int hf_ulp_acquisitionAssistanceRequested
= -1; /* BOOLEAN */
145 static int hf_ulp_realTimeIntegrityRequested
= -1; /* BOOLEAN */
146 static int hf_ulp_navigationModelRequested
= -1; /* BOOLEAN */
147 static int hf_ulp_navigationModelData
= -1; /* NavigationModel */
148 static int hf_ulp_ver2_RequestedAssistData_extension
= -1; /* Ver2_RequestedAssistData_extension */
149 static int hf_ulp_gpsWeek
= -1; /* INTEGER_0_1023 */
150 static int hf_ulp_gpsToe
= -1; /* INTEGER_0_167 */
151 static int hf_ulp_nSAT
= -1; /* INTEGER_0_31 */
152 static int hf_ulp_toeLimit
= -1; /* INTEGER_0_10 */
153 static int hf_ulp_satInfo
= -1; /* SatelliteInfo */
154 static int hf_ulp_SatelliteInfo_item
= -1; /* SatelliteInfoElement */
155 static int hf_ulp_satId
= -1; /* INTEGER_0_63 */
156 static int hf_ulp_iODE
= -1; /* INTEGER_0_255 */
157 static int hf_ulp_posPayLoad
= -1; /* PosPayLoad */
158 static int hf_ulp_velocity
= -1; /* Velocity */
159 static int hf_ulp_ver2_SUPL_POS_extension
= -1; /* Ver2_SUPL_POS_extension */
160 static int hf_ulp_tia801payload
= -1; /* OCTET_STRING_SIZE_1_8192 */
161 static int hf_ulp_rrcPayload
= -1; /* OCTET_STRING_SIZE_1_8192 */
162 static int hf_ulp_rrlpPayload
= -1; /* T_rrlpPayload */
163 static int hf_ulp_ver2_PosPayLoad_extension
= -1; /* Ver2_PosPayLoad_extension */
164 static int hf_ulp_statusCode
= -1; /* StatusCode */
165 static int hf_ulp_ver2_SUPL_END_extension
= -1; /* Ver2_SUPL_END_extension */
166 static int hf_ulp_sPCSETKey
= -1; /* SPCSETKey */
167 static int hf_ulp_sPCTID
= -1; /* SPCTID */
168 static int hf_ulp_sPCSETKeylifetime
= -1; /* SPCSETKeylifetime */
169 static int hf_ulp_notificationResponse
= -1; /* NotificationResponse */
170 static int hf_ulp_targetSETID
= -1; /* SETId */
171 static int hf_ulp_applicationID
= -1; /* ApplicationID */
172 static int hf_ulp_multipleLocationIds
= -1; /* MultipleLocationIds */
173 static int hf_ulp_thirdParty
= -1; /* ThirdParty */
174 static int hf_ulp_triggerType
= -1; /* TriggerType */
175 static int hf_ulp_triggerParams
= -1; /* TriggerParams */
176 static int hf_ulp_reportingCap
= -1; /* ReportingCap */
177 static int hf_ulp_causeCode
= -1; /* CauseCode */
178 static int hf_ulp_periodicParams
= -1; /* PeriodicParams */
179 static int hf_ulp_areaEventParams
= -1; /* AreaEventParams */
180 static int hf_ulp_numberOfFixes
= -1; /* INTEGER_1_8639999 */
181 static int hf_ulp_intervalBetweenFixes
= -1; /* INTEGER_1_8639999 */
182 static int hf_ulp_startTime
= -1; /* INTEGER_0_2678400 */
183 static int hf_ulp_areaEventType
= -1; /* AreaEventType */
184 static int hf_ulp_locationEstimate
= -1; /* BOOLEAN */
185 static int hf_ulp_repeatedReportingParams
= -1; /* RepeatedReportingParams */
186 static int hf_ulp_stopTime
= -1; /* INTEGER_0_11318399 */
187 static int hf_ulp_geographicTargetAreaList
= -1; /* GeographicTargetAreaList */
188 static int hf_ulp_areaIdLists
= -1; /* SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList */
189 static int hf_ulp_areaIdLists_item
= -1; /* AreaIdList */
190 static int hf_ulp_minimumIntervalTime
= -1; /* INTEGER_1_604800 */
191 static int hf_ulp_maximumNumberOfReports
= -1; /* INTEGER_1_1024 */
192 static int hf_ulp_GeographicTargetAreaList_item
= -1; /* GeographicTargetArea */
193 static int hf_ulp_circularArea
= -1; /* CircularArea */
194 static int hf_ulp_ellipticalArea
= -1; /* EllipticalArea */
195 static int hf_ulp_polygonArea
= -1; /* PolygonArea */
196 static int hf_ulp_areaIdSet
= -1; /* AreaIdSet */
197 static int hf_ulp_areaIdSetType
= -1; /* AreaIdSetType */
198 static int hf_ulp_geoAreaMappingList
= -1; /* GeoAreaMappingList */
199 static int hf_ulp_AreaIdSet_item
= -1; /* AreaId */
200 static int hf_ulp_gSMAreaId
= -1; /* GSMAreaId */
201 static int hf_ulp_wCDMAAreaId
= -1; /* WCDMAAreaId */
202 static int hf_ulp_cDMAAreaId
= -1; /* CDMAAreaId */
203 static int hf_ulp_hRPDAreaId
= -1; /* HRPDAreaId */
204 static int hf_ulp_uMBAreaId
= -1; /* UMBAreaId */
205 static int hf_ulp_lTEAreaId
= -1; /* LTEAreaId */
206 static int hf_ulp_wLANAreaId
= -1; /* WLANAreaId */
207 static int hf_ulp_wiMAXAreaId
= -1; /* WimaxAreaId */
208 static int hf_ulp_refMCC
= -1; /* INTEGER_0_999 */
209 static int hf_ulp_refMNC
= -1; /* INTEGER_0_999 */
210 static int hf_ulp_refLAC
= -1; /* INTEGER_0_65535 */
211 static int hf_ulp_refCI
= -1; /* INTEGER_0_65535 */
212 static int hf_ulp_refUC
= -1; /* INTEGER_0_268435455 */
213 static int hf_ulp_refSID
= -1; /* INTEGER_0_65535 */
214 static int hf_ulp_refNID
= -1; /* INTEGER_0_32767 */
215 static int hf_ulp_refBASEID
= -1; /* INTEGER_0_65535 */
216 static int hf_ulp_refSECTORID
= -1; /* BIT_STRING_SIZE_128 */
217 static int hf_ulp_refCI_01
= -1; /* BIT_STRING_SIZE_29 */
218 static int hf_ulp_apMACAddress
= -1; /* BIT_STRING_SIZE_48 */
219 static int hf_ulp_bsID_MSB
= -1; /* BIT_STRING_SIZE_24 */
220 static int hf_ulp_bsID_LSB
= -1; /* BIT_STRING_SIZE_24 */
221 static int hf_ulp_GeoAreaMappingList_item
= -1; /* GeoAreaIndex */
222 static int hf_ulp_supportedNetworkInformation
= -1; /* SupportedNetworkInformation */
223 static int hf_ulp_reportingMode
= -1; /* ReportingMode */
224 static int hf_ulp_gnssPosTechnology
= -1; /* GNSSPosTechnology */
225 static int hf_ulp_repMode
= -1; /* RepMode */
226 static int hf_ulp_batchRepConditions
= -1; /* BatchRepConditions */
227 static int hf_ulp_batchRepType
= -1; /* BatchRepType */
228 static int hf_ulp_num_interval
= -1; /* INTEGER_1_1024 */
229 static int hf_ulp_num_minutes
= -1; /* INTEGER_1_2048 */
230 static int hf_ulp_endofsession
= -1; /* NULL */
231 static int hf_ulp_reportPosition
= -1; /* BOOLEAN */
232 static int hf_ulp_reportMeasurements
= -1; /* BOOLEAN */
233 static int hf_ulp_intermediateReports
= -1; /* BOOLEAN */
234 static int hf_ulp_discardOldest
= -1; /* BOOLEAN */
235 static int hf_ulp_sessionList
= -1; /* SessionList */
236 static int hf_ulp_reportDataList
= -1; /* ReportDataList */
237 static int hf_ulp_moreComponents
= -1; /* NULL */
238 static int hf_ulp_SessionList_item
= -1; /* SessionInformation */
239 static int hf_ulp_ReportDataList_item
= -1; /* ReportData */
240 static int hf_ulp_positionData
= -1; /* PositionData */
241 static int hf_ulp_resultCode
= -1; /* ResultCode */
242 static int hf_ulp_timestamp
= -1; /* TimeStamp */
243 static int hf_ulp_ganssSignalsInfo
= -1; /* GANSSsignalsInfo */
244 static int hf_ulp_GANSSsignalsInfo_item
= -1; /* GANSSSignalsDescription */
245 static int hf_ulp_ganssId
= -1; /* INTEGER_0_15 */
246 static int hf_ulp_gANSSSignals
= -1; /* GANSSSignals */
247 static int hf_ulp_absoluteTime
= -1; /* UTCTime */
248 static int hf_ulp_relativeTime
= -1; /* INTEGER_0_31536000 */
249 static int hf_ulp_notificationMode
= -1; /* NotificationMode */
250 static int hf_ulp_e_SLPAddress
= -1; /* SLPAddress */
251 static int hf_ulp_historicReporting
= -1; /* HistoricReporting */
252 static int hf_ulp_protectionLevel
= -1; /* ProtectionLevel */
253 static int hf_ulp_minimumMajorVersion
= -1; /* INTEGER_0_255 */
254 static int hf_ulp_allowedReportingType
= -1; /* AllowedReportingType */
255 static int hf_ulp_reportingCriteria
= -1; /* ReportingCriteria */
256 static int hf_ulp_timeWindow
= -1; /* TimeWindow */
257 static int hf_ulp_maxNumberofReports
= -1; /* INTEGER_1_65536 */
258 static int hf_ulp_minTimeInterval
= -1; /* INTEGER_1_86400 */
259 static int hf_ulp_startTime_01
= -1; /* INTEGER_M525600_M1 */
260 static int hf_ulp_stopTime_01
= -1; /* INTEGER_M525599_0 */
261 static int hf_ulp_protlevel
= -1; /* ProtLevel */
262 static int hf_ulp_basicProtectionParams
= -1; /* BasicProtectionParams */
263 static int hf_ulp_keyIdentifier
= -1; /* OCTET_STRING_SIZE_8 */
264 static int hf_ulp_basicReplayCounter
= -1; /* INTEGER_0_65535 */
265 static int hf_ulp_basicMAC
= -1; /* BIT_STRING_SIZE_32 */
266 static int hf_ulp_initialApproximateposition
= -1; /* Position */
267 static int hf_ulp_utran_GPSReferenceTimeResult
= -1; /* UTRAN_GPSReferenceTimeResult */
268 static int hf_ulp_utran_GANSSReferenceTimeResult
= -1; /* UTRAN_GANSSReferenceTimeResult */
269 static int hf_ulp_utran_GPSReferenceTimeAssistance
= -1; /* UTRAN_GPSReferenceTimeAssistance */
270 static int hf_ulp_utran_GANSSReferenceTimeAssistance
= -1; /* UTRAN_GANSSReferenceTimeAssistance */
271 static int hf_ulp_emergencyCallLocation
= -1; /* NULL */
272 static int hf_ulp_serviceCapabilities
= -1; /* ServiceCapabilities */
273 static int hf_ulp_supportedBearers
= -1; /* SupportedBearers */
274 static int hf_ulp_servicesSupported
= -1; /* ServicesSupported */
275 static int hf_ulp_reportingCapabilities
= -1; /* ReportingCap */
276 static int hf_ulp_eventTriggerCapabilities
= -1; /* EventTriggerCapabilities */
277 static int hf_ulp_sessionCapabilities
= -1; /* SessionCapabilities */
278 static int hf_ulp_periodicTrigger
= -1; /* BOOLEAN */
279 static int hf_ulp_areaEventTrigger
= -1; /* BOOLEAN */
280 static int hf_ulp_geoAreaShapesSupported
= -1; /* GeoAreaShapesSupported */
281 static int hf_ulp_maxNumGeoAreaSupported
= -1; /* INTEGER_0_maxNumGeoArea */
282 static int hf_ulp_maxAreaIdListSupported
= -1; /* INTEGER_0_maxAreaIdList */
283 static int hf_ulp_maxAreaIdSupportedPerList
= -1; /* INTEGER_0_maxAreaId */
284 static int hf_ulp_ellipticalArea_01
= -1; /* BOOLEAN */
285 static int hf_ulp_polygonArea_01
= -1; /* BOOLEAN */
286 static int hf_ulp_maxNumberTotalSessions
= -1; /* INTEGER_1_128 */
287 static int hf_ulp_maxNumberPeriodicSessions
= -1; /* INTEGER_1_32 */
288 static int hf_ulp_maxNumberTriggeredSessions
= -1; /* INTEGER_1_32 */
289 static int hf_ulp_gsm
= -1; /* BOOLEAN */
290 static int hf_ulp_wcdma
= -1; /* BOOLEAN */
291 static int hf_ulp_lte
= -1; /* BOOLEAN */
292 static int hf_ulp_cdma
= -1; /* BOOLEAN */
293 static int hf_ulp_hprd
= -1; /* BOOLEAN */
294 static int hf_ulp_umb
= -1; /* BOOLEAN */
295 static int hf_ulp_wlan
= -1; /* BOOLEAN */
296 static int hf_ulp_wiMAX
= -1; /* BOOLEAN */
297 static int hf_ulp_lpp
= -1; /* BOOLEAN */
298 static int hf_ulp_posProtocolVersionRRLP
= -1; /* PosProtocolVersion3GPP */
299 static int hf_ulp_posProtocolVersionRRC
= -1; /* PosProtocolVersion3GPP */
300 static int hf_ulp_posProtocolVersionTIA801
= -1; /* PosProtocolVersion3GPP2 */
301 static int hf_ulp_posProtocolVersionLPP
= -1; /* PosProtocolVersion3GPP */
302 static int hf_ulp_majorVersionField
= -1; /* INTEGER_0_255 */
303 static int hf_ulp_technicalVersionField
= -1; /* INTEGER_0_255 */
304 static int hf_ulp_editorialVersionField
= -1; /* INTEGER_0_255 */
305 static int hf_ulp_PosProtocolVersion3GPP2_item
= -1; /* Supported3GPP2PosProtocolVersion */
306 static int hf_ulp_revisionNumber
= -1; /* BIT_STRING_SIZE_6 */
307 static int hf_ulp_pointReleaseNumber
= -1; /* INTEGER_0_255 */
308 static int hf_ulp_internalEditLevel
= -1; /* INTEGER_0_255 */
309 static int hf_ulp_gANSSPositionMethods
= -1; /* GANSSPositionMethods */
310 static int hf_ulp_GANSSPositionMethods_item
= -1; /* GANSSPositionMethod */
311 static int hf_ulp_ganssSBASid
= -1; /* BIT_STRING_SIZE_3 */
312 static int hf_ulp_gANSSPositioningMethodTypes
= -1; /* GANSSPositioningMethodTypes */
313 static int hf_ulp_setAssisted
= -1; /* BOOLEAN */
314 static int hf_ulp_setBased
= -1; /* BOOLEAN */
315 static int hf_ulp_autonomous
= -1; /* BOOLEAN */
316 static int hf_ulp_ganssRequestedCommonAssistanceDataList
= -1; /* GanssRequestedCommonAssistanceDataList */
317 static int hf_ulp_ganssRequestedGenericAssistanceDataList
= -1; /* GanssRequestedGenericAssistanceDataList */
318 static int hf_ulp_extendedEphemeris
= -1; /* ExtendedEphemeris */
319 static int hf_ulp_extendedEphemerisCheck
= -1; /* ExtendedEphCheck */
320 static int hf_ulp_ganssReferenceTime
= -1; /* BOOLEAN */
321 static int hf_ulp_ganssIonosphericModel
= -1; /* BOOLEAN */
322 static int hf_ulp_ganssAdditionalIonosphericModelForDataID00
= -1; /* BOOLEAN */
323 static int hf_ulp_ganssAdditionalIonosphericModelForDataID11
= -1; /* BOOLEAN */
324 static int hf_ulp_ganssEarthOrientationParameters
= -1; /* BOOLEAN */
325 static int hf_ulp_GanssRequestedGenericAssistanceDataList_item
= -1; /* GanssReqGenericData */
326 static int hf_ulp_ganssRealTimeIntegrity
= -1; /* BOOLEAN */
327 static int hf_ulp_ganssDifferentialCorrection
= -1; /* DGANSS_Sig_Id_Req */
328 static int hf_ulp_ganssAlmanac
= -1; /* BOOLEAN */
329 static int hf_ulp_ganssNavigationModelData
= -1; /* GanssNavigationModelData */
330 static int hf_ulp_ganssTimeModels
= -1; /* BIT_STRING_SIZE_16 */
331 static int hf_ulp_ganssReferenceMeasurementInfo
= -1; /* BOOLEAN */
332 static int hf_ulp_ganssDataBits
= -1; /* GanssDataBits */
333 static int hf_ulp_ganssUTCModel
= -1; /* BOOLEAN */
334 static int hf_ulp_ganssAdditionalDataChoices
= -1; /* GanssAdditionalDataChoices */
335 static int hf_ulp_ganssAuxiliaryInformation
= -1; /* BOOLEAN */
336 static int hf_ulp_ganssExtendedEphemeris
= -1; /* ExtendedEphemeris */
337 static int hf_ulp_ganssExtendedEphemerisCheck
= -1; /* GanssExtendedEphCheck */
338 static int hf_ulp_ganssWeek
= -1; /* INTEGER_0_4095 */
339 static int hf_ulp_ganssToe
= -1; /* INTEGER_0_167 */
340 static int hf_ulp_t_toeLimit
= -1; /* INTEGER_0_15 */
341 static int hf_ulp_satellitesListRelatedDataList
= -1; /* SatellitesListRelatedDataList */
342 static int hf_ulp_SatellitesListRelatedDataList_item
= -1; /* SatellitesListRelatedData */
343 static int hf_ulp_iod
= -1; /* INTEGER_0_1023 */
344 static int hf_ulp_ganssTODmin
= -1; /* INTEGER_0_59 */
345 static int hf_ulp_reqDataBitAssistanceList
= -1; /* ReqDataBitAssistanceList */
346 static int hf_ulp_gnssSignals
= -1; /* GANSSSignals */
347 static int hf_ulp_ganssDataBitInterval
= -1; /* INTEGER_0_15 */
348 static int hf_ulp_ganssDataBitSatList
= -1; /* T_ganssDataBitSatList */
349 static int hf_ulp_ganssDataBitSatList_item
= -1; /* INTEGER_0_63 */
350 static int hf_ulp_orbitModelID
= -1; /* INTEGER_0_7 */
351 static int hf_ulp_clockModelID
= -1; /* INTEGER_0_7 */
352 static int hf_ulp_utcModelID
= -1; /* INTEGER_0_7 */
353 static int hf_ulp_almanacModelID
= -1; /* INTEGER_0_7 */
354 static int hf_ulp_validity
= -1; /* INTEGER_1_256 */
355 static int hf_ulp_beginTime
= -1; /* GPSTime */
356 static int hf_ulp_endTime
= -1; /* GPSTime */
357 static int hf_ulp_beginTime_01
= -1; /* GANSSextEphTime */
358 static int hf_ulp_endTime_01
= -1; /* GANSSextEphTime */
359 static int hf_ulp_gPSWeek
= -1; /* INTEGER_0_1023 */
360 static int hf_ulp_gPSTOWhour
= -1; /* INTEGER_0_167 */
361 static int hf_ulp_gANSSday
= -1; /* INTEGER_0_8191 */
362 static int hf_ulp_gANSSTODhour
= -1; /* INTEGER_0_23 */
363 static int hf_ulp_lPPPayload
= -1; /* T_lPPPayload */
364 static int hf_ulp_lPPPayload_item
= -1; /* T_lPPPayload_item */
365 static int hf_ulp_tIA801Payload
= -1; /* T_tIA801Payload */
366 static int hf_ulp_tIA801Payload_item
= -1; /* OCTET_STRING_SIZE_1_60000 */
367 static int hf_ulp_maj
= -1; /* INTEGER_0_255 */
368 static int hf_ulp_min
= -1; /* INTEGER_0_255 */
369 static int hf_ulp_servind
= -1; /* INTEGER_0_255 */
370 static int hf_ulp_setSessionID
= -1; /* SetSessionID */
371 static int hf_ulp_slpSessionID
= -1; /* SlpSessionID */
372 static int hf_ulp_sessionId
= -1; /* INTEGER_0_65535 */
373 static int hf_ulp_setId
= -1; /* SETId */
374 static int hf_ulp_msisdn
= -1; /* OCTET_STRING_SIZE_8 */
375 static int hf_ulp_mdn
= -1; /* OCTET_STRING_SIZE_8 */
376 static int hf_ulp_minsi
= -1; /* BIT_STRING_SIZE_34 */
377 static int hf_ulp_imsi
= -1; /* OCTET_STRING_SIZE_8 */
378 static int hf_ulp_nai
= -1; /* IA5String_SIZE_1_1000 */
379 static int hf_ulp_iPAddress
= -1; /* IPAddress */
380 static int hf_ulp_sessionSlpID
= -1; /* OCTET_STRING_SIZE_4 */
381 static int hf_ulp_slpId
= -1; /* SLPAddress */
382 static int hf_ulp_ipv4Address
= -1; /* OCTET_STRING_SIZE_4 */
383 static int hf_ulp_ipv6Address
= -1; /* OCTET_STRING_SIZE_16 */
384 static int hf_ulp_fQDN
= -1; /* FQDN */
385 static int hf_ulp_cellInfo
= -1; /* CellInfo */
386 static int hf_ulp_status
= -1; /* Status */
387 static int hf_ulp_gsmCell
= -1; /* GsmCellInformation */
388 static int hf_ulp_wcdmaCell
= -1; /* WcdmaCellInformation */
389 static int hf_ulp_cdmaCell
= -1; /* CdmaCellInformation */
390 static int hf_ulp_ver2_CellInfo_extension
= -1; /* Ver2_CellInfo_extension */
391 static int hf_ulp_timestamp_01
= -1; /* UTCTime */
392 static int hf_ulp_positionEstimate
= -1; /* PositionEstimate */
393 static int hf_ulp_latitudeSign
= -1; /* T_latitudeSign */
394 static int hf_ulp_latitude
= -1; /* INTEGER_0_8388607 */
395 static int hf_ulp_longitude
= -1; /* INTEGER_M8388608_8388607 */
396 static int hf_ulp_uncertainty
= -1; /* T_uncertainty */
397 static int hf_ulp_uncertaintySemiMajor
= -1; /* INTEGER_0_127 */
398 static int hf_ulp_uncertaintySemiMinor
= -1; /* INTEGER_0_127 */
399 static int hf_ulp_orientationMajorAxis
= -1; /* INTEGER_0_180 */
400 static int hf_ulp_confidence
= -1; /* INTEGER_0_100 */
401 static int hf_ulp_altitudeInfo
= -1; /* AltitudeInfo */
402 static int hf_ulp_altitudeDirection
= -1; /* T_altitudeDirection */
403 static int hf_ulp_altitude
= -1; /* INTEGER_0_32767 */
404 static int hf_ulp_altUncertainty
= -1; /* INTEGER_0_127 */
405 static int hf_ulp_refNID_01
= -1; /* INTEGER_0_65535 */
406 static int hf_ulp_refSID_01
= -1; /* INTEGER_0_32767 */
407 static int hf_ulp_refBASELAT
= -1; /* INTEGER_0_4194303 */
408 static int hf_ulp_reBASELONG
= -1; /* INTEGER_0_8388607 */
409 static int hf_ulp_refREFPN
= -1; /* INTEGER_0_511 */
410 static int hf_ulp_refWeekNumber
= -1; /* INTEGER_0_65535 */
411 static int hf_ulp_refSeconds
= -1; /* INTEGER_0_4194303 */
412 static int hf_ulp_nMR
= -1; /* NMR */
413 static int hf_ulp_tA
= -1; /* INTEGER_0_255 */
414 static int hf_ulp_frequencyInfo
= -1; /* FrequencyInfo */
415 static int hf_ulp_primaryScramblingCode
= -1; /* INTEGER_0_511 */
416 static int hf_ulp_measuredResultsList
= -1; /* MeasuredResultsList */
417 static int hf_ulp_cellParametersId
= -1; /* INTEGER_0_127 */
418 static int hf_ulp_timingAdvance
= -1; /* TimingAdvance */
419 static int hf_ulp_tA_01
= -1; /* INTEGER_0_8191 */
420 static int hf_ulp_tAResolution
= -1; /* TAResolution */
421 static int hf_ulp_chipRate
= -1; /* ChipRate */
422 static int hf_ulp_modeSpecificFrequencyInfo
= -1; /* FrequencySpecificInfo */
423 static int hf_ulp_fdd_fr
= -1; /* FrequencyInfoFDD */
424 static int hf_ulp_tdd_fr
= -1; /* FrequencyInfoTDD */
425 static int hf_ulp_uarfcn_UL
= -1; /* UARFCN */
426 static int hf_ulp_uarfcn_DL
= -1; /* UARFCN */
427 static int hf_ulp_uarfcn_Nt
= -1; /* UARFCN */
428 static int hf_ulp_NMR_item
= -1; /* NMRelement */
429 static int hf_ulp_aRFCN
= -1; /* INTEGER_0_1023 */
430 static int hf_ulp_bSIC
= -1; /* INTEGER_0_63 */
431 static int hf_ulp_rxLev
= -1; /* INTEGER_0_63 */
432 static int hf_ulp_MeasuredResultsList_item
= -1; /* MeasuredResults */
433 static int hf_ulp_utra_CarrierRSSI
= -1; /* UTRA_CarrierRSSI */
434 static int hf_ulp_cellMeasuredResultsList
= -1; /* CellMeasuredResultsList */
435 static int hf_ulp_CellMeasuredResultsList_item
= -1; /* CellMeasuredResults */
436 static int hf_ulp_cellIdentity
= -1; /* INTEGER_0_268435455 */
437 static int hf_ulp_modeSpecificInfo
= -1; /* T_modeSpecificInfo */
438 static int hf_ulp_fdd
= -1; /* T_fdd */
439 static int hf_ulp_primaryCPICH_Info
= -1; /* PrimaryCPICH_Info */
440 static int hf_ulp_cpich_Ec_N0
= -1; /* CPICH_Ec_N0 */
441 static int hf_ulp_cpich_RSCP
= -1; /* CPICH_RSCP */
442 static int hf_ulp_pathloss
= -1; /* Pathloss */
443 static int hf_ulp_tdd
= -1; /* T_tdd */
444 static int hf_ulp_cellParametersID
= -1; /* CellParametersID */
445 static int hf_ulp_proposedTGSN
= -1; /* TGSN */
446 static int hf_ulp_primaryCCPCH_RSCP
= -1; /* PrimaryCCPCH_RSCP */
447 static int hf_ulp_timeslotISCP_List
= -1; /* TimeslotISCP_List */
448 static int hf_ulp_TimeslotISCP_List_item
= -1; /* TimeslotISCP */
449 static int hf_ulp_horacc
= -1; /* INTEGER_0_127 */
450 static int hf_ulp_veracc
= -1; /* INTEGER_0_127 */
451 static int hf_ulp_maxLocAge
= -1; /* INTEGER_0_65535 */
452 static int hf_ulp_delay
= -1; /* INTEGER_0_7 */
453 static int hf_ulp_horvel
= -1; /* Horvel */
454 static int hf_ulp_horandvervel
= -1; /* Horandvervel */
455 static int hf_ulp_horveluncert
= -1; /* Horveluncert */
456 static int hf_ulp_horandveruncert
= -1; /* Horandveruncert */
457 static int hf_ulp_bearing
= -1; /* BIT_STRING_SIZE_9 */
458 static int hf_ulp_horspeed
= -1; /* BIT_STRING_SIZE_16 */
459 static int hf_ulp_verdirect
= -1; /* BIT_STRING_SIZE_1 */
460 static int hf_ulp_verspeed
= -1; /* BIT_STRING_SIZE_8 */
461 static int hf_ulp_uncertspeed
= -1; /* BIT_STRING_SIZE_8 */
462 static int hf_ulp_horuncertspeed
= -1; /* BIT_STRING_SIZE_8 */
463 static int hf_ulp_veruncertspeed
= -1; /* BIT_STRING_SIZE_8 */
464 static int hf_ulp_MultipleLocationIds_item
= -1; /* LocationIdData */
465 static int hf_ulp_relativetimestamp
= -1; /* RelativeTime */
466 static int hf_ulp_servingFlag
= -1; /* BOOLEAN */
467 static int hf_ulp_wLAN
= -1; /* BOOLEAN */
468 static int hf_ulp_supportedWLANInfo
= -1; /* SupportedWLANInfo */
469 static int hf_ulp_supportedWLANApsList
= -1; /* SupportedWLANApsList */
470 static int hf_ulp_gSM
= -1; /* BOOLEAN */
471 static int hf_ulp_wCDMA
= -1; /* BOOLEAN */
472 static int hf_ulp_supportedWCDMAInfo
= -1; /* SupportedWCDMAInfo */
473 static int hf_ulp_cDMA
= -1; /* BOOLEAN */
474 static int hf_ulp_hRDP
= -1; /* BOOLEAN */
475 static int hf_ulp_uMB
= -1; /* BOOLEAN */
476 static int hf_ulp_lTE
= -1; /* BOOLEAN */
477 static int hf_ulp_wIMAX
= -1; /* BOOLEAN */
478 static int hf_ulp_historic
= -1; /* BOOLEAN */
479 static int hf_ulp_nonServing
= -1; /* BOOLEAN */
480 static int hf_ulp_uTRANGPSReferenceTime
= -1; /* BOOLEAN */
481 static int hf_ulp_uTRANGANSSReferenceTime
= -1; /* BOOLEAN */
482 static int hf_ulp_apTP
= -1; /* BOOLEAN */
483 static int hf_ulp_apAG
= -1; /* BOOLEAN */
484 static int hf_ulp_apSN
= -1; /* BOOLEAN */
485 static int hf_ulp_apDevType
= -1; /* BOOLEAN */
486 static int hf_ulp_apRSSI
= -1; /* BOOLEAN */
487 static int hf_ulp_apChanFreq
= -1; /* BOOLEAN */
488 static int hf_ulp_apRTD
= -1; /* BOOLEAN */
489 static int hf_ulp_setTP
= -1; /* BOOLEAN */
490 static int hf_ulp_setAG
= -1; /* BOOLEAN */
491 static int hf_ulp_setSN
= -1; /* BOOLEAN */
492 static int hf_ulp_setRSSI
= -1; /* BOOLEAN */
493 static int hf_ulp_apRepLoc
= -1; /* BOOLEAN */
494 static int hf_ulp_supportedWLANApDataList
= -1; /* SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData */
495 static int hf_ulp_supportedWLANApDataList_item
= -1; /* SupportedWLANApData */
496 static int hf_ulp_supportedWLANapsChannel11a
= -1; /* SupportedWLANApsChannel11a */
497 static int hf_ulp_supportedWLANapsChannel11bg
= -1; /* SupportedWLANApsChannel11bg */
498 static int hf_ulp_ch34
= -1; /* BOOLEAN */
499 static int hf_ulp_ch36
= -1; /* BOOLEAN */
500 static int hf_ulp_ch38
= -1; /* BOOLEAN */
501 static int hf_ulp_ch40
= -1; /* BOOLEAN */
502 static int hf_ulp_ch42
= -1; /* BOOLEAN */
503 static int hf_ulp_ch44
= -1; /* BOOLEAN */
504 static int hf_ulp_ch46
= -1; /* BOOLEAN */
505 static int hf_ulp_ch48
= -1; /* BOOLEAN */
506 static int hf_ulp_ch52
= -1; /* BOOLEAN */
507 static int hf_ulp_ch56
= -1; /* BOOLEAN */
508 static int hf_ulp_ch60
= -1; /* BOOLEAN */
509 static int hf_ulp_ch64
= -1; /* BOOLEAN */
510 static int hf_ulp_ch149
= -1; /* BOOLEAN */
511 static int hf_ulp_ch153
= -1; /* BOOLEAN */
512 static int hf_ulp_ch157
= -1; /* BOOLEAN */
513 static int hf_ulp_ch161
= -1; /* BOOLEAN */
514 static int hf_ulp_ch1
= -1; /* BOOLEAN */
515 static int hf_ulp_ch2
= -1; /* BOOLEAN */
516 static int hf_ulp_ch3
= -1; /* BOOLEAN */
517 static int hf_ulp_ch4
= -1; /* BOOLEAN */
518 static int hf_ulp_ch5
= -1; /* BOOLEAN */
519 static int hf_ulp_ch6
= -1; /* BOOLEAN */
520 static int hf_ulp_ch7
= -1; /* BOOLEAN */
521 static int hf_ulp_ch8
= -1; /* BOOLEAN */
522 static int hf_ulp_ch9
= -1; /* BOOLEAN */
523 static int hf_ulp_ch10
= -1; /* BOOLEAN */
524 static int hf_ulp_ch11
= -1; /* BOOLEAN */
525 static int hf_ulp_ch12
= -1; /* BOOLEAN */
526 static int hf_ulp_ch13
= -1; /* BOOLEAN */
527 static int hf_ulp_ch14
= -1; /* BOOLEAN */
528 static int hf_ulp_apDevType_01
= -1; /* T_apDevType */
529 static int hf_ulp_mRL
= -1; /* BOOLEAN */
530 static int hf_ulp_hrpdCell
= -1; /* HrpdCellInformation */
531 static int hf_ulp_umbCell
= -1; /* UmbCellInformation */
532 static int hf_ulp_lteCell
= -1; /* LteCellInformation */
533 static int hf_ulp_wlanAP
= -1; /* WlanAPInformation */
534 static int hf_ulp_wimaxBS
= -1; /* WimaxBSInformation */
535 static int hf_ulp_cellGlobalIdEUTRA
= -1; /* CellGlobalIdEUTRA */
536 static int hf_ulp_physCellId
= -1; /* PhysCellId */
537 static int hf_ulp_trackingAreaCode
= -1; /* TrackingAreaCode */
538 static int hf_ulp_rsrpResult
= -1; /* RSRP_Range */
539 static int hf_ulp_rsrqResult
= -1; /* RSRQ_Range */
540 static int hf_ulp_tA_02
= -1; /* INTEGER_0_1282 */
541 static int hf_ulp_measResultListEUTRA
= -1; /* MeasResultListEUTRA */
542 static int hf_ulp_MeasResultListEUTRA_item
= -1; /* MeasResultEUTRA */
543 static int hf_ulp_cgi_Info
= -1; /* T_cgi_Info */
544 static int hf_ulp_cellGlobalId
= -1; /* CellGlobalIdEUTRA */
545 static int hf_ulp_measResult
= -1; /* T_measResult */
546 static int hf_ulp_plmn_Identity
= -1; /* PLMN_Identity */
547 static int hf_ulp_cellIdentity_01
= -1; /* CellIdentity */
548 static int hf_ulp_mcc
= -1; /* MCC */
549 static int hf_ulp_mnc
= -1; /* MNC */
550 static int hf_ulp_MCC_item
= -1; /* MCC_MNC_Digit */
551 static int hf_ulp_MNC_item
= -1; /* MCC_MNC_Digit */
552 static int hf_ulp_apTransmitPower
= -1; /* INTEGER_M127_128 */
553 static int hf_ulp_apAntennaGain
= -1; /* INTEGER_M127_128 */
554 static int hf_ulp_apSignaltoNoise
= -1; /* INTEGER_M127_128 */
555 static int hf_ulp_apDeviceType
= -1; /* T_apDeviceType */
556 static int hf_ulp_apSignalStrength
= -1; /* INTEGER_M127_128 */
557 static int hf_ulp_apChannelFrequency
= -1; /* INTEGER_0_256 */
558 static int hf_ulp_apRoundTripDelay
= -1; /* RTD */
559 static int hf_ulp_setTransmitPower
= -1; /* INTEGER_M127_128 */
560 static int hf_ulp_setAntennaGain
= -1; /* INTEGER_M127_128 */
561 static int hf_ulp_setSignaltoNoise
= -1; /* INTEGER_M127_128 */
562 static int hf_ulp_setSignalStrength
= -1; /* INTEGER_M127_128 */
563 static int hf_ulp_apReportedLocation
= -1; /* ReportedLocation */
564 static int hf_ulp_rTDValue
= -1; /* INTEGER_0_16777216 */
565 static int hf_ulp_rTDUnits
= -1; /* RTDUnits */
566 static int hf_ulp_rTDAccuracy
= -1; /* INTEGER_0_255 */
567 static int hf_ulp_locationEncodingDescriptor
= -1; /* LocationEncodingDescriptor */
568 static int hf_ulp_locationData
= -1; /* LocationData */
569 static int hf_ulp_locationAccuracy
= -1; /* INTEGER_0_4294967295 */
570 static int hf_ulp_locationValue
= -1; /* OCTET_STRING_SIZE_1_128 */
571 static int hf_ulp_wimaxBsID
= -1; /* WimaxBsID */
572 static int hf_ulp_wimaxRTD
= -1; /* WimaxRTD */
573 static int hf_ulp_wimaxNMRList
= -1; /* WimaxNMRList */
574 static int hf_ulp_rTD
= -1; /* INTEGER_0_65535 */
575 static int hf_ulp_rTDstd
= -1; /* INTEGER_0_1023 */
576 static int hf_ulp_WimaxNMRList_item
= -1; /* WimaxNMR */
577 static int hf_ulp_relDelay
= -1; /* INTEGER_M32768_32767 */
578 static int hf_ulp_relDelaystd
= -1; /* INTEGER_0_1023 */
579 static int hf_ulp_rSSI
= -1; /* INTEGER_0_255 */
580 static int hf_ulp_rSSIstd
= -1; /* INTEGER_0_63 */
581 static int hf_ulp_bSTxPower
= -1; /* INTEGER_0_255 */
582 static int hf_ulp_cINR
= -1; /* INTEGER_0_255 */
583 static int hf_ulp_cINRstd
= -1; /* INTEGER_0_63 */
584 static int hf_ulp_bSLocation
= -1; /* ReportedLocation */
585 static int hf_ulp_utran_GPSReferenceTime
= -1; /* UTRAN_GPSReferenceTime */
586 static int hf_ulp_gpsReferenceTimeUncertainty
= -1; /* INTEGER_0_127 */
587 static int hf_ulp_utranGPSDriftRate
= -1; /* UTRANGPSDriftRate */
588 static int hf_ulp_utran_GPSTimingOfCell
= -1; /* T_utran_GPSTimingOfCell */
589 static int hf_ulp_ms_part
= -1; /* INTEGER_0_1023 */
590 static int hf_ulp_ls_part
= -1; /* INTEGER_0_4294967295 */
591 static int hf_ulp_modeSpecificInfo_01
= -1; /* T_modeSpecificInfo_01 */
592 static int hf_ulp_fdd_01
= -1; /* T_fdd_01 */
593 static int hf_ulp_referenceIdentity
= -1; /* PrimaryCPICH_Info */
594 static int hf_ulp_tdd_01
= -1; /* T_tdd_01 */
595 static int hf_ulp_referenceIdentity_01
= -1; /* CellParametersID */
596 static int hf_ulp_sfn
= -1; /* INTEGER_0_4095 */
597 static int hf_ulp_set_GPSTimingOfCell
= -1; /* T_set_GPSTimingOfCell */
598 static int hf_ulp_ms_part_01
= -1; /* INTEGER_0_16383 */
599 static int hf_ulp_modeSpecificInfo_02
= -1; /* T_modeSpecificInfo_02 */
600 static int hf_ulp_fdd_02
= -1; /* T_fdd_02 */
601 static int hf_ulp_tdd_02
= -1; /* T_tdd_02 */
602 static int hf_ulp_ganssDay
= -1; /* INTEGER_0_8191 */
603 static int hf_ulp_ganssTimeID
= -1; /* INTEGER_0_15 */
604 static int hf_ulp_utran_GANSSReferenceTime
= -1; /* UTRAN_GANSSReferenceTime */
605 static int hf_ulp_utranGANSSDriftRate
= -1; /* UTRANGANSSDriftRate */
606 static int hf_ulp_ganssTOD
= -1; /* INTEGER_0_86399 */
607 static int hf_ulp_utran_GANSSTimingOfCell
= -1; /* INTEGER_0_3999999 */
608 static int hf_ulp_modeSpecificInfo_03
= -1; /* T_modeSpecificInfo_03 */
609 static int hf_ulp_fdd_03
= -1; /* T_fdd_03 */
610 static int hf_ulp_tdd_03
= -1; /* T_tdd_03 */
611 static int hf_ulp_ganss_TODUncertainty
= -1; /* INTEGER_0_127 */
612 static int hf_ulp_set_GANSSReferenceTime
= -1; /* SET_GANSSReferenceTime */
613 static int hf_ulp_set_GANSSTimingOfCell
= -1; /* T_set_GANSSTimingOfCell */
614 static int hf_ulp_ms_part_02
= -1; /* INTEGER_0_80 */
615 static int hf_ulp_modeSpecificInfo_04
= -1; /* T_modeSpecificInfo_04 */
616 static int hf_ulp_fdd_04
= -1; /* T_fdd_04 */
617 static int hf_ulp_tdd_04
= -1; /* T_tdd_04 */
618 static int hf_ulp_gps
= -1; /* BOOLEAN */
619 static int hf_ulp_galileo
= -1; /* BOOLEAN */
620 static int hf_ulp_sbas
= -1; /* BOOLEAN */
621 static int hf_ulp_modernized_gps
= -1; /* BOOLEAN */
622 static int hf_ulp_qzss
= -1; /* BOOLEAN */
623 static int hf_ulp_glonass
= -1; /* BOOLEAN */
624 static int hf_ulp_rAND
= -1; /* BIT_STRING_SIZE_128 */
625 static int hf_ulp_slpFQDN
= -1; /* FQDN */
626 static int hf_ulp_ThirdParty_item
= -1; /* ThirdPartyID */
627 static int hf_ulp_logicalName
= -1; /* IA5String_SIZE_1_1000 */
628 static int hf_ulp_emailaddr
= -1; /* IA5String_SIZE_1_1000 */
629 static int hf_ulp_sip_uri
= -1; /* T_sip_uri */
630 static int hf_ulp_ims_public_identity
= -1; /* T_ims_public_identity */
631 static int hf_ulp_min_01
= -1; /* BIT_STRING_SIZE_34 */
632 static int hf_ulp_uri
= -1; /* T_uri */
633 static int hf_ulp_appProvider
= -1; /* IA5String_SIZE_1_24 */
634 static int hf_ulp_appName
= -1; /* IA5String_SIZE_1_32 */
635 static int hf_ulp_appVersion
= -1; /* IA5String_SIZE_1_8 */
636 static int hf_ulp_minInt
= -1; /* INTEGER_1_3600 */
637 static int hf_ulp_maxInt
= -1; /* INTEGER_1_1440 */
638 static int hf_ulp_repMode_01
= -1; /* RepMode_cap */
639 static int hf_ulp_batchRepCap
= -1; /* BatchRepCap */
640 static int hf_ulp_realtime
= -1; /* BOOLEAN */
641 static int hf_ulp_quasirealtime
= -1; /* BOOLEAN */
642 static int hf_ulp_batch
= -1; /* BOOLEAN */
643 static int hf_ulp_report_position
= -1; /* BOOLEAN */
644 static int hf_ulp_report_measurements
= -1; /* BOOLEAN */
645 static int hf_ulp_max_num_positions
= -1; /* INTEGER_1_1024 */
646 static int hf_ulp_max_num_measurements
= -1; /* INTEGER_1_1024 */
647 static int hf_ulp_latitudeSign_01
= -1; /* T_latitudeSign_01 */
648 static int hf_ulp_coordinate
= -1; /* Coordinate */
649 static int hf_ulp_radius
= -1; /* INTEGER_1_1000000 */
650 static int hf_ulp_radius_min
= -1; /* INTEGER_1_1000000 */
651 static int hf_ulp_radius_max
= -1; /* INTEGER_1_1500000 */
652 static int hf_ulp_semiMajor
= -1; /* INTEGER_1_1000000 */
653 static int hf_ulp_semiMajor_min
= -1; /* INTEGER_1_1000000 */
654 static int hf_ulp_semiMajor_max
= -1; /* INTEGER_1_1500000 */
655 static int hf_ulp_semiMinor
= -1; /* INTEGER_1_1000000 */
656 static int hf_ulp_semiMinor_min
= -1; /* INTEGER_1_1000000 */
657 static int hf_ulp_semiMinor_max
= -1; /* INTEGER_1_1500000 */
658 static int hf_ulp_angle
= -1; /* INTEGER_0_179 */
659 static int hf_ulp_polygonDescription
= -1; /* PolygonDescription */
660 static int hf_ulp_polygonHysteresis
= -1; /* INTEGER_1_100000 */
661 static int hf_ulp_PolygonDescription_item
= -1; /* Coordinate */
663 static int hf_ulp_GANSSSignals_signal1
= -1;
664 static int hf_ulp_GANSSSignals_signal2
= -1;
665 static int hf_ulp_GANSSSignals_signal3
= -1;
666 static int hf_ulp_GANSSSignals_signal4
= -1;
667 static int hf_ulp_GANSSSignals_signal5
= -1;
668 static int hf_ulp_GANSSSignals_signal6
= -1;
669 static int hf_ulp_GANSSSignals_signal7
= -1;
670 static int hf_ulp_GANSSSignals_signal8
= -1;
672 /*--- End of included file: packet-ulp-hf.c ---*/
673 #line 64 "../../asn1/ulp/packet-ulp-template.c"
675 /* Initialize the subtree pointers */
676 static gint ett_ulp
= -1;
678 /*--- Included file: packet-ulp-ett.c ---*/
679 #line 1 "../../asn1/ulp/packet-ulp-ett.c"
680 static gint ett_ulp_ULP_PDU
= -1;
681 static gint ett_ulp_UlpMessage
= -1;
682 static gint ett_ulp_SUPLINIT
= -1;
683 static gint ett_ulp_Notification
= -1;
684 static gint ett_ulp_SUPLSTART
= -1;
685 static gint ett_ulp_SETCapabilities
= -1;
686 static gint ett_ulp_PosTechnology
= -1;
687 static gint ett_ulp_PosProtocol
= -1;
688 static gint ett_ulp_SUPLRESPONSE
= -1;
689 static gint ett_ulp_SETAuthKey
= -1;
690 static gint ett_ulp_SUPLPOSINIT
= -1;
691 static gint ett_ulp_RequestedAssistData
= -1;
692 static gint ett_ulp_NavigationModel
= -1;
693 static gint ett_ulp_SatelliteInfo
= -1;
694 static gint ett_ulp_SatelliteInfoElement
= -1;
695 static gint ett_ulp_SUPLPOS
= -1;
696 static gint ett_ulp_PosPayLoad
= -1;
697 static gint ett_ulp_SUPLEND
= -1;
698 static gint ett_ulp_SUPLAUTHREQ
= -1;
699 static gint ett_ulp_SUPLAUTHRESP
= -1;
700 static gint ett_ulp_Ver2_SUPLNOTIFY
= -1;
701 static gint ett_ulp_Ver2_SUPLNOTIFYRESPONSE
= -1;
702 static gint ett_ulp_Ver2_SUPLSETINIT
= -1;
703 static gint ett_ulp_Ver2_SUPLTRIGGEREDSTART
= -1;
704 static gint ett_ulp_TriggerParams
= -1;
705 static gint ett_ulp_PeriodicParams
= -1;
706 static gint ett_ulp_AreaEventParams
= -1;
707 static gint ett_ulp_SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList
= -1;
708 static gint ett_ulp_RepeatedReportingParams
= -1;
709 static gint ett_ulp_GeographicTargetAreaList
= -1;
710 static gint ett_ulp_GeographicTargetArea
= -1;
711 static gint ett_ulp_AreaIdList
= -1;
712 static gint ett_ulp_AreaIdSet
= -1;
713 static gint ett_ulp_AreaId
= -1;
714 static gint ett_ulp_GSMAreaId
= -1;
715 static gint ett_ulp_WCDMAAreaId
= -1;
716 static gint ett_ulp_CDMAAreaId
= -1;
717 static gint ett_ulp_HRPDAreaId
= -1;
718 static gint ett_ulp_UMBAreaId
= -1;
719 static gint ett_ulp_LTEAreaId
= -1;
720 static gint ett_ulp_WLANAreaId
= -1;
721 static gint ett_ulp_WimaxAreaId
= -1;
722 static gint ett_ulp_GeoAreaMappingList
= -1;
723 static gint ett_ulp_Ver2_SUPLTRIGGEREDRESPONSE
= -1;
724 static gint ett_ulp_ReportingMode
= -1;
725 static gint ett_ulp_BatchRepConditions
= -1;
726 static gint ett_ulp_BatchRepType
= -1;
727 static gint ett_ulp_Ver2_SUPLREPORT
= -1;
728 static gint ett_ulp_SessionList
= -1;
729 static gint ett_ulp_SessionInformation
= -1;
730 static gint ett_ulp_ReportDataList
= -1;
731 static gint ett_ulp_ReportData
= -1;
732 static gint ett_ulp_PositionData
= -1;
733 static gint ett_ulp_GANSSsignalsInfo
= -1;
734 static gint ett_ulp_GANSSSignalsDescription
= -1;
735 static gint ett_ulp_TimeStamp
= -1;
736 static gint ett_ulp_Ver2_SUPLTRIGGEREDSTOP
= -1;
737 static gint ett_ulp_Ver2_SUPL_INIT_extension
= -1;
738 static gint ett_ulp_HistoricReporting
= -1;
739 static gint ett_ulp_ReportingCriteria
= -1;
740 static gint ett_ulp_TimeWindow
= -1;
741 static gint ett_ulp_ProtectionLevel
= -1;
742 static gint ett_ulp_BasicProtectionParams
= -1;
743 static gint ett_ulp_Ver2_SUPL_START_extension
= -1;
744 static gint ett_ulp_Ver2_SUPL_RESPONSE_extension
= -1;
745 static gint ett_ulp_Ver2_SUPL_POS_INIT_extension
= -1;
746 static gint ett_ulp_Ver2_SUPL_POS_extension
= -1;
747 static gint ett_ulp_Ver2_SUPL_END_extension
= -1;
748 static gint ett_ulp_Ver2_Notification_extension
= -1;
749 static gint ett_ulp_Ver2_SETCapabilities_extension
= -1;
750 static gint ett_ulp_ServiceCapabilities
= -1;
751 static gint ett_ulp_ServicesSupported
= -1;
752 static gint ett_ulp_EventTriggerCapabilities
= -1;
753 static gint ett_ulp_GeoAreaShapesSupported
= -1;
754 static gint ett_ulp_SessionCapabilities
= -1;
755 static gint ett_ulp_SupportedBearers
= -1;
756 static gint ett_ulp_Ver2_PosProtocol_extension
= -1;
757 static gint ett_ulp_PosProtocolVersion3GPP
= -1;
758 static gint ett_ulp_PosProtocolVersion3GPP2
= -1;
759 static gint ett_ulp_Supported3GPP2PosProtocolVersion
= -1;
760 static gint ett_ulp_Ver2_PosTechnology_extension
= -1;
761 static gint ett_ulp_GANSSPositionMethods
= -1;
762 static gint ett_ulp_GANSSPositionMethod
= -1;
763 static gint ett_ulp_GANSSPositioningMethodTypes
= -1;
764 static gint ett_ulp_Ver2_RequestedAssistData_extension
= -1;
765 static gint ett_ulp_GanssRequestedCommonAssistanceDataList
= -1;
766 static gint ett_ulp_GanssRequestedGenericAssistanceDataList
= -1;
767 static gint ett_ulp_GanssReqGenericData
= -1;
768 static gint ett_ulp_GanssNavigationModelData
= -1;
769 static gint ett_ulp_SatellitesListRelatedDataList
= -1;
770 static gint ett_ulp_SatellitesListRelatedData
= -1;
771 static gint ett_ulp_GanssDataBits
= -1;
772 static gint ett_ulp_ReqDataBitAssistanceList
= -1;
773 static gint ett_ulp_T_ganssDataBitSatList
= -1;
774 static gint ett_ulp_GanssAdditionalDataChoices
= -1;
775 static gint ett_ulp_ExtendedEphemeris
= -1;
776 static gint ett_ulp_ExtendedEphCheck
= -1;
777 static gint ett_ulp_GanssExtendedEphCheck
= -1;
778 static gint ett_ulp_GPSTime
= -1;
779 static gint ett_ulp_GANSSextEphTime
= -1;
780 static gint ett_ulp_Ver2_PosPayLoad_extension
= -1;
781 static gint ett_ulp_T_lPPPayload
= -1;
782 static gint ett_ulp_T_tIA801Payload
= -1;
783 static gint ett_ulp_Version
= -1;
784 static gint ett_ulp_SessionID
= -1;
785 static gint ett_ulp_SetSessionID
= -1;
786 static gint ett_ulp_SETId
= -1;
787 static gint ett_ulp_SlpSessionID
= -1;
788 static gint ett_ulp_IPAddress
= -1;
789 static gint ett_ulp_SLPAddress
= -1;
790 static gint ett_ulp_LocationId
= -1;
791 static gint ett_ulp_CellInfo
= -1;
792 static gint ett_ulp_Position
= -1;
793 static gint ett_ulp_PositionEstimate
= -1;
794 static gint ett_ulp_T_uncertainty
= -1;
795 static gint ett_ulp_AltitudeInfo
= -1;
796 static gint ett_ulp_CdmaCellInformation
= -1;
797 static gint ett_ulp_GsmCellInformation
= -1;
798 static gint ett_ulp_WcdmaCellInformation
= -1;
799 static gint ett_ulp_TimingAdvance
= -1;
800 static gint ett_ulp_FrequencyInfo
= -1;
801 static gint ett_ulp_FrequencySpecificInfo
= -1;
802 static gint ett_ulp_FrequencyInfoFDD
= -1;
803 static gint ett_ulp_FrequencyInfoTDD
= -1;
804 static gint ett_ulp_NMR
= -1;
805 static gint ett_ulp_NMRelement
= -1;
806 static gint ett_ulp_MeasuredResultsList
= -1;
807 static gint ett_ulp_MeasuredResults
= -1;
808 static gint ett_ulp_CellMeasuredResultsList
= -1;
809 static gint ett_ulp_CellMeasuredResults
= -1;
810 static gint ett_ulp_T_modeSpecificInfo
= -1;
811 static gint ett_ulp_T_fdd
= -1;
812 static gint ett_ulp_T_tdd
= -1;
813 static gint ett_ulp_TimeslotISCP_List
= -1;
814 static gint ett_ulp_PrimaryCPICH_Info
= -1;
815 static gint ett_ulp_QoP
= -1;
816 static gint ett_ulp_Velocity
= -1;
817 static gint ett_ulp_Horvel
= -1;
818 static gint ett_ulp_Horandvervel
= -1;
819 static gint ett_ulp_Horveluncert
= -1;
820 static gint ett_ulp_Horandveruncert
= -1;
821 static gint ett_ulp_MultipleLocationIds
= -1;
822 static gint ett_ulp_LocationIdData
= -1;
823 static gint ett_ulp_SupportedNetworkInformation
= -1;
824 static gint ett_ulp_SupportedWLANInfo
= -1;
825 static gint ett_ulp_SupportedWLANApsList
= -1;
826 static gint ett_ulp_SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData
= -1;
827 static gint ett_ulp_SupportedWLANApsChannel11a
= -1;
828 static gint ett_ulp_SupportedWLANApsChannel11bg
= -1;
829 static gint ett_ulp_SupportedWLANApData
= -1;
830 static gint ett_ulp_SupportedWCDMAInfo
= -1;
831 static gint ett_ulp_Ver2_CellInfo_extension
= -1;
832 static gint ett_ulp_HrpdCellInformation
= -1;
833 static gint ett_ulp_UmbCellInformation
= -1;
834 static gint ett_ulp_LteCellInformation
= -1;
835 static gint ett_ulp_MeasResultListEUTRA
= -1;
836 static gint ett_ulp_MeasResultEUTRA
= -1;
837 static gint ett_ulp_T_cgi_Info
= -1;
838 static gint ett_ulp_T_measResult
= -1;
839 static gint ett_ulp_CellGlobalIdEUTRA
= -1;
840 static gint ett_ulp_PLMN_Identity
= -1;
841 static gint ett_ulp_MCC
= -1;
842 static gint ett_ulp_MNC
= -1;
843 static gint ett_ulp_WlanAPInformation
= -1;
844 static gint ett_ulp_RTD
= -1;
845 static gint ett_ulp_ReportedLocation
= -1;
846 static gint ett_ulp_LocationData
= -1;
847 static gint ett_ulp_WimaxBSInformation
= -1;
848 static gint ett_ulp_WimaxBsID
= -1;
849 static gint ett_ulp_WimaxRTD
= -1;
850 static gint ett_ulp_WimaxNMRList
= -1;
851 static gint ett_ulp_WimaxNMR
= -1;
852 static gint ett_ulp_UTRAN_GPSReferenceTimeAssistance
= -1;
853 static gint ett_ulp_UTRAN_GPSReferenceTime
= -1;
854 static gint ett_ulp_T_utran_GPSTimingOfCell
= -1;
855 static gint ett_ulp_T_modeSpecificInfo_01
= -1;
856 static gint ett_ulp_T_fdd_01
= -1;
857 static gint ett_ulp_T_tdd_01
= -1;
858 static gint ett_ulp_UTRAN_GPSReferenceTimeResult
= -1;
859 static gint ett_ulp_T_set_GPSTimingOfCell
= -1;
860 static gint ett_ulp_T_modeSpecificInfo_02
= -1;
861 static gint ett_ulp_T_fdd_02
= -1;
862 static gint ett_ulp_T_tdd_02
= -1;
863 static gint ett_ulp_UTRAN_GANSSReferenceTimeAssistance
= -1;
864 static gint ett_ulp_UTRAN_GANSSReferenceTime
= -1;
865 static gint ett_ulp_T_modeSpecificInfo_03
= -1;
866 static gint ett_ulp_T_fdd_03
= -1;
867 static gint ett_ulp_T_tdd_03
= -1;
868 static gint ett_ulp_UTRAN_GANSSReferenceTimeResult
= -1;
869 static gint ett_ulp_SET_GANSSReferenceTime
= -1;
870 static gint ett_ulp_T_set_GANSSTimingOfCell
= -1;
871 static gint ett_ulp_T_modeSpecificInfo_04
= -1;
872 static gint ett_ulp_T_fdd_04
= -1;
873 static gint ett_ulp_T_tdd_04
= -1;
874 static gint ett_ulp_GNSSPosTechnology
= -1;
875 static gint ett_ulp_GANSSSignals
= -1;
876 static gint ett_ulp_SPCTID
= -1;
877 static gint ett_ulp_ThirdParty
= -1;
878 static gint ett_ulp_ThirdPartyID
= -1;
879 static gint ett_ulp_ApplicationID
= -1;
880 static gint ett_ulp_ReportingCap
= -1;
881 static gint ett_ulp_RepMode_cap
= -1;
882 static gint ett_ulp_BatchRepCap
= -1;
883 static gint ett_ulp_Coordinate
= -1;
884 static gint ett_ulp_CircularArea
= -1;
885 static gint ett_ulp_EllipticalArea
= -1;
886 static gint ett_ulp_PolygonArea
= -1;
887 static gint ett_ulp_PolygonDescription
= -1;
889 /*--- End of included file: packet-ulp-ett.c ---*/
890 #line 68 "../../asn1/ulp/packet-ulp-template.c"
892 /* Include constants */
894 /*--- Included file: packet-ulp-val.h ---*/
895 #line 1 "../../asn1/ulp/packet-ulp-val.h"
896 #define maxReqLength 50
897 #define maxClientLength 50
898 #define maxNumGeoArea 32
899 #define maxAreaId 256
900 #define maxAreaIdList 32
901 #define maxnumSessions 64
903 #define maxGANSSSat 32
904 #define maxCellMeas 32
907 #define maxLidSize 64
908 #define maxWLANApDataSize 128
909 #define maxCellReport 8
910 #define maxWimaxBSMeas 32
912 /*--- End of included file: packet-ulp-val.h ---*/
913 #line 71 "../../asn1/ulp/packet-ulp-template.c"
917 /*--- Included file: packet-ulp-fn.c ---*/
918 #line 1 "../../asn1/ulp/packet-ulp-fn.c"
922 dissect_ulp_INTEGER_0_65535(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
923 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
924 0U, 65535U, NULL
, FALSE
);
932 dissect_ulp_INTEGER_0_255(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
933 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
934 0U, 255U, NULL
, FALSE
);
940 static const per_sequence_t Version_sequence
[] = {
941 { &hf_ulp_maj
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
942 { &hf_ulp_min
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
943 { &hf_ulp_servind
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
948 dissect_ulp_Version(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
949 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
950 ett_ulp_Version
, Version_sequence
);
958 dissect_ulp_OCTET_STRING_SIZE_8(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
959 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
968 dissect_ulp_BIT_STRING_SIZE_34(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
969 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
970 34, 34, FALSE
, NULL
);
978 dissect_ulp_IA5String_SIZE_1_1000(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
979 offset
= dissect_per_IA5String(tvb
, offset
, actx
, tree
, hf_index
,
988 dissect_ulp_OCTET_STRING_SIZE_4(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
989 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
998 dissect_ulp_OCTET_STRING_SIZE_16(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
999 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
1000 16, 16, FALSE
, NULL
);
1006 static const value_string ulp_IPAddress_vals
[] = {
1007 { 0, "ipv4Address" },
1008 { 1, "ipv6Address" },
1012 static const per_choice_t IPAddress_choice
[] = {
1013 { 0, &hf_ulp_ipv4Address
, ASN1_NO_EXTENSIONS
, dissect_ulp_OCTET_STRING_SIZE_4
},
1014 { 1, &hf_ulp_ipv6Address
, ASN1_NO_EXTENSIONS
, dissect_ulp_OCTET_STRING_SIZE_16
},
1015 { 0, NULL
, 0, NULL
}
1019 dissect_ulp_IPAddress(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1020 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
1021 ett_ulp_IPAddress
, IPAddress_choice
,
1028 static const value_string ulp_SETId_vals
[] = {
1038 static const per_choice_t SETId_choice
[] = {
1039 { 0, &hf_ulp_msisdn
, ASN1_EXTENSION_ROOT
, dissect_ulp_OCTET_STRING_SIZE_8
},
1040 { 1, &hf_ulp_mdn
, ASN1_EXTENSION_ROOT
, dissect_ulp_OCTET_STRING_SIZE_8
},
1041 { 2, &hf_ulp_minsi
, ASN1_EXTENSION_ROOT
, dissect_ulp_BIT_STRING_SIZE_34
},
1042 { 3, &hf_ulp_imsi
, ASN1_EXTENSION_ROOT
, dissect_ulp_OCTET_STRING_SIZE_8
},
1043 { 4, &hf_ulp_nai
, ASN1_EXTENSION_ROOT
, dissect_ulp_IA5String_SIZE_1_1000
},
1044 { 5, &hf_ulp_iPAddress
, ASN1_EXTENSION_ROOT
, dissect_ulp_IPAddress
},
1045 { 0, NULL
, 0, NULL
}
1049 dissect_ulp_SETId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1050 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
1051 ett_ulp_SETId
, SETId_choice
,
1058 static const per_sequence_t SetSessionID_sequence
[] = {
1059 { &hf_ulp_sessionId
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
1060 { &hf_ulp_setId
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_SETId
},
1061 { NULL
, 0, 0, NULL
}
1065 dissect_ulp_SetSessionID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1066 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1067 ett_ulp_SetSessionID
, SetSessionID_sequence
);
1075 dissect_ulp_FQDN(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1076 offset
= dissect_per_restricted_character_string(tvb
, offset
, actx
, tree
, hf_index
,
1077 1, 255, FALSE
, "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789.-", 64,
1084 static const value_string ulp_SLPAddress_vals
[] = {
1090 static const per_choice_t SLPAddress_choice
[] = {
1091 { 0, &hf_ulp_iPAddress
, ASN1_EXTENSION_ROOT
, dissect_ulp_IPAddress
},
1092 { 1, &hf_ulp_fQDN
, ASN1_EXTENSION_ROOT
, dissect_ulp_FQDN
},
1093 { 0, NULL
, 0, NULL
}
1097 dissect_ulp_SLPAddress(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1098 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
1099 ett_ulp_SLPAddress
, SLPAddress_choice
,
1106 static const per_sequence_t SlpSessionID_sequence
[] = {
1107 { &hf_ulp_sessionSlpID
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_OCTET_STRING_SIZE_4
},
1108 { &hf_ulp_slpId
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_SLPAddress
},
1109 { NULL
, 0, 0, NULL
}
1113 dissect_ulp_SlpSessionID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1114 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1115 ett_ulp_SlpSessionID
, SlpSessionID_sequence
);
1121 static const per_sequence_t SessionID_sequence
[] = {
1122 { &hf_ulp_setSessionID
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_SetSessionID
},
1123 { &hf_ulp_slpSessionID
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_SlpSessionID
},
1124 { NULL
, 0, 0, NULL
}
1128 dissect_ulp_SessionID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1129 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1130 ett_ulp_SessionID
, SessionID_sequence
);
1136 static const value_string ulp_PosMethod_vals
[] = {
1137 { 0, "agpsSETassisted" },
1138 { 1, "agpsSETbased" },
1139 { 2, "agpsSETassistedpref" },
1140 { 3, "agpsSETbasedpref" },
1141 { 4, "autonomousGPS" },
1146 { 9, "noPosition" },
1147 { 10, "ver2-historicalDataRetrieval" },
1148 { 11, "ver2-agnssSETassisted" },
1149 { 12, "ver2-agnssSETbased" },
1150 { 13, "ver2-agnssSETassistedpref" },
1151 { 14, "ver2-agnssSETbasedpref" },
1152 { 15, "ver2-autonomousGNSS" },
1153 { 16, "ver2-sessioninfoquery" },
1159 dissect_ulp_PosMethod(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1160 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1161 10, NULL
, TRUE
, 7, NULL
);
1167 static const value_string ulp_NotificationType_vals
[] = {
1168 { 0, "noNotificationNoVerification" },
1169 { 1, "notificationOnly" },
1170 { 2, "notificationAndVerficationAllowedNA" },
1171 { 3, "notificationAndVerficationDeniedNA" },
1172 { 4, "privacyOverride" },
1178 dissect_ulp_NotificationType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1179 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1180 5, NULL
, TRUE
, 0, NULL
);
1186 static const value_string ulp_EncodingType_vals
[] = {
1188 { 1, "gsmDefault" },
1195 dissect_ulp_EncodingType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1196 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1197 3, NULL
, TRUE
, 0, NULL
);
1205 dissect_ulp_OCTET_STRING_SIZE_1_maxReqLength(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1206 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
1207 1, maxReqLength
, FALSE
, NULL
);
1213 static const value_string ulp_FormatIndicator_vals
[] = {
1214 { 0, "logicalName" },
1215 { 1, "e-mailAddress" },
1221 { 7, "iMSPublicidentity" },
1227 dissect_ulp_FormatIndicator(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1228 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1229 8, NULL
, TRUE
, 0, NULL
);
1237 dissect_ulp_OCTET_STRING_SIZE_1_maxClientLength(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1238 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
1239 1, maxClientLength
, FALSE
, NULL
);
1247 dissect_ulp_NULL(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1248 offset
= dissect_per_null(tvb
, offset
, actx
, tree
, hf_index
);
1254 static const per_sequence_t Ver2_Notification_extension_sequence
[] = {
1255 { &hf_ulp_emergencyCallLocation
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_NULL
},
1256 { NULL
, 0, 0, NULL
}
1260 dissect_ulp_Ver2_Notification_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1261 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1262 ett_ulp_Ver2_Notification_extension
, Ver2_Notification_extension_sequence
);
1268 static const per_sequence_t Notification_sequence
[] = {
1269 { &hf_ulp_notificationType
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_NotificationType
},
1270 { &hf_ulp_encodingType
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_EncodingType
},
1271 { &hf_ulp_requestorId
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_OCTET_STRING_SIZE_1_maxReqLength
},
1272 { &hf_ulp_requestorIdType
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_FormatIndicator
},
1273 { &hf_ulp_clientName
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_OCTET_STRING_SIZE_1_maxClientLength
},
1274 { &hf_ulp_clientNameType
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_FormatIndicator
},
1275 { &hf_ulp_ver2_Notification_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_Notification_extension
},
1276 { NULL
, 0, 0, NULL
}
1280 dissect_ulp_Notification(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1281 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1282 ett_ulp_Notification
, Notification_sequence
);
1290 dissect_ulp_INTEGER_0_127(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1291 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
1292 0U, 127U, NULL
, FALSE
);
1300 dissect_ulp_INTEGER_0_7(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1301 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
1302 0U, 7U, NULL
, FALSE
);
1308 static const per_sequence_t QoP_sequence
[] = {
1309 { &hf_ulp_horacc
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
1310 { &hf_ulp_veracc
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
1311 { &hf_ulp_maxLocAge
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
1312 { &hf_ulp_delay
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_7
},
1313 { NULL
, 0, 0, NULL
}
1317 dissect_ulp_QoP(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1318 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1319 ett_ulp_QoP
, QoP_sequence
);
1325 static const value_string ulp_SLPMode_vals
[] = {
1333 dissect_ulp_SLPMode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1334 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1335 2, NULL
, FALSE
, 0, NULL
);
1343 dissect_ulp_MAC(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1344 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
1345 64, 64, FALSE
, NULL
);
1353 dissect_ulp_KeyIdentity(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1354 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
1355 128, 128, FALSE
, NULL
);
1361 static const value_string ulp_NotificationMode_vals
[] = {
1363 { 1, "basedOnLocation" },
1369 dissect_ulp_NotificationMode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1370 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1371 2, NULL
, TRUE
, 0, NULL
);
1379 dissect_ulp_BOOLEAN(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1380 offset
= dissect_per_boolean(tvb
, offset
, actx
, tree
, hf_index
, NULL
);
1386 static const per_sequence_t SupportedWLANInfo_sequence
[] = {
1387 { &hf_ulp_apTP
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1388 { &hf_ulp_apAG
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1389 { &hf_ulp_apSN
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1390 { &hf_ulp_apDevType
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1391 { &hf_ulp_apRSSI
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1392 { &hf_ulp_apChanFreq
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1393 { &hf_ulp_apRTD
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1394 { &hf_ulp_setTP
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1395 { &hf_ulp_setAG
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1396 { &hf_ulp_setSN
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1397 { &hf_ulp_setRSSI
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1398 { &hf_ulp_apRepLoc
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1399 { NULL
, 0, 0, NULL
}
1403 dissect_ulp_SupportedWLANInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1404 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1405 ett_ulp_SupportedWLANInfo
, SupportedWLANInfo_sequence
);
1413 dissect_ulp_BIT_STRING_SIZE_48(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1414 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
1415 48, 48, FALSE
, NULL
);
1421 static const value_string ulp_T_apDevType_vals
[] = {
1422 { 0, "wlan802-11a" },
1423 { 1, "wlan802-11b" },
1424 { 2, "wlan802-11g" },
1430 dissect_ulp_T_apDevType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1431 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1432 3, NULL
, TRUE
, 0, NULL
);
1438 static const per_sequence_t SupportedWLANApData_sequence
[] = {
1439 { &hf_ulp_apMACAddress
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_48
},
1440 { &hf_ulp_apDevType_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_apDevType
},
1441 { NULL
, 0, 0, NULL
}
1445 dissect_ulp_SupportedWLANApData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1446 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1447 ett_ulp_SupportedWLANApData
, SupportedWLANApData_sequence
);
1453 static const per_sequence_t SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData_sequence_of
[1] = {
1454 { &hf_ulp_supportedWLANApDataList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_SupportedWLANApData
},
1458 dissect_ulp_SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1459 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
1460 ett_ulp_SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData
, SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData_sequence_of
,
1461 1, maxWLANApDataSize
, FALSE
);
1467 static const per_sequence_t SupportedWLANApsChannel11a_sequence
[] = {
1468 { &hf_ulp_ch34
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1469 { &hf_ulp_ch36
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1470 { &hf_ulp_ch38
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1471 { &hf_ulp_ch40
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1472 { &hf_ulp_ch42
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1473 { &hf_ulp_ch44
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1474 { &hf_ulp_ch46
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1475 { &hf_ulp_ch48
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1476 { &hf_ulp_ch52
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1477 { &hf_ulp_ch56
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1478 { &hf_ulp_ch60
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1479 { &hf_ulp_ch64
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1480 { &hf_ulp_ch149
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1481 { &hf_ulp_ch153
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1482 { &hf_ulp_ch157
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1483 { &hf_ulp_ch161
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1484 { NULL
, 0, 0, NULL
}
1488 dissect_ulp_SupportedWLANApsChannel11a(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1489 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1490 ett_ulp_SupportedWLANApsChannel11a
, SupportedWLANApsChannel11a_sequence
);
1496 static const per_sequence_t SupportedWLANApsChannel11bg_sequence
[] = {
1497 { &hf_ulp_ch1
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1498 { &hf_ulp_ch2
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1499 { &hf_ulp_ch3
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1500 { &hf_ulp_ch4
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1501 { &hf_ulp_ch5
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1502 { &hf_ulp_ch6
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1503 { &hf_ulp_ch7
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1504 { &hf_ulp_ch8
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1505 { &hf_ulp_ch9
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1506 { &hf_ulp_ch10
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1507 { &hf_ulp_ch11
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1508 { &hf_ulp_ch12
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1509 { &hf_ulp_ch13
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1510 { &hf_ulp_ch14
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1511 { NULL
, 0, 0, NULL
}
1515 dissect_ulp_SupportedWLANApsChannel11bg(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1516 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1517 ett_ulp_SupportedWLANApsChannel11bg
, SupportedWLANApsChannel11bg_sequence
);
1523 static const per_sequence_t SupportedWLANApsList_sequence
[] = {
1524 { &hf_ulp_supportedWLANApDataList
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData
},
1525 { &hf_ulp_supportedWLANapsChannel11a
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedWLANApsChannel11a
},
1526 { &hf_ulp_supportedWLANapsChannel11bg
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedWLANApsChannel11bg
},
1527 { NULL
, 0, 0, NULL
}
1531 dissect_ulp_SupportedWLANApsList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1532 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1533 ett_ulp_SupportedWLANApsList
, SupportedWLANApsList_sequence
);
1539 static const per_sequence_t SupportedWCDMAInfo_sequence
[] = {
1540 { &hf_ulp_mRL
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1541 { NULL
, 0, 0, NULL
}
1545 dissect_ulp_SupportedWCDMAInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1546 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1547 ett_ulp_SupportedWCDMAInfo
, SupportedWCDMAInfo_sequence
);
1553 static const per_sequence_t SupportedNetworkInformation_sequence
[] = {
1554 { &hf_ulp_wLAN
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1555 { &hf_ulp_supportedWLANInfo
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedWLANInfo
},
1556 { &hf_ulp_supportedWLANApsList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedWLANApsList
},
1557 { &hf_ulp_gSM
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1558 { &hf_ulp_wCDMA
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1559 { &hf_ulp_supportedWCDMAInfo
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedWCDMAInfo
},
1560 { &hf_ulp_cDMA
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1561 { &hf_ulp_hRDP
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1562 { &hf_ulp_uMB
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1563 { &hf_ulp_lTE
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1564 { &hf_ulp_wIMAX
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1565 { &hf_ulp_historic
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1566 { &hf_ulp_nonServing
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1567 { &hf_ulp_uTRANGPSReferenceTime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1568 { &hf_ulp_uTRANGANSSReferenceTime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1569 { NULL
, 0, 0, NULL
}
1573 dissect_ulp_SupportedNetworkInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1574 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1575 ett_ulp_SupportedNetworkInformation
, SupportedNetworkInformation_sequence
);
1581 static const value_string ulp_TriggerType_vals
[] = {
1589 dissect_ulp_TriggerType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1590 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1591 2, NULL
, TRUE
, 0, NULL
);
1597 static const value_string ulp_AllowedReportingType_vals
[] = {
1598 { 0, "positionsOnly" },
1599 { 1, "measurementsOnly" },
1600 { 2, "positionsAndMeasurements" },
1606 dissect_ulp_AllowedReportingType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1607 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1608 3, NULL
, TRUE
, 0, NULL
);
1616 dissect_ulp_INTEGER_M525600_M1(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1617 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
1618 -525600, -1, NULL
, FALSE
);
1626 dissect_ulp_INTEGER_M525599_0(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1627 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
1628 -525599, 0U, NULL
, FALSE
);
1634 static const per_sequence_t TimeWindow_sequence
[] = {
1635 { &hf_ulp_startTime_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_M525600_M1
},
1636 { &hf_ulp_stopTime_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_M525599_0
},
1637 { NULL
, 0, 0, NULL
}
1641 dissect_ulp_TimeWindow(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1642 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1643 ett_ulp_TimeWindow
, TimeWindow_sequence
);
1651 dissect_ulp_INTEGER_1_65536(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1652 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
1653 1U, 65536U, NULL
, FALSE
);
1661 dissect_ulp_INTEGER_1_86400(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1662 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
1663 1U, 86400U, NULL
, FALSE
);
1669 static const per_sequence_t ReportingCriteria_sequence
[] = {
1670 { &hf_ulp_timeWindow
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TimeWindow
},
1671 { &hf_ulp_maxNumberofReports
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_65536
},
1672 { &hf_ulp_minTimeInterval
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_86400
},
1673 { NULL
, 0, 0, NULL
}
1677 dissect_ulp_ReportingCriteria(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1678 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1679 ett_ulp_ReportingCriteria
, ReportingCriteria_sequence
);
1685 static const per_sequence_t HistoricReporting_sequence
[] = {
1686 { &hf_ulp_allowedReportingType
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_AllowedReportingType
},
1687 { &hf_ulp_reportingCriteria
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ReportingCriteria
},
1688 { NULL
, 0, 0, NULL
}
1692 dissect_ulp_HistoricReporting(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1693 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1694 ett_ulp_HistoricReporting
, HistoricReporting_sequence
);
1700 static const value_string ulp_ProtLevel_vals
[] = {
1701 { 0, "nullProtection" },
1702 { 1, "basicProtection" },
1708 dissect_ulp_ProtLevel(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1709 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1710 2, NULL
, TRUE
, 0, NULL
);
1718 dissect_ulp_BIT_STRING_SIZE_32(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1719 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
1720 32, 32, FALSE
, NULL
);
1726 static const per_sequence_t BasicProtectionParams_sequence
[] = {
1727 { &hf_ulp_keyIdentifier
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_OCTET_STRING_SIZE_8
},
1728 { &hf_ulp_basicReplayCounter
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
1729 { &hf_ulp_basicMAC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_32
},
1730 { NULL
, 0, 0, NULL
}
1734 dissect_ulp_BasicProtectionParams(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1735 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1736 ett_ulp_BasicProtectionParams
, BasicProtectionParams_sequence
);
1742 static const per_sequence_t ProtectionLevel_sequence
[] = {
1743 { &hf_ulp_protlevel
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_ProtLevel
},
1744 { &hf_ulp_basicProtectionParams
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BasicProtectionParams
},
1745 { NULL
, 0, 0, NULL
}
1749 dissect_ulp_ProtectionLevel(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1750 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1751 ett_ulp_ProtectionLevel
, ProtectionLevel_sequence
);
1757 static const per_sequence_t GNSSPosTechnology_sequence
[] = {
1758 { &hf_ulp_gps
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1759 { &hf_ulp_galileo
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1760 { &hf_ulp_sbas
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1761 { &hf_ulp_modernized_gps
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1762 { &hf_ulp_qzss
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1763 { &hf_ulp_glonass
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1764 { NULL
, 0, 0, NULL
}
1768 dissect_ulp_GNSSPosTechnology(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1769 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1770 ett_ulp_GNSSPosTechnology
, GNSSPosTechnology_sequence
);
1776 static const per_sequence_t Ver2_SUPL_INIT_extension_sequence
[] = {
1777 { &hf_ulp_notificationMode
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_NotificationMode
},
1778 { &hf_ulp_supportedNetworkInformation
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedNetworkInformation
},
1779 { &hf_ulp_triggerType
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TriggerType
},
1780 { &hf_ulp_e_SLPAddress
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SLPAddress
},
1781 { &hf_ulp_historicReporting
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_HistoricReporting
},
1782 { &hf_ulp_protectionLevel
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ProtectionLevel
},
1783 { &hf_ulp_gnssPosTechnology
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GNSSPosTechnology
},
1784 { &hf_ulp_minimumMajorVersion
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
1785 { NULL
, 0, 0, NULL
}
1789 dissect_ulp_Ver2_SUPL_INIT_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1790 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1791 ett_ulp_Ver2_SUPL_INIT_extension
, Ver2_SUPL_INIT_extension_sequence
);
1797 static const per_sequence_t SUPLINIT_sequence
[] = {
1798 { &hf_ulp_posMethod
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PosMethod
},
1799 { &hf_ulp_notification
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Notification
},
1800 { &hf_ulp_sLPAddress
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SLPAddress
},
1801 { &hf_ulp_qoP
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_QoP
},
1802 { &hf_ulp_sLPMode
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SLPMode
},
1803 { &hf_ulp_mAC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_MAC
},
1804 { &hf_ulp_keyIdentity
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_KeyIdentity
},
1805 { &hf_ulp_ver2_SUPL_INIT_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_SUPL_INIT_extension
},
1806 { NULL
, 0, 0, NULL
}
1810 dissect_ulp_SUPLINIT(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1811 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1812 ett_ulp_SUPLINIT
, SUPLINIT_sequence
);
1820 dissect_ulp_INTEGER_0_15(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1821 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
1822 0U, 15U, NULL
, FALSE
);
1830 dissect_ulp_BIT_STRING_SIZE_3(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1831 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
1838 static const per_sequence_t GANSSPositioningMethodTypes_sequence
[] = {
1839 { &hf_ulp_setAssisted
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1840 { &hf_ulp_setBased
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1841 { &hf_ulp_autonomous
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1842 { NULL
, 0, 0, NULL
}
1846 dissect_ulp_GANSSPositioningMethodTypes(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1847 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1848 ett_ulp_GANSSPositioningMethodTypes
, GANSSPositioningMethodTypes_sequence
);
1856 dissect_ulp_GANSSSignals(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1857 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
1864 static const per_sequence_t GANSSPositionMethod_sequence
[] = {
1865 { &hf_ulp_ganssId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_15
},
1866 { &hf_ulp_ganssSBASid
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_3
},
1867 { &hf_ulp_gANSSPositioningMethodTypes
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSPositioningMethodTypes
},
1868 { &hf_ulp_gANSSSignals
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSSignals
},
1869 { NULL
, 0, 0, NULL
}
1873 dissect_ulp_GANSSPositionMethod(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1874 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1875 ett_ulp_GANSSPositionMethod
, GANSSPositionMethod_sequence
);
1881 static const per_sequence_t GANSSPositionMethods_sequence_of
[1] = {
1882 { &hf_ulp_GANSSPositionMethods_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSPositionMethod
},
1886 dissect_ulp_GANSSPositionMethods(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1887 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
1888 ett_ulp_GANSSPositionMethods
, GANSSPositionMethods_sequence_of
,
1895 static const per_sequence_t Ver2_PosTechnology_extension_sequence
[] = {
1896 { &hf_ulp_gANSSPositionMethods
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GANSSPositionMethods
},
1897 { NULL
, 0, 0, NULL
}
1901 dissect_ulp_Ver2_PosTechnology_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1902 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1903 ett_ulp_Ver2_PosTechnology_extension
, Ver2_PosTechnology_extension_sequence
);
1909 static const per_sequence_t PosTechnology_sequence
[] = {
1910 { &hf_ulp_agpsSETassisted
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1911 { &hf_ulp_agpsSETBased
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1912 { &hf_ulp_autonomousGPS
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1913 { &hf_ulp_aFLT
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1914 { &hf_ulp_eCID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1915 { &hf_ulp_eOTD
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1916 { &hf_ulp_oTDOA
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
1917 { &hf_ulp_ver2_PosTechnology_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_PosTechnology_extension
},
1918 { NULL
, 0, 0, NULL
}
1922 dissect_ulp_PosTechnology(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1923 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1924 ett_ulp_PosTechnology
, PosTechnology_sequence
);
1930 static const value_string ulp_PrefMethod_vals
[] = {
1931 { 0, "agpsSETassistedPreferred" },
1932 { 1, "agpsSETBasedPreferred" },
1933 { 2, "noPreference" },
1939 dissect_ulp_PrefMethod(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1940 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
1941 3, NULL
, FALSE
, 0, NULL
);
1947 static const per_sequence_t PosProtocolVersion3GPP_sequence
[] = {
1948 { &hf_ulp_majorVersionField
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
1949 { &hf_ulp_technicalVersionField
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
1950 { &hf_ulp_editorialVersionField
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
1951 { NULL
, 0, 0, NULL
}
1955 dissect_ulp_PosProtocolVersion3GPP(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1956 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1957 ett_ulp_PosProtocolVersion3GPP
, PosProtocolVersion3GPP_sequence
);
1965 dissect_ulp_BIT_STRING_SIZE_6(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1966 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
1973 static const per_sequence_t Supported3GPP2PosProtocolVersion_sequence
[] = {
1974 { &hf_ulp_revisionNumber
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_6
},
1975 { &hf_ulp_pointReleaseNumber
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
1976 { &hf_ulp_internalEditLevel
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
1977 { NULL
, 0, 0, NULL
}
1981 dissect_ulp_Supported3GPP2PosProtocolVersion(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1982 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
1983 ett_ulp_Supported3GPP2PosProtocolVersion
, Supported3GPP2PosProtocolVersion_sequence
);
1989 static const per_sequence_t PosProtocolVersion3GPP2_sequence_of
[1] = {
1990 { &hf_ulp_PosProtocolVersion3GPP2_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_Supported3GPP2PosProtocolVersion
},
1994 dissect_ulp_PosProtocolVersion3GPP2(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
1995 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
1996 ett_ulp_PosProtocolVersion3GPP2
, PosProtocolVersion3GPP2_sequence_of
,
2003 static const per_sequence_t Ver2_PosProtocol_extension_sequence
[] = {
2004 { &hf_ulp_lpp
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2005 { &hf_ulp_posProtocolVersionRRLP
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_PosProtocolVersion3GPP
},
2006 { &hf_ulp_posProtocolVersionRRC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_PosProtocolVersion3GPP
},
2007 { &hf_ulp_posProtocolVersionTIA801
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_PosProtocolVersion3GPP2
},
2008 { &hf_ulp_posProtocolVersionLPP
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_PosProtocolVersion3GPP
},
2009 { NULL
, 0, 0, NULL
}
2013 dissect_ulp_Ver2_PosProtocol_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2014 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2015 ett_ulp_Ver2_PosProtocol_extension
, Ver2_PosProtocol_extension_sequence
);
2021 static const per_sequence_t PosProtocol_sequence
[] = {
2022 { &hf_ulp_tia801
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2023 { &hf_ulp_rrlp
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2024 { &hf_ulp_rrc
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2025 { &hf_ulp_ver2_PosProtocol_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_PosProtocol_extension
},
2026 { NULL
, 0, 0, NULL
}
2030 dissect_ulp_PosProtocol(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2031 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2032 ett_ulp_PosProtocol
, PosProtocol_sequence
);
2038 static const per_sequence_t ServicesSupported_sequence
[] = {
2039 { &hf_ulp_periodicTrigger
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2040 { &hf_ulp_areaEventTrigger
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2041 { NULL
, 0, 0, NULL
}
2045 dissect_ulp_ServicesSupported(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2046 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2047 ett_ulp_ServicesSupported
, ServicesSupported_sequence
);
2055 dissect_ulp_INTEGER_1_3600(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2056 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2057 1U, 3600U, NULL
, FALSE
);
2065 dissect_ulp_INTEGER_1_1440(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2066 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2067 1U, 1440U, NULL
, FALSE
);
2073 static const per_sequence_t RepMode_cap_sequence
[] = {
2074 { &hf_ulp_realtime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2075 { &hf_ulp_quasirealtime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2076 { &hf_ulp_batch
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2077 { NULL
, 0, 0, NULL
}
2081 dissect_ulp_RepMode_cap(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2082 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2083 ett_ulp_RepMode_cap
, RepMode_cap_sequence
);
2091 dissect_ulp_INTEGER_1_1024(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2092 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2093 1U, 1024U, NULL
, FALSE
);
2099 static const per_sequence_t BatchRepCap_sequence
[] = {
2100 { &hf_ulp_report_position
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2101 { &hf_ulp_report_measurements
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2102 { &hf_ulp_max_num_positions
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1024
},
2103 { &hf_ulp_max_num_measurements
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1024
},
2104 { NULL
, 0, 0, NULL
}
2108 dissect_ulp_BatchRepCap(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2109 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2110 ett_ulp_BatchRepCap
, BatchRepCap_sequence
);
2116 static const per_sequence_t ReportingCap_sequence
[] = {
2117 { &hf_ulp_minInt
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_3600
},
2118 { &hf_ulp_maxInt
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1440
},
2119 { &hf_ulp_repMode_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_RepMode_cap
},
2120 { &hf_ulp_batchRepCap
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BatchRepCap
},
2121 { NULL
, 0, 0, NULL
}
2125 dissect_ulp_ReportingCap(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2126 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2127 ett_ulp_ReportingCap
, ReportingCap_sequence
);
2133 static const per_sequence_t GeoAreaShapesSupported_sequence
[] = {
2134 { &hf_ulp_ellipticalArea_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2135 { &hf_ulp_polygonArea_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2136 { NULL
, 0, 0, NULL
}
2140 dissect_ulp_GeoAreaShapesSupported(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2141 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2142 ett_ulp_GeoAreaShapesSupported
, GeoAreaShapesSupported_sequence
);
2150 dissect_ulp_INTEGER_0_maxNumGeoArea(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2151 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2152 0U, maxNumGeoArea
, NULL
, FALSE
);
2160 dissect_ulp_INTEGER_0_maxAreaIdList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2161 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2162 0U, maxAreaIdList
, NULL
, FALSE
);
2170 dissect_ulp_INTEGER_0_maxAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2171 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2172 0U, maxAreaId
, NULL
, FALSE
);
2178 static const per_sequence_t EventTriggerCapabilities_sequence
[] = {
2179 { &hf_ulp_geoAreaShapesSupported
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GeoAreaShapesSupported
},
2180 { &hf_ulp_maxNumGeoAreaSupported
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_maxNumGeoArea
},
2181 { &hf_ulp_maxAreaIdListSupported
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_maxAreaIdList
},
2182 { &hf_ulp_maxAreaIdSupportedPerList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_maxAreaId
},
2183 { NULL
, 0, 0, NULL
}
2187 dissect_ulp_EventTriggerCapabilities(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2188 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2189 ett_ulp_EventTriggerCapabilities
, EventTriggerCapabilities_sequence
);
2197 dissect_ulp_INTEGER_1_128(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2198 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2199 1U, 128U, NULL
, FALSE
);
2207 dissect_ulp_INTEGER_1_32(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2208 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2209 1U, 32U, NULL
, FALSE
);
2215 static const per_sequence_t SessionCapabilities_sequence
[] = {
2216 { &hf_ulp_maxNumberTotalSessions
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_128
},
2217 { &hf_ulp_maxNumberPeriodicSessions
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_32
},
2218 { &hf_ulp_maxNumberTriggeredSessions
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_32
},
2219 { NULL
, 0, 0, NULL
}
2223 dissect_ulp_SessionCapabilities(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2224 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2225 ett_ulp_SessionCapabilities
, SessionCapabilities_sequence
);
2231 static const per_sequence_t ServiceCapabilities_sequence
[] = {
2232 { &hf_ulp_servicesSupported
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_ServicesSupported
},
2233 { &hf_ulp_reportingCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ReportingCap
},
2234 { &hf_ulp_eventTriggerCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_EventTriggerCapabilities
},
2235 { &hf_ulp_sessionCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SessionCapabilities
},
2236 { NULL
, 0, 0, NULL
}
2240 dissect_ulp_ServiceCapabilities(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2241 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2242 ett_ulp_ServiceCapabilities
, ServiceCapabilities_sequence
);
2248 static const per_sequence_t SupportedBearers_sequence
[] = {
2249 { &hf_ulp_gsm
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2250 { &hf_ulp_wcdma
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2251 { &hf_ulp_lte
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2252 { &hf_ulp_cdma
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2253 { &hf_ulp_hprd
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2254 { &hf_ulp_umb
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2255 { &hf_ulp_wlan
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2256 { &hf_ulp_wiMAX
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
2257 { NULL
, 0, 0, NULL
}
2261 dissect_ulp_SupportedBearers(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2262 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2263 ett_ulp_SupportedBearers
, SupportedBearers_sequence
);
2269 static const per_sequence_t Ver2_SETCapabilities_extension_sequence
[] = {
2270 { &hf_ulp_serviceCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ServiceCapabilities
},
2271 { &hf_ulp_supportedBearers
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedBearers
},
2272 { NULL
, 0, 0, NULL
}
2276 dissect_ulp_Ver2_SETCapabilities_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2277 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2278 ett_ulp_Ver2_SETCapabilities_extension
, Ver2_SETCapabilities_extension_sequence
);
2284 static const per_sequence_t SETCapabilities_sequence
[] = {
2285 { &hf_ulp_posTechnology
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PosTechnology
},
2286 { &hf_ulp_prefMethod
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PrefMethod
},
2287 { &hf_ulp_posProtocol
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PosProtocol
},
2288 { &hf_ulp_ver2_SETCapabilities_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_SETCapabilities_extension
},
2289 { NULL
, 0, 0, NULL
}
2293 dissect_ulp_SETCapabilities(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2294 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2295 ett_ulp_SETCapabilities
, SETCapabilities_sequence
);
2303 dissect_ulp_INTEGER_0_999(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2304 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2305 0U, 999U, NULL
, FALSE
);
2313 dissect_ulp_INTEGER_0_1023(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2314 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2315 0U, 1023U, NULL
, FALSE
);
2323 dissect_ulp_INTEGER_0_63(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2324 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2325 0U, 63U, NULL
, FALSE
);
2331 static const per_sequence_t NMRelement_sequence
[] = {
2332 { &hf_ulp_aRFCN
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_1023
},
2333 { &hf_ulp_bSIC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_63
},
2334 { &hf_ulp_rxLev
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_63
},
2335 { NULL
, 0, 0, NULL
}
2339 dissect_ulp_NMRelement(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2340 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2341 ett_ulp_NMRelement
, NMRelement_sequence
);
2347 static const per_sequence_t NMR_sequence_of
[1] = {
2348 { &hf_ulp_NMR_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_NMRelement
},
2352 dissect_ulp_NMR(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2353 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
2354 ett_ulp_NMR
, NMR_sequence_of
,
2361 static const per_sequence_t GsmCellInformation_sequence
[] = {
2362 { &hf_ulp_refMCC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
2363 { &hf_ulp_refMNC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
2364 { &hf_ulp_refLAC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
2365 { &hf_ulp_refCI
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
2366 { &hf_ulp_nMR
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_NMR
},
2367 { &hf_ulp_tA
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
2368 { NULL
, 0, 0, NULL
}
2372 dissect_ulp_GsmCellInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2373 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2374 ett_ulp_GsmCellInformation
, GsmCellInformation_sequence
);
2382 dissect_ulp_INTEGER_0_268435455(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2383 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2384 0U, 268435455U, NULL
, FALSE
);
2392 dissect_ulp_UARFCN(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2393 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2394 0U, 16383U, NULL
, FALSE
);
2400 static const per_sequence_t FrequencyInfoFDD_sequence
[] = {
2401 { &hf_ulp_uarfcn_UL
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_UARFCN
},
2402 { &hf_ulp_uarfcn_DL
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_UARFCN
},
2403 { NULL
, 0, 0, NULL
}
2407 dissect_ulp_FrequencyInfoFDD(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2408 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2409 ett_ulp_FrequencyInfoFDD
, FrequencyInfoFDD_sequence
);
2415 static const per_sequence_t FrequencyInfoTDD_sequence
[] = {
2416 { &hf_ulp_uarfcn_Nt
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_UARFCN
},
2417 { NULL
, 0, 0, NULL
}
2421 dissect_ulp_FrequencyInfoTDD(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2422 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2423 ett_ulp_FrequencyInfoTDD
, FrequencyInfoTDD_sequence
);
2429 static const value_string ulp_FrequencySpecificInfo_vals
[] = {
2435 static const per_choice_t FrequencySpecificInfo_choice
[] = {
2436 { 0, &hf_ulp_fdd_fr
, ASN1_EXTENSION_ROOT
, dissect_ulp_FrequencyInfoFDD
},
2437 { 1, &hf_ulp_tdd_fr
, ASN1_EXTENSION_ROOT
, dissect_ulp_FrequencyInfoTDD
},
2438 { 0, NULL
, 0, NULL
}
2442 dissect_ulp_FrequencySpecificInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2443 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
2444 ett_ulp_FrequencySpecificInfo
, FrequencySpecificInfo_choice
,
2451 static const per_sequence_t FrequencyInfo_sequence
[] = {
2452 { &hf_ulp_modeSpecificFrequencyInfo
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_FrequencySpecificInfo
},
2453 { NULL
, 0, 0, NULL
}
2457 dissect_ulp_FrequencyInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2458 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2459 ett_ulp_FrequencyInfo
, FrequencyInfo_sequence
);
2467 dissect_ulp_INTEGER_0_511(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2468 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2469 0U, 511U, NULL
, FALSE
);
2477 dissect_ulp_UTRA_CarrierRSSI(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2478 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2479 0U, 127U, NULL
, FALSE
);
2485 static const per_sequence_t PrimaryCPICH_Info_sequence
[] = {
2486 { &hf_ulp_primaryScramblingCode
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_511
},
2487 { NULL
, 0, 0, NULL
}
2491 dissect_ulp_PrimaryCPICH_Info(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2492 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2493 ett_ulp_PrimaryCPICH_Info
, PrimaryCPICH_Info_sequence
);
2501 dissect_ulp_CPICH_Ec_N0(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2502 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2503 0U, 63U, NULL
, FALSE
);
2511 dissect_ulp_CPICH_RSCP(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2512 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2513 0U, 127U, NULL
, FALSE
);
2521 dissect_ulp_Pathloss(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2522 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2523 46U, 173U, NULL
, FALSE
);
2529 static const per_sequence_t T_fdd_sequence
[] = {
2530 { &hf_ulp_primaryCPICH_Info
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_PrimaryCPICH_Info
},
2531 { &hf_ulp_cpich_Ec_N0
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_CPICH_Ec_N0
},
2532 { &hf_ulp_cpich_RSCP
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_CPICH_RSCP
},
2533 { &hf_ulp_pathloss
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_Pathloss
},
2534 { NULL
, 0, 0, NULL
}
2538 dissect_ulp_T_fdd(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2539 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2540 ett_ulp_T_fdd
, T_fdd_sequence
);
2548 dissect_ulp_CellParametersID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2549 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2550 0U, 127U, NULL
, FALSE
);
2558 dissect_ulp_TGSN(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2559 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2560 0U, 14U, NULL
, FALSE
);
2568 dissect_ulp_PrimaryCCPCH_RSCP(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2569 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2570 0U, 127U, NULL
, FALSE
);
2578 dissect_ulp_TimeslotISCP(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2579 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2580 0U, 127U, NULL
, FALSE
);
2586 static const per_sequence_t TimeslotISCP_List_sequence_of
[1] = {
2587 { &hf_ulp_TimeslotISCP_List_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_TimeslotISCP
},
2591 dissect_ulp_TimeslotISCP_List(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2592 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
2593 ett_ulp_TimeslotISCP_List
, TimeslotISCP_List_sequence_of
,
2600 static const per_sequence_t T_tdd_sequence
[] = {
2601 { &hf_ulp_cellParametersID
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellParametersID
},
2602 { &hf_ulp_proposedTGSN
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_TGSN
},
2603 { &hf_ulp_primaryCCPCH_RSCP
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_PrimaryCCPCH_RSCP
},
2604 { &hf_ulp_pathloss
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_Pathloss
},
2605 { &hf_ulp_timeslotISCP_List
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_TimeslotISCP_List
},
2606 { NULL
, 0, 0, NULL
}
2610 dissect_ulp_T_tdd(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2611 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2612 ett_ulp_T_tdd
, T_tdd_sequence
);
2618 static const value_string ulp_T_modeSpecificInfo_vals
[] = {
2624 static const per_choice_t T_modeSpecificInfo_choice
[] = {
2625 { 0, &hf_ulp_fdd
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_fdd
},
2626 { 1, &hf_ulp_tdd
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_tdd
},
2627 { 0, NULL
, 0, NULL
}
2631 dissect_ulp_T_modeSpecificInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2632 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
2633 ett_ulp_T_modeSpecificInfo
, T_modeSpecificInfo_choice
,
2640 static const per_sequence_t CellMeasuredResults_sequence
[] = {
2641 { &hf_ulp_cellIdentity
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_268435455
},
2642 { &hf_ulp_modeSpecificInfo
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_modeSpecificInfo
},
2643 { NULL
, 0, 0, NULL
}
2647 dissect_ulp_CellMeasuredResults(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2648 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2649 ett_ulp_CellMeasuredResults
, CellMeasuredResults_sequence
);
2655 static const per_sequence_t CellMeasuredResultsList_sequence_of
[1] = {
2656 { &hf_ulp_CellMeasuredResultsList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellMeasuredResults
},
2660 dissect_ulp_CellMeasuredResultsList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2661 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
2662 ett_ulp_CellMeasuredResultsList
, CellMeasuredResultsList_sequence_of
,
2663 1, maxCellMeas
, FALSE
);
2669 static const per_sequence_t MeasuredResults_sequence
[] = {
2670 { &hf_ulp_frequencyInfo
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_FrequencyInfo
},
2671 { &hf_ulp_utra_CarrierRSSI
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_UTRA_CarrierRSSI
},
2672 { &hf_ulp_cellMeasuredResultsList
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_CellMeasuredResultsList
},
2673 { NULL
, 0, 0, NULL
}
2677 dissect_ulp_MeasuredResults(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2678 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2679 ett_ulp_MeasuredResults
, MeasuredResults_sequence
);
2685 static const per_sequence_t MeasuredResultsList_sequence_of
[1] = {
2686 { &hf_ulp_MeasuredResultsList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_MeasuredResults
},
2690 dissect_ulp_MeasuredResultsList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2691 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
2692 ett_ulp_MeasuredResultsList
, MeasuredResultsList_sequence_of
,
2701 dissect_ulp_INTEGER_0_8191(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2702 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2703 0U, 8191U, NULL
, FALSE
);
2709 static const value_string ulp_TAResolution_vals
[] = {
2712 { 2, "res0125chip" },
2718 dissect_ulp_TAResolution(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2719 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
2720 3, NULL
, TRUE
, 0, NULL
);
2726 static const value_string ulp_ChipRate_vals
[] = {
2735 dissect_ulp_ChipRate(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2736 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
2737 3, NULL
, TRUE
, 0, NULL
);
2743 static const per_sequence_t TimingAdvance_sequence
[] = {
2744 { &hf_ulp_tA_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_8191
},
2745 { &hf_ulp_tAResolution
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TAResolution
},
2746 { &hf_ulp_chipRate
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ChipRate
},
2747 { NULL
, 0, 0, NULL
}
2751 dissect_ulp_TimingAdvance(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2752 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2753 ett_ulp_TimingAdvance
, TimingAdvance_sequence
);
2759 static const per_sequence_t WcdmaCellInformation_sequence
[] = {
2760 { &hf_ulp_refMCC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
2761 { &hf_ulp_refMNC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
2762 { &hf_ulp_refUC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_268435455
},
2763 { &hf_ulp_frequencyInfo
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_FrequencyInfo
},
2764 { &hf_ulp_primaryScramblingCode
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_511
},
2765 { &hf_ulp_measuredResultsList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_MeasuredResultsList
},
2766 { &hf_ulp_cellParametersId
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
2767 { &hf_ulp_timingAdvance
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TimingAdvance
},
2768 { NULL
, 0, 0, NULL
}
2772 dissect_ulp_WcdmaCellInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2773 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2774 ett_ulp_WcdmaCellInformation
, WcdmaCellInformation_sequence
);
2782 dissect_ulp_INTEGER_0_32767(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2783 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2784 0U, 32767U, NULL
, FALSE
);
2792 dissect_ulp_INTEGER_0_4194303(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2793 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2794 0U, 4194303U, NULL
, FALSE
);
2802 dissect_ulp_INTEGER_0_8388607(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2803 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2804 0U, 8388607U, NULL
, FALSE
);
2810 static const per_sequence_t CdmaCellInformation_sequence
[] = {
2811 { &hf_ulp_refNID_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
2812 { &hf_ulp_refSID_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_32767
},
2813 { &hf_ulp_refBASEID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
2814 { &hf_ulp_refBASELAT
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4194303
},
2815 { &hf_ulp_reBASELONG
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_8388607
},
2816 { &hf_ulp_refREFPN
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_511
},
2817 { &hf_ulp_refWeekNumber
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
2818 { &hf_ulp_refSeconds
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4194303
},
2819 { NULL
, 0, 0, NULL
}
2823 dissect_ulp_CdmaCellInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2824 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2825 ett_ulp_CdmaCellInformation
, CdmaCellInformation_sequence
);
2833 dissect_ulp_BIT_STRING_SIZE_128(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2834 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
2835 128, 128, FALSE
, NULL
);
2841 static const per_sequence_t HrpdCellInformation_sequence
[] = {
2842 { &hf_ulp_refSECTORID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_128
},
2843 { &hf_ulp_refBASELAT
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4194303
},
2844 { &hf_ulp_reBASELONG
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_8388607
},
2845 { &hf_ulp_refWeekNumber
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
2846 { &hf_ulp_refSeconds
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4194303
},
2847 { NULL
, 0, 0, NULL
}
2851 dissect_ulp_HrpdCellInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2852 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2853 ett_ulp_HrpdCellInformation
, HrpdCellInformation_sequence
);
2859 static const per_sequence_t UmbCellInformation_sequence
[] = {
2860 { &hf_ulp_refSECTORID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_128
},
2861 { &hf_ulp_refMCC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
2862 { &hf_ulp_refMNC
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
2863 { &hf_ulp_refBASELAT
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4194303
},
2864 { &hf_ulp_reBASELONG
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_8388607
},
2865 { &hf_ulp_refWeekNumber
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
2866 { &hf_ulp_refSeconds
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4194303
},
2867 { NULL
, 0, 0, NULL
}
2871 dissect_ulp_UmbCellInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2872 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2873 ett_ulp_UmbCellInformation
, UmbCellInformation_sequence
);
2881 dissect_ulp_MCC_MNC_Digit(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2882 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2883 0U, 9U, NULL
, FALSE
);
2889 static const per_sequence_t MCC_sequence_of
[1] = {
2890 { &hf_ulp_MCC_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_MCC_MNC_Digit
},
2894 dissect_ulp_MCC(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2895 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
2896 ett_ulp_MCC
, MCC_sequence_of
,
2903 static const per_sequence_t MNC_sequence_of
[1] = {
2904 { &hf_ulp_MNC_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_MCC_MNC_Digit
},
2908 dissect_ulp_MNC(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2909 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
2910 ett_ulp_MNC
, MNC_sequence_of
,
2917 static const per_sequence_t PLMN_Identity_sequence
[] = {
2918 { &hf_ulp_mcc
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_MCC
},
2919 { &hf_ulp_mnc
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_MNC
},
2920 { NULL
, 0, 0, NULL
}
2924 dissect_ulp_PLMN_Identity(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2925 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2926 ett_ulp_PLMN_Identity
, PLMN_Identity_sequence
);
2934 dissect_ulp_CellIdentity(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2935 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
2936 28, 28, FALSE
, NULL
);
2942 static const per_sequence_t CellGlobalIdEUTRA_sequence
[] = {
2943 { &hf_ulp_plmn_Identity
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PLMN_Identity
},
2944 { &hf_ulp_cellIdentity_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellIdentity
},
2945 { NULL
, 0, 0, NULL
}
2949 dissect_ulp_CellGlobalIdEUTRA(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2950 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
2951 ett_ulp_CellGlobalIdEUTRA
, CellGlobalIdEUTRA_sequence
);
2959 dissect_ulp_PhysCellId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2960 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2961 0U, 503U, NULL
, FALSE
);
2969 dissect_ulp_TrackingAreaCode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2970 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
2971 16, 16, FALSE
, NULL
);
2979 dissect_ulp_RSRP_Range(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2980 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2981 0U, 97U, NULL
, FALSE
);
2989 dissect_ulp_RSRQ_Range(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
2990 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
2991 0U, 34U, NULL
, FALSE
);
2999 dissect_ulp_INTEGER_0_1282(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3000 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3001 0U, 1282U, NULL
, FALSE
);
3007 static const per_sequence_t T_cgi_Info_sequence
[] = {
3008 { &hf_ulp_cellGlobalId
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellGlobalIdEUTRA
},
3009 { &hf_ulp_trackingAreaCode
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_TrackingAreaCode
},
3010 { NULL
, 0, 0, NULL
}
3014 dissect_ulp_T_cgi_Info(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3015 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3016 ett_ulp_T_cgi_Info
, T_cgi_Info_sequence
);
3022 static const per_sequence_t T_measResult_sequence
[] = {
3023 { &hf_ulp_rsrpResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RSRP_Range
},
3024 { &hf_ulp_rsrqResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RSRQ_Range
},
3025 { NULL
, 0, 0, NULL
}
3029 dissect_ulp_T_measResult(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3030 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3031 ett_ulp_T_measResult
, T_measResult_sequence
);
3037 static const per_sequence_t MeasResultEUTRA_sequence
[] = {
3038 { &hf_ulp_physCellId
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_PhysCellId
},
3039 { &hf_ulp_cgi_Info
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_T_cgi_Info
},
3040 { &hf_ulp_measResult
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_measResult
},
3041 { NULL
, 0, 0, NULL
}
3045 dissect_ulp_MeasResultEUTRA(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3046 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3047 ett_ulp_MeasResultEUTRA
, MeasResultEUTRA_sequence
);
3053 static const per_sequence_t MeasResultListEUTRA_sequence_of
[1] = {
3054 { &hf_ulp_MeasResultListEUTRA_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_MeasResultEUTRA
},
3058 dissect_ulp_MeasResultListEUTRA(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3059 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
3060 ett_ulp_MeasResultListEUTRA
, MeasResultListEUTRA_sequence_of
,
3061 1, maxCellReport
, FALSE
);
3067 static const per_sequence_t LteCellInformation_sequence
[] = {
3068 { &hf_ulp_cellGlobalIdEUTRA
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellGlobalIdEUTRA
},
3069 { &hf_ulp_physCellId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PhysCellId
},
3070 { &hf_ulp_trackingAreaCode
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_TrackingAreaCode
},
3071 { &hf_ulp_rsrpResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RSRP_Range
},
3072 { &hf_ulp_rsrqResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RSRQ_Range
},
3073 { &hf_ulp_tA_02
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_1282
},
3074 { &hf_ulp_measResultListEUTRA
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_MeasResultListEUTRA
},
3075 { NULL
, 0, 0, NULL
}
3079 dissect_ulp_LteCellInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3080 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3081 ett_ulp_LteCellInformation
, LteCellInformation_sequence
);
3089 dissect_ulp_INTEGER_M127_128(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3090 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3091 -127, 128U, NULL
, FALSE
);
3097 static const value_string ulp_T_apDeviceType_vals
[] = {
3098 { 0, "wlan802-11a" },
3099 { 1, "wlan802-11b" },
3100 { 2, "wlan802-11g" },
3106 dissect_ulp_T_apDeviceType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3107 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
3108 3, NULL
, TRUE
, 0, NULL
);
3116 dissect_ulp_INTEGER_0_256(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3117 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3118 0U, 256U, NULL
, FALSE
);
3126 dissect_ulp_INTEGER_0_16777216(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3127 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3128 0U, 16777216U, NULL
, FALSE
);
3134 static const value_string ulp_RTDUnits_vals
[] = {
3135 { 0, "microseconds" },
3136 { 1, "hundredsofnanoseconds" },
3137 { 2, "tensofnanoseconds" },
3138 { 3, "nanoseconds" },
3139 { 4, "tenthsofnanoseconds" },
3145 dissect_ulp_RTDUnits(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3146 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
3147 5, NULL
, TRUE
, 0, NULL
);
3153 static const per_sequence_t RTD_sequence
[] = {
3154 { &hf_ulp_rTDValue
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_16777216
},
3155 { &hf_ulp_rTDUnits
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_RTDUnits
},
3156 { &hf_ulp_rTDAccuracy
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
3157 { NULL
, 0, 0, NULL
}
3161 dissect_ulp_RTD(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3162 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3163 ett_ulp_RTD
, RTD_sequence
);
3169 static const value_string ulp_LocationEncodingDescriptor_vals
[] = {
3177 dissect_ulp_LocationEncodingDescriptor(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3178 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
3179 2, NULL
, TRUE
, 0, NULL
);
3187 dissect_ulp_INTEGER_0_4294967295(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3188 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3189 0U, 4294967295U, NULL
, FALSE
);
3197 dissect_ulp_OCTET_STRING_SIZE_1_128(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3198 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
3199 1, 128, FALSE
, NULL
);
3205 static const per_sequence_t LocationData_sequence
[] = {
3206 { &hf_ulp_locationAccuracy
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_4294967295
},
3207 { &hf_ulp_locationValue
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_OCTET_STRING_SIZE_1_128
},
3208 { NULL
, 0, 0, NULL
}
3212 dissect_ulp_LocationData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3213 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3214 ett_ulp_LocationData
, LocationData_sequence
);
3220 static const per_sequence_t ReportedLocation_sequence
[] = {
3221 { &hf_ulp_locationEncodingDescriptor
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_LocationEncodingDescriptor
},
3222 { &hf_ulp_locationData
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_LocationData
},
3223 { NULL
, 0, 0, NULL
}
3227 dissect_ulp_ReportedLocation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3228 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3229 ett_ulp_ReportedLocation
, ReportedLocation_sequence
);
3235 static const per_sequence_t WlanAPInformation_sequence
[] = {
3236 { &hf_ulp_apMACAddress
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_48
},
3237 { &hf_ulp_apTransmitPower
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3238 { &hf_ulp_apAntennaGain
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3239 { &hf_ulp_apSignaltoNoise
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3240 { &hf_ulp_apDeviceType
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_apDeviceType
},
3241 { &hf_ulp_apSignalStrength
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3242 { &hf_ulp_apChannelFrequency
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_256
},
3243 { &hf_ulp_apRoundTripDelay
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RTD
},
3244 { &hf_ulp_setTransmitPower
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3245 { &hf_ulp_setAntennaGain
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3246 { &hf_ulp_setSignaltoNoise
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3247 { &hf_ulp_setSignalStrength
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M127_128
},
3248 { &hf_ulp_apReportedLocation
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ReportedLocation
},
3249 { NULL
, 0, 0, NULL
}
3253 dissect_ulp_WlanAPInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3254 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3255 ett_ulp_WlanAPInformation
, WlanAPInformation_sequence
);
3263 dissect_ulp_BIT_STRING_SIZE_24(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3264 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3265 24, 24, FALSE
, NULL
);
3271 static const per_sequence_t WimaxBsID_sequence
[] = {
3272 { &hf_ulp_bsID_MSB
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_24
},
3273 { &hf_ulp_bsID_LSB
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_24
},
3274 { NULL
, 0, 0, NULL
}
3278 dissect_ulp_WimaxBsID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3279 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3280 ett_ulp_WimaxBsID
, WimaxBsID_sequence
);
3286 static const per_sequence_t WimaxRTD_sequence
[] = {
3287 { &hf_ulp_rTD
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
3288 { &hf_ulp_rTDstd
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_1023
},
3289 { NULL
, 0, 0, NULL
}
3293 dissect_ulp_WimaxRTD(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3294 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3295 ett_ulp_WimaxRTD
, WimaxRTD_sequence
);
3303 dissect_ulp_INTEGER_M32768_32767(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3304 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3305 -32768, 32767U, NULL
, FALSE
);
3311 static const per_sequence_t WimaxNMR_sequence
[] = {
3312 { &hf_ulp_wimaxBsID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_WimaxBsID
},
3313 { &hf_ulp_relDelay
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_M32768_32767
},
3314 { &hf_ulp_relDelaystd
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_1023
},
3315 { &hf_ulp_rSSI
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
3316 { &hf_ulp_rSSIstd
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_63
},
3317 { &hf_ulp_bSTxPower
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
3318 { &hf_ulp_cINR
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
3319 { &hf_ulp_cINRstd
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_63
},
3320 { &hf_ulp_bSLocation
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ReportedLocation
},
3321 { NULL
, 0, 0, NULL
}
3325 dissect_ulp_WimaxNMR(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3326 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3327 ett_ulp_WimaxNMR
, WimaxNMR_sequence
);
3333 static const per_sequence_t WimaxNMRList_sequence_of
[1] = {
3334 { &hf_ulp_WimaxNMRList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_WimaxNMR
},
3338 dissect_ulp_WimaxNMRList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3339 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
3340 ett_ulp_WimaxNMRList
, WimaxNMRList_sequence_of
,
3341 1, maxWimaxBSMeas
, FALSE
);
3347 static const per_sequence_t WimaxBSInformation_sequence
[] = {
3348 { &hf_ulp_wimaxBsID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_WimaxBsID
},
3349 { &hf_ulp_wimaxRTD
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_WimaxRTD
},
3350 { &hf_ulp_wimaxNMRList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_WimaxNMRList
},
3351 { NULL
, 0, 0, NULL
}
3355 dissect_ulp_WimaxBSInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3356 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3357 ett_ulp_WimaxBSInformation
, WimaxBSInformation_sequence
);
3363 static const value_string ulp_Ver2_CellInfo_extension_vals
[] = {
3372 static const per_choice_t Ver2_CellInfo_extension_choice
[] = {
3373 { 0, &hf_ulp_hrpdCell
, ASN1_EXTENSION_ROOT
, dissect_ulp_HrpdCellInformation
},
3374 { 1, &hf_ulp_umbCell
, ASN1_EXTENSION_ROOT
, dissect_ulp_UmbCellInformation
},
3375 { 2, &hf_ulp_lteCell
, ASN1_EXTENSION_ROOT
, dissect_ulp_LteCellInformation
},
3376 { 3, &hf_ulp_wlanAP
, ASN1_EXTENSION_ROOT
, dissect_ulp_WlanAPInformation
},
3377 { 4, &hf_ulp_wimaxBS
, ASN1_EXTENSION_ROOT
, dissect_ulp_WimaxBSInformation
},
3378 { 0, NULL
, 0, NULL
}
3382 dissect_ulp_Ver2_CellInfo_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3383 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
3384 ett_ulp_Ver2_CellInfo_extension
, Ver2_CellInfo_extension_choice
,
3391 static const value_string ulp_CellInfo_vals
[] = {
3395 { 3, "ver2-CellInfo-extension" },
3399 static const per_choice_t CellInfo_choice
[] = {
3400 { 0, &hf_ulp_gsmCell
, ASN1_EXTENSION_ROOT
, dissect_ulp_GsmCellInformation
},
3401 { 1, &hf_ulp_wcdmaCell
, ASN1_EXTENSION_ROOT
, dissect_ulp_WcdmaCellInformation
},
3402 { 2, &hf_ulp_cdmaCell
, ASN1_EXTENSION_ROOT
, dissect_ulp_CdmaCellInformation
},
3403 { 3, &hf_ulp_ver2_CellInfo_extension
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_CellInfo_extension
},
3404 { 0, NULL
, 0, NULL
}
3408 dissect_ulp_CellInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3409 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
3410 ett_ulp_CellInfo
, CellInfo_choice
,
3417 static const value_string ulp_Status_vals
[] = {
3426 dissect_ulp_Status(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3427 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
3428 3, NULL
, TRUE
, 0, NULL
);
3434 static const per_sequence_t LocationId_sequence
[] = {
3435 { &hf_ulp_cellInfo
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellInfo
},
3436 { &hf_ulp_status
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_Status
},
3437 { NULL
, 0, 0, NULL
}
3441 dissect_ulp_LocationId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3442 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3443 ett_ulp_LocationId
, LocationId_sequence
);
3451 dissect_ulp_RelativeTime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3452 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3453 0U, 65535U, NULL
, FALSE
);
3459 static const per_sequence_t LocationIdData_sequence
[] = {
3460 { &hf_ulp_locationId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_LocationId
},
3461 { &hf_ulp_relativetimestamp
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RelativeTime
},
3462 { &hf_ulp_servingFlag
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
3463 { NULL
, 0, 0, NULL
}
3467 dissect_ulp_LocationIdData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3468 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3469 ett_ulp_LocationIdData
, LocationIdData_sequence
);
3475 static const per_sequence_t MultipleLocationIds_sequence_of
[1] = {
3476 { &hf_ulp_MultipleLocationIds_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_LocationIdData
},
3480 dissect_ulp_MultipleLocationIds(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3481 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
3482 ett_ulp_MultipleLocationIds
, MultipleLocationIds_sequence_of
,
3483 1, maxLidSize
, FALSE
);
3491 dissect_ulp_T_sip_uri(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3492 #line 73 "../../asn1/ulp/ulp.cnf"
3493 offset
= dissect_per_restricted_character_string(tvb
, offset
, actx
, tree
, hf_index
,
3494 1, 255, FALSE
, "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789:./-_~%#@?", 72,
3504 dissect_ulp_T_ims_public_identity(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3505 #line 78 "../../asn1/ulp/ulp.cnf"
3506 offset
= dissect_per_restricted_character_string(tvb
, offset
, actx
, tree
, hf_index
,
3507 1, 255, FALSE
, "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789:./-_~%#@?", 72,
3517 dissect_ulp_T_uri(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3518 #line 83 "../../asn1/ulp/ulp.cnf"
3519 offset
= dissect_per_restricted_character_string(tvb
, offset
, actx
, tree
, hf_index
,
3520 1, 255, FALSE
, "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789./-_~%#", 69,
3530 static const value_string ulp_ThirdPartyID_vals
[] = {
3531 { 0, "logicalName" },
3535 { 4, "ims-public-identity" },
3542 static const per_choice_t ThirdPartyID_choice
[] = {
3543 { 0, &hf_ulp_logicalName
, ASN1_EXTENSION_ROOT
, dissect_ulp_IA5String_SIZE_1_1000
},
3544 { 1, &hf_ulp_msisdn
, ASN1_EXTENSION_ROOT
, dissect_ulp_OCTET_STRING_SIZE_8
},
3545 { 2, &hf_ulp_emailaddr
, ASN1_EXTENSION_ROOT
, dissect_ulp_IA5String_SIZE_1_1000
},
3546 { 3, &hf_ulp_sip_uri
, ASN1_EXTENSION_ROOT
, dissect_ulp_T_sip_uri
},
3547 { 4, &hf_ulp_ims_public_identity
, ASN1_EXTENSION_ROOT
, dissect_ulp_T_ims_public_identity
},
3548 { 5, &hf_ulp_min_01
, ASN1_EXTENSION_ROOT
, dissect_ulp_BIT_STRING_SIZE_34
},
3549 { 6, &hf_ulp_mdn
, ASN1_EXTENSION_ROOT
, dissect_ulp_OCTET_STRING_SIZE_8
},
3550 { 7, &hf_ulp_uri
, ASN1_EXTENSION_ROOT
, dissect_ulp_T_uri
},
3551 { 0, NULL
, 0, NULL
}
3555 dissect_ulp_ThirdPartyID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3556 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
3557 ett_ulp_ThirdPartyID
, ThirdPartyID_choice
,
3564 static const per_sequence_t ThirdParty_sequence_of
[1] = {
3565 { &hf_ulp_ThirdParty_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_ThirdPartyID
},
3569 dissect_ulp_ThirdParty(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3570 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
3571 ett_ulp_ThirdParty
, ThirdParty_sequence_of
,
3580 dissect_ulp_IA5String_SIZE_1_24(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3581 offset
= dissect_per_IA5String(tvb
, offset
, actx
, tree
, hf_index
,
3590 dissect_ulp_IA5String_SIZE_1_32(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3591 offset
= dissect_per_IA5String(tvb
, offset
, actx
, tree
, hf_index
,
3600 dissect_ulp_IA5String_SIZE_1_8(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3601 offset
= dissect_per_IA5String(tvb
, offset
, actx
, tree
, hf_index
,
3608 static const per_sequence_t ApplicationID_sequence
[] = {
3609 { &hf_ulp_appProvider
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_IA5String_SIZE_1_24
},
3610 { &hf_ulp_appName
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_IA5String_SIZE_1_32
},
3611 { &hf_ulp_appVersion
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_IA5String_SIZE_1_8
},
3612 { NULL
, 0, 0, NULL
}
3616 dissect_ulp_ApplicationID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3617 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3618 ett_ulp_ApplicationID
, ApplicationID_sequence
);
3626 dissect_ulp_UTCTime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3627 offset
= dissect_per_VisibleString(tvb
, offset
, actx
, tree
, hf_index
,
3628 NO_BOUND
, NO_BOUND
, FALSE
);
3634 static const value_string ulp_T_latitudeSign_vals
[] = {
3642 dissect_ulp_T_latitudeSign(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3643 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
3644 2, NULL
, FALSE
, 0, NULL
);
3652 dissect_ulp_INTEGER_M8388608_8388607(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3653 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3654 -8388608, 8388607U, NULL
, FALSE
);
3662 dissect_ulp_INTEGER_0_180(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3663 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3664 0U, 180U, NULL
, FALSE
);
3670 static const per_sequence_t T_uncertainty_sequence
[] = {
3671 { &hf_ulp_uncertaintySemiMajor
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
3672 { &hf_ulp_uncertaintySemiMinor
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
3673 { &hf_ulp_orientationMajorAxis
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_180
},
3674 { NULL
, 0, 0, NULL
}
3678 dissect_ulp_T_uncertainty(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3679 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3680 ett_ulp_T_uncertainty
, T_uncertainty_sequence
);
3688 dissect_ulp_INTEGER_0_100(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3689 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
3690 0U, 100U, NULL
, FALSE
);
3696 static const value_string ulp_T_altitudeDirection_vals
[] = {
3704 dissect_ulp_T_altitudeDirection(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3705 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
3706 2, NULL
, FALSE
, 0, NULL
);
3712 static const per_sequence_t AltitudeInfo_sequence
[] = {
3713 { &hf_ulp_altitudeDirection
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_altitudeDirection
},
3714 { &hf_ulp_altitude
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_32767
},
3715 { &hf_ulp_altUncertainty
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
3716 { NULL
, 0, 0, NULL
}
3720 dissect_ulp_AltitudeInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3721 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3722 ett_ulp_AltitudeInfo
, AltitudeInfo_sequence
);
3728 static const per_sequence_t PositionEstimate_sequence
[] = {
3729 { &hf_ulp_latitudeSign
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_latitudeSign
},
3730 { &hf_ulp_latitude
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_8388607
},
3731 { &hf_ulp_longitude
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_M8388608_8388607
},
3732 { &hf_ulp_uncertainty
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_uncertainty
},
3733 { &hf_ulp_confidence
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_100
},
3734 { &hf_ulp_altitudeInfo
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_AltitudeInfo
},
3735 { NULL
, 0, 0, NULL
}
3739 dissect_ulp_PositionEstimate(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3740 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3741 ett_ulp_PositionEstimate
, PositionEstimate_sequence
);
3749 dissect_ulp_BIT_STRING_SIZE_9(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3750 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3759 dissect_ulp_BIT_STRING_SIZE_16(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3760 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3761 16, 16, FALSE
, NULL
);
3767 static const per_sequence_t Horvel_sequence
[] = {
3768 { &hf_ulp_bearing
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_9
},
3769 { &hf_ulp_horspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_16
},
3770 { NULL
, 0, 0, NULL
}
3774 dissect_ulp_Horvel(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3775 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3776 ett_ulp_Horvel
, Horvel_sequence
);
3784 dissect_ulp_BIT_STRING_SIZE_1(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3785 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3794 dissect_ulp_BIT_STRING_SIZE_8(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3795 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3802 static const per_sequence_t Horandvervel_sequence
[] = {
3803 { &hf_ulp_verdirect
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_1
},
3804 { &hf_ulp_bearing
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_9
},
3805 { &hf_ulp_horspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_16
},
3806 { &hf_ulp_verspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_8
},
3807 { NULL
, 0, 0, NULL
}
3811 dissect_ulp_Horandvervel(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3812 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3813 ett_ulp_Horandvervel
, Horandvervel_sequence
);
3819 static const per_sequence_t Horveluncert_sequence
[] = {
3820 { &hf_ulp_bearing
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_9
},
3821 { &hf_ulp_horspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_16
},
3822 { &hf_ulp_uncertspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_8
},
3823 { NULL
, 0, 0, NULL
}
3827 dissect_ulp_Horveluncert(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3828 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3829 ett_ulp_Horveluncert
, Horveluncert_sequence
);
3835 static const per_sequence_t Horandveruncert_sequence
[] = {
3836 { &hf_ulp_verdirect
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_1
},
3837 { &hf_ulp_bearing
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_9
},
3838 { &hf_ulp_horspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_16
},
3839 { &hf_ulp_verspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_8
},
3840 { &hf_ulp_horuncertspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_8
},
3841 { &hf_ulp_veruncertspeed
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_8
},
3842 { NULL
, 0, 0, NULL
}
3846 dissect_ulp_Horandveruncert(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3847 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3848 ett_ulp_Horandveruncert
, Horandveruncert_sequence
);
3854 static const value_string ulp_Velocity_vals
[] = {
3856 { 1, "horandvervel" },
3857 { 2, "horveluncert" },
3858 { 3, "horandveruncert" },
3862 static const per_choice_t Velocity_choice
[] = {
3863 { 0, &hf_ulp_horvel
, ASN1_EXTENSION_ROOT
, dissect_ulp_Horvel
},
3864 { 1, &hf_ulp_horandvervel
, ASN1_EXTENSION_ROOT
, dissect_ulp_Horandvervel
},
3865 { 2, &hf_ulp_horveluncert
, ASN1_EXTENSION_ROOT
, dissect_ulp_Horveluncert
},
3866 { 3, &hf_ulp_horandveruncert
, ASN1_EXTENSION_ROOT
, dissect_ulp_Horandveruncert
},
3867 { 0, NULL
, 0, NULL
}
3871 dissect_ulp_Velocity(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3872 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
3873 ett_ulp_Velocity
, Velocity_choice
,
3880 static const per_sequence_t Position_sequence
[] = {
3881 { &hf_ulp_timestamp_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_UTCTime
},
3882 { &hf_ulp_positionEstimate
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PositionEstimate
},
3883 { &hf_ulp_velocity
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Velocity
},
3884 { NULL
, 0, 0, NULL
}
3888 dissect_ulp_Position(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3889 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3890 ett_ulp_Position
, Position_sequence
);
3896 static const per_sequence_t Ver2_SUPL_START_extension_sequence
[] = {
3897 { &hf_ulp_multipleLocationIds
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_MultipleLocationIds
},
3898 { &hf_ulp_thirdParty
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ThirdParty
},
3899 { &hf_ulp_applicationID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ApplicationID
},
3900 { &hf_ulp_position
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Position
},
3901 { NULL
, 0, 0, NULL
}
3905 dissect_ulp_Ver2_SUPL_START_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3906 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3907 ett_ulp_Ver2_SUPL_START_extension
, Ver2_SUPL_START_extension_sequence
);
3913 static const per_sequence_t SUPLSTART_sequence
[] = {
3914 { &hf_ulp_sETCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SETCapabilities
},
3915 { &hf_ulp_locationId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_LocationId
},
3916 { &hf_ulp_qoP
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_QoP
},
3917 { &hf_ulp_ver2_SUPL_START_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_SUPL_START_extension
},
3918 { NULL
, 0, 0, NULL
}
3922 dissect_ulp_SUPLSTART(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3923 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3924 ett_ulp_SUPLSTART
, SUPLSTART_sequence
);
3932 dissect_ulp_BIT_STRING_SIZE_256(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3933 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3934 256, 256, FALSE
, NULL
);
3940 static const value_string ulp_SETAuthKey_vals
[] = {
3946 static const per_choice_t SETAuthKey_choice
[] = {
3947 { 0, &hf_ulp_shortKey
, ASN1_EXTENSION_ROOT
, dissect_ulp_BIT_STRING_SIZE_128
},
3948 { 1, &hf_ulp_longKey
, ASN1_EXTENSION_ROOT
, dissect_ulp_BIT_STRING_SIZE_256
},
3949 { 0, NULL
, 0, NULL
}
3953 dissect_ulp_SETAuthKey(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3954 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
3955 ett_ulp_SETAuthKey
, SETAuthKey_choice
,
3964 dissect_ulp_KeyIdentity4(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3965 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3966 128, 128, FALSE
, NULL
);
3974 dissect_ulp_SPCSETKey(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3975 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
3976 128, 128, FALSE
, NULL
);
3982 static const per_sequence_t SPCTID_sequence
[] = {
3983 { &hf_ulp_rAND
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_128
},
3984 { &hf_ulp_slpFQDN
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_FQDN
},
3985 { NULL
, 0, 0, NULL
}
3989 dissect_ulp_SPCTID(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
3990 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
3991 ett_ulp_SPCTID
, SPCTID_sequence
);
3999 dissect_ulp_SPCSETKeylifetime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4000 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4001 1U, 24U, NULL
, FALSE
);
4007 static const per_sequence_t Ver2_SUPL_RESPONSE_extension_sequence
[] = {
4008 { &hf_ulp_supportedNetworkInformation
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedNetworkInformation
},
4009 { &hf_ulp_sPCSETKey
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SPCSETKey
},
4010 { &hf_ulp_sPCTID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SPCTID
},
4011 { &hf_ulp_sPCSETKeylifetime
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SPCSETKeylifetime
},
4012 { &hf_ulp_initialApproximateposition
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Position
},
4013 { &hf_ulp_gnssPosTechnology
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GNSSPosTechnology
},
4014 { NULL
, 0, 0, NULL
}
4018 dissect_ulp_Ver2_SUPL_RESPONSE_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4019 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4020 ett_ulp_Ver2_SUPL_RESPONSE_extension
, Ver2_SUPL_RESPONSE_extension_sequence
);
4026 static const per_sequence_t SUPLRESPONSE_sequence
[] = {
4027 { &hf_ulp_posMethod
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PosMethod
},
4028 { &hf_ulp_sLPAddress
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SLPAddress
},
4029 { &hf_ulp_sETAuthKey
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SETAuthKey
},
4030 { &hf_ulp_keyIdentity4
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_KeyIdentity4
},
4031 { &hf_ulp_ver2_SUPL_RESPONSE_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_SUPL_RESPONSE_extension
},
4032 { NULL
, 0, 0, NULL
}
4036 dissect_ulp_SUPLRESPONSE(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4037 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4038 ett_ulp_SUPLRESPONSE
, SUPLRESPONSE_sequence
);
4046 dissect_ulp_INTEGER_0_167(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4047 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4048 0U, 167U, NULL
, FALSE
);
4056 dissect_ulp_INTEGER_0_31(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4057 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4058 0U, 31U, NULL
, FALSE
);
4066 dissect_ulp_INTEGER_0_10(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4067 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4068 0U, 10U, NULL
, FALSE
);
4074 static const per_sequence_t SatelliteInfoElement_sequence
[] = {
4075 { &hf_ulp_satId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_63
},
4076 { &hf_ulp_iODE
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_255
},
4077 { NULL
, 0, 0, NULL
}
4081 dissect_ulp_SatelliteInfoElement(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4082 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4083 ett_ulp_SatelliteInfoElement
, SatelliteInfoElement_sequence
);
4089 static const per_sequence_t SatelliteInfo_sequence_of
[1] = {
4090 { &hf_ulp_SatelliteInfo_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_SatelliteInfoElement
},
4094 dissect_ulp_SatelliteInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4095 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
4096 ett_ulp_SatelliteInfo
, SatelliteInfo_sequence_of
,
4103 static const per_sequence_t NavigationModel_sequence
[] = {
4104 { &hf_ulp_gpsWeek
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_1023
},
4105 { &hf_ulp_gpsToe
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_167
},
4106 { &hf_ulp_nSAT
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_31
},
4107 { &hf_ulp_toeLimit
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_10
},
4108 { &hf_ulp_satInfo
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SatelliteInfo
},
4109 { NULL
, 0, 0, NULL
}
4113 dissect_ulp_NavigationModel(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4114 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4115 ett_ulp_NavigationModel
, NavigationModel_sequence
);
4121 static const per_sequence_t GanssRequestedCommonAssistanceDataList_sequence
[] = {
4122 { &hf_ulp_ganssReferenceTime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4123 { &hf_ulp_ganssIonosphericModel
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4124 { &hf_ulp_ganssAdditionalIonosphericModelForDataID00
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4125 { &hf_ulp_ganssAdditionalIonosphericModelForDataID11
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4126 { &hf_ulp_ganssEarthOrientationParameters
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4127 { NULL
, 0, 0, NULL
}
4131 dissect_ulp_GanssRequestedCommonAssistanceDataList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4132 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4133 ett_ulp_GanssRequestedCommonAssistanceDataList
, GanssRequestedCommonAssistanceDataList_sequence
);
4141 dissect_ulp_DGANSS_Sig_Id_Req(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4142 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
4151 dissect_ulp_INTEGER_0_4095(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4152 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4153 0U, 4095U, NULL
, FALSE
);
4159 static const per_sequence_t SatellitesListRelatedData_sequence
[] = {
4160 { &hf_ulp_satId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_63
},
4161 { &hf_ulp_iod
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_1023
},
4162 { NULL
, 0, 0, NULL
}
4166 dissect_ulp_SatellitesListRelatedData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4167 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4168 ett_ulp_SatellitesListRelatedData
, SatellitesListRelatedData_sequence
);
4174 static const per_sequence_t SatellitesListRelatedDataList_sequence_of
[1] = {
4175 { &hf_ulp_SatellitesListRelatedDataList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_SatellitesListRelatedData
},
4179 dissect_ulp_SatellitesListRelatedDataList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4180 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
4181 ett_ulp_SatellitesListRelatedDataList
, SatellitesListRelatedDataList_sequence_of
,
4182 0, maxGANSSSat
, FALSE
);
4188 static const per_sequence_t GanssNavigationModelData_sequence
[] = {
4189 { &hf_ulp_ganssWeek
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4095
},
4190 { &hf_ulp_ganssToe
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_167
},
4191 { &hf_ulp_t_toeLimit
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_15
},
4192 { &hf_ulp_satellitesListRelatedDataList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SatellitesListRelatedDataList
},
4193 { NULL
, 0, 0, NULL
}
4197 dissect_ulp_GanssNavigationModelData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4198 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4199 ett_ulp_GanssNavigationModelData
, GanssNavigationModelData_sequence
);
4207 dissect_ulp_INTEGER_0_59(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4208 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4209 0U, 59U, NULL
, FALSE
);
4215 static const per_sequence_t T_ganssDataBitSatList_sequence_of
[1] = {
4216 { &hf_ulp_ganssDataBitSatList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_63
},
4220 dissect_ulp_T_ganssDataBitSatList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4221 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
4222 ett_ulp_T_ganssDataBitSatList
, T_ganssDataBitSatList_sequence_of
,
4223 1, maxGANSSSat
, FALSE
);
4229 static const per_sequence_t ReqDataBitAssistanceList_sequence
[] = {
4230 { &hf_ulp_gnssSignals
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSSignals
},
4231 { &hf_ulp_ganssDataBitInterval
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_15
},
4232 { &hf_ulp_ganssDataBitSatList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_ganssDataBitSatList
},
4233 { NULL
, 0, 0, NULL
}
4237 dissect_ulp_ReqDataBitAssistanceList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4238 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4239 ett_ulp_ReqDataBitAssistanceList
, ReqDataBitAssistanceList_sequence
);
4245 static const per_sequence_t GanssDataBits_sequence
[] = {
4246 { &hf_ulp_ganssTODmin
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_59
},
4247 { &hf_ulp_reqDataBitAssistanceList
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_ReqDataBitAssistanceList
},
4248 { NULL
, 0, 0, NULL
}
4252 dissect_ulp_GanssDataBits(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4253 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4254 ett_ulp_GanssDataBits
, GanssDataBits_sequence
);
4260 static const per_sequence_t GanssAdditionalDataChoices_sequence
[] = {
4261 { &hf_ulp_orbitModelID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_7
},
4262 { &hf_ulp_clockModelID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_7
},
4263 { &hf_ulp_utcModelID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_7
},
4264 { &hf_ulp_almanacModelID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_7
},
4265 { NULL
, 0, 0, NULL
}
4269 dissect_ulp_GanssAdditionalDataChoices(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4270 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4271 ett_ulp_GanssAdditionalDataChoices
, GanssAdditionalDataChoices_sequence
);
4279 dissect_ulp_INTEGER_1_256(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4280 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4281 1U, 256U, NULL
, FALSE
);
4287 static const per_sequence_t ExtendedEphemeris_sequence
[] = {
4288 { &hf_ulp_validity
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_256
},
4289 { NULL
, 0, 0, NULL
}
4293 dissect_ulp_ExtendedEphemeris(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4294 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4295 ett_ulp_ExtendedEphemeris
, ExtendedEphemeris_sequence
);
4303 dissect_ulp_INTEGER_0_23(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4304 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4305 0U, 23U, NULL
, FALSE
);
4311 static const per_sequence_t GANSSextEphTime_sequence
[] = {
4312 { &hf_ulp_gANSSday
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_8191
},
4313 { &hf_ulp_gANSSTODhour
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_23
},
4314 { NULL
, 0, 0, NULL
}
4318 dissect_ulp_GANSSextEphTime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4319 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4320 ett_ulp_GANSSextEphTime
, GANSSextEphTime_sequence
);
4326 static const per_sequence_t GanssExtendedEphCheck_sequence
[] = {
4327 { &hf_ulp_beginTime_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSextEphTime
},
4328 { &hf_ulp_endTime_01
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSextEphTime
},
4329 { NULL
, 0, 0, NULL
}
4333 dissect_ulp_GanssExtendedEphCheck(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4334 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4335 ett_ulp_GanssExtendedEphCheck
, GanssExtendedEphCheck_sequence
);
4341 static const per_sequence_t GanssReqGenericData_sequence
[] = {
4342 { &hf_ulp_ganssId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_15
},
4343 { &hf_ulp_ganssSBASid
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_3
},
4344 { &hf_ulp_ganssRealTimeIntegrity
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4345 { &hf_ulp_ganssDifferentialCorrection
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_DGANSS_Sig_Id_Req
},
4346 { &hf_ulp_ganssAlmanac
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4347 { &hf_ulp_ganssNavigationModelData
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GanssNavigationModelData
},
4348 { &hf_ulp_ganssTimeModels
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_16
},
4349 { &hf_ulp_ganssReferenceMeasurementInfo
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4350 { &hf_ulp_ganssDataBits
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GanssDataBits
},
4351 { &hf_ulp_ganssUTCModel
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4352 { &hf_ulp_ganssAdditionalDataChoices
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GanssAdditionalDataChoices
},
4353 { &hf_ulp_ganssAuxiliaryInformation
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4354 { &hf_ulp_ganssExtendedEphemeris
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ExtendedEphemeris
},
4355 { &hf_ulp_ganssExtendedEphemerisCheck
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GanssExtendedEphCheck
},
4356 { NULL
, 0, 0, NULL
}
4360 dissect_ulp_GanssReqGenericData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4361 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4362 ett_ulp_GanssReqGenericData
, GanssReqGenericData_sequence
);
4368 static const per_sequence_t GanssRequestedGenericAssistanceDataList_sequence_of
[1] = {
4369 { &hf_ulp_GanssRequestedGenericAssistanceDataList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_GanssReqGenericData
},
4373 dissect_ulp_GanssRequestedGenericAssistanceDataList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4374 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
4375 ett_ulp_GanssRequestedGenericAssistanceDataList
, GanssRequestedGenericAssistanceDataList_sequence_of
,
4376 1, maxGANSS
, FALSE
);
4382 static const per_sequence_t GPSTime_sequence
[] = {
4383 { &hf_ulp_gPSWeek
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_1023
},
4384 { &hf_ulp_gPSTOWhour
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_167
},
4385 { NULL
, 0, 0, NULL
}
4389 dissect_ulp_GPSTime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4390 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4391 ett_ulp_GPSTime
, GPSTime_sequence
);
4397 static const per_sequence_t ExtendedEphCheck_sequence
[] = {
4398 { &hf_ulp_beginTime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GPSTime
},
4399 { &hf_ulp_endTime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GPSTime
},
4400 { NULL
, 0, 0, NULL
}
4404 dissect_ulp_ExtendedEphCheck(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4405 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4406 ett_ulp_ExtendedEphCheck
, ExtendedEphCheck_sequence
);
4412 static const per_sequence_t Ver2_RequestedAssistData_extension_sequence
[] = {
4413 { &hf_ulp_ganssRequestedCommonAssistanceDataList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GanssRequestedCommonAssistanceDataList
},
4414 { &hf_ulp_ganssRequestedGenericAssistanceDataList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GanssRequestedGenericAssistanceDataList
},
4415 { &hf_ulp_extendedEphemeris
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ExtendedEphemeris
},
4416 { &hf_ulp_extendedEphemerisCheck
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ExtendedEphCheck
},
4417 { NULL
, 0, 0, NULL
}
4421 dissect_ulp_Ver2_RequestedAssistData_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4422 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4423 ett_ulp_Ver2_RequestedAssistData_extension
, Ver2_RequestedAssistData_extension_sequence
);
4429 static const per_sequence_t RequestedAssistData_sequence
[] = {
4430 { &hf_ulp_almanacRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4431 { &hf_ulp_utcModelRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4432 { &hf_ulp_ionosphericModelRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4433 { &hf_ulp_dgpsCorrectionsRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4434 { &hf_ulp_referenceLocationRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4435 { &hf_ulp_referenceTimeRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4436 { &hf_ulp_acquisitionAssistanceRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4437 { &hf_ulp_realTimeIntegrityRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4438 { &hf_ulp_navigationModelRequested
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
4439 { &hf_ulp_navigationModelData
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_NavigationModel
},
4440 { &hf_ulp_ver2_RequestedAssistData_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_RequestedAssistData_extension
},
4441 { NULL
, 0, 0, NULL
}
4445 dissect_ulp_RequestedAssistData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4446 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4447 ett_ulp_RequestedAssistData
, RequestedAssistData_sequence
);
4455 dissect_ulp_OCTET_STRING_SIZE_1_8192(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4456 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
4457 1, 8192, FALSE
, NULL
);
4465 dissect_ulp_T_rrlpPayload(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4466 #line 54 "../../asn1/ulp/ulp.cnf"
4469 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
4470 1, 8192, FALSE
, &rrlp_tvb
);
4473 if (rrlp_tvb
&& rrlp_handle
) {
4474 call_dissector(rrlp_handle
, rrlp_tvb
, actx
->pinfo
, tree
);
4485 dissect_ulp_T_lPPPayload_item(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4486 #line 63 "../../asn1/ulp/ulp.cnf"
4489 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
4490 1, 60000, FALSE
, &lpp_tvb
);
4493 if (lpp_tvb
&& lpp_handle
) {
4494 call_dissector(lpp_handle
, lpp_tvb
, actx
->pinfo
, tree
);
4503 static const per_sequence_t T_lPPPayload_sequence_of
[1] = {
4504 { &hf_ulp_lPPPayload_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_lPPPayload_item
},
4508 dissect_ulp_T_lPPPayload(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4509 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
4510 ett_ulp_T_lPPPayload
, T_lPPPayload_sequence_of
,
4519 dissect_ulp_OCTET_STRING_SIZE_1_60000(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4520 offset
= dissect_per_octet_string(tvb
, offset
, actx
, tree
, hf_index
,
4521 1, 60000, FALSE
, NULL
);
4527 static const per_sequence_t T_tIA801Payload_sequence_of
[1] = {
4528 { &hf_ulp_tIA801Payload_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_OCTET_STRING_SIZE_1_60000
},
4532 dissect_ulp_T_tIA801Payload(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4533 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
4534 ett_ulp_T_tIA801Payload
, T_tIA801Payload_sequence_of
,
4541 static const per_sequence_t Ver2_PosPayLoad_extension_sequence
[] = {
4542 { &hf_ulp_lPPPayload
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_lPPPayload
},
4543 { &hf_ulp_tIA801Payload
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_tIA801Payload
},
4544 { NULL
, 0, 0, NULL
}
4548 dissect_ulp_Ver2_PosPayLoad_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4549 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4550 ett_ulp_Ver2_PosPayLoad_extension
, Ver2_PosPayLoad_extension_sequence
);
4556 static const value_string ulp_PosPayLoad_vals
[] = {
4557 { 0, "tia801payload" },
4558 { 1, "rrcPayload" },
4559 { 2, "rrlpPayload" },
4560 { 3, "ver2-PosPayLoad-extension" },
4564 static const per_choice_t PosPayLoad_choice
[] = {
4565 { 0, &hf_ulp_tia801payload
, ASN1_EXTENSION_ROOT
, dissect_ulp_OCTET_STRING_SIZE_1_8192
},
4566 { 1, &hf_ulp_rrcPayload
, ASN1_EXTENSION_ROOT
, dissect_ulp_OCTET_STRING_SIZE_1_8192
},
4567 { 2, &hf_ulp_rrlpPayload
, ASN1_EXTENSION_ROOT
, dissect_ulp_T_rrlpPayload
},
4568 { 3, &hf_ulp_ver2_PosPayLoad_extension
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_PosPayLoad_extension
},
4569 { 0, NULL
, 0, NULL
}
4573 dissect_ulp_PosPayLoad(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4574 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
4575 ett_ulp_PosPayLoad
, PosPayLoad_choice
,
4582 static const per_sequence_t T_utran_GPSTimingOfCell_sequence
[] = {
4583 { &hf_ulp_ms_part
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_1023
},
4584 { &hf_ulp_ls_part
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4294967295
},
4585 { NULL
, 0, 0, NULL
}
4589 dissect_ulp_T_utran_GPSTimingOfCell(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4590 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4591 ett_ulp_T_utran_GPSTimingOfCell
, T_utran_GPSTimingOfCell_sequence
);
4597 static const per_sequence_t T_fdd_01_sequence
[] = {
4598 { &hf_ulp_referenceIdentity
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_PrimaryCPICH_Info
},
4599 { NULL
, 0, 0, NULL
}
4603 dissect_ulp_T_fdd_01(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4604 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4605 ett_ulp_T_fdd_01
, T_fdd_01_sequence
);
4611 static const per_sequence_t T_tdd_01_sequence
[] = {
4612 { &hf_ulp_referenceIdentity_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellParametersID
},
4613 { NULL
, 0, 0, NULL
}
4617 dissect_ulp_T_tdd_01(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4618 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4619 ett_ulp_T_tdd_01
, T_tdd_01_sequence
);
4625 static const value_string ulp_T_modeSpecificInfo_01_vals
[] = {
4631 static const per_choice_t T_modeSpecificInfo_01_choice
[] = {
4632 { 0, &hf_ulp_fdd_01
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_fdd_01
},
4633 { 1, &hf_ulp_tdd_01
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_tdd_01
},
4634 { 0, NULL
, 0, NULL
}
4638 dissect_ulp_T_modeSpecificInfo_01(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4639 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
4640 ett_ulp_T_modeSpecificInfo_01
, T_modeSpecificInfo_01_choice
,
4647 static const per_sequence_t UTRAN_GPSReferenceTime_sequence
[] = {
4648 { &hf_ulp_utran_GPSTimingOfCell
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_utran_GPSTimingOfCell
},
4649 { &hf_ulp_modeSpecificInfo_01
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_T_modeSpecificInfo_01
},
4650 { &hf_ulp_sfn
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4095
},
4651 { NULL
, 0, 0, NULL
}
4655 dissect_ulp_UTRAN_GPSReferenceTime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4656 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4657 ett_ulp_UTRAN_GPSReferenceTime
, UTRAN_GPSReferenceTime_sequence
);
4663 static const value_string ulp_UTRANGPSDriftRate_vals
[] = {
4664 { 0, "utran-GPSDrift0" },
4665 { 1, "utran-GPSDrift1" },
4666 { 2, "utran-GPSDrift2" },
4667 { 3, "utran-GPSDrift5" },
4668 { 4, "utran-GPSDrift10" },
4669 { 5, "utran-GPSDrift15" },
4670 { 6, "utran-GPSDrift25" },
4671 { 7, "utran-GPSDrift50" },
4672 { 8, "utran-GPSDrift-1" },
4673 { 9, "utran-GPSDrift-2" },
4674 { 10, "utran-GPSDrift-5" },
4675 { 11, "utran-GPSDrift-10" },
4676 { 12, "utran-GPSDrift-15" },
4677 { 13, "utran-GPSDrift-25" },
4678 { 14, "utran-GPSDrift-50" },
4684 dissect_ulp_UTRANGPSDriftRate(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4685 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
4686 15, NULL
, FALSE
, 0, NULL
);
4692 static const per_sequence_t UTRAN_GPSReferenceTimeAssistance_sequence
[] = {
4693 { &hf_ulp_utran_GPSReferenceTime
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_UTRAN_GPSReferenceTime
},
4694 { &hf_ulp_gpsReferenceTimeUncertainty
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
4695 { &hf_ulp_utranGPSDriftRate
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_UTRANGPSDriftRate
},
4696 { NULL
, 0, 0, NULL
}
4700 dissect_ulp_UTRAN_GPSReferenceTimeAssistance(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4701 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4702 ett_ulp_UTRAN_GPSReferenceTimeAssistance
, UTRAN_GPSReferenceTimeAssistance_sequence
);
4710 dissect_ulp_INTEGER_0_16383(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4711 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4712 0U, 16383U, NULL
, FALSE
);
4718 static const per_sequence_t T_set_GPSTimingOfCell_sequence
[] = {
4719 { &hf_ulp_ms_part_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_16383
},
4720 { &hf_ulp_ls_part
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4294967295
},
4721 { NULL
, 0, 0, NULL
}
4725 dissect_ulp_T_set_GPSTimingOfCell(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4726 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4727 ett_ulp_T_set_GPSTimingOfCell
, T_set_GPSTimingOfCell_sequence
);
4733 static const per_sequence_t T_fdd_02_sequence
[] = {
4734 { &hf_ulp_referenceIdentity
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_PrimaryCPICH_Info
},
4735 { NULL
, 0, 0, NULL
}
4739 dissect_ulp_T_fdd_02(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4740 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4741 ett_ulp_T_fdd_02
, T_fdd_02_sequence
);
4747 static const per_sequence_t T_tdd_02_sequence
[] = {
4748 { &hf_ulp_referenceIdentity_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellParametersID
},
4749 { NULL
, 0, 0, NULL
}
4753 dissect_ulp_T_tdd_02(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4754 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4755 ett_ulp_T_tdd_02
, T_tdd_02_sequence
);
4761 static const value_string ulp_T_modeSpecificInfo_02_vals
[] = {
4767 static const per_choice_t T_modeSpecificInfo_02_choice
[] = {
4768 { 0, &hf_ulp_fdd_02
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_fdd_02
},
4769 { 1, &hf_ulp_tdd_02
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_tdd_02
},
4770 { 0, NULL
, 0, NULL
}
4774 dissect_ulp_T_modeSpecificInfo_02(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4775 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
4776 ett_ulp_T_modeSpecificInfo_02
, T_modeSpecificInfo_02_choice
,
4783 static const per_sequence_t UTRAN_GPSReferenceTimeResult_sequence
[] = {
4784 { &hf_ulp_set_GPSTimingOfCell
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_set_GPSTimingOfCell
},
4785 { &hf_ulp_modeSpecificInfo_02
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_modeSpecificInfo_02
},
4786 { &hf_ulp_sfn
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4095
},
4787 { &hf_ulp_gpsReferenceTimeUncertainty
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
4788 { NULL
, 0, 0, NULL
}
4792 dissect_ulp_UTRAN_GPSReferenceTimeResult(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4793 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4794 ett_ulp_UTRAN_GPSReferenceTimeResult
, UTRAN_GPSReferenceTimeResult_sequence
);
4802 dissect_ulp_INTEGER_0_86399(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4803 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4804 0U, 86399U, NULL
, FALSE
);
4812 dissect_ulp_INTEGER_0_3999999(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4813 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4814 0U, 3999999U, NULL
, FALSE
);
4820 static const per_sequence_t T_fdd_03_sequence
[] = {
4821 { &hf_ulp_referenceIdentity
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_PrimaryCPICH_Info
},
4822 { NULL
, 0, 0, NULL
}
4826 dissect_ulp_T_fdd_03(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4827 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4828 ett_ulp_T_fdd_03
, T_fdd_03_sequence
);
4834 static const per_sequence_t T_tdd_03_sequence
[] = {
4835 { &hf_ulp_referenceIdentity_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellParametersID
},
4836 { NULL
, 0, 0, NULL
}
4840 dissect_ulp_T_tdd_03(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4841 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4842 ett_ulp_T_tdd_03
, T_tdd_03_sequence
);
4848 static const value_string ulp_T_modeSpecificInfo_03_vals
[] = {
4854 static const per_choice_t T_modeSpecificInfo_03_choice
[] = {
4855 { 0, &hf_ulp_fdd_03
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_fdd_03
},
4856 { 1, &hf_ulp_tdd_03
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_tdd_03
},
4857 { 0, NULL
, 0, NULL
}
4861 dissect_ulp_T_modeSpecificInfo_03(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4862 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
4863 ett_ulp_T_modeSpecificInfo_03
, T_modeSpecificInfo_03_choice
,
4870 static const per_sequence_t UTRAN_GANSSReferenceTime_sequence
[] = {
4871 { &hf_ulp_ganssTOD
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_86399
},
4872 { &hf_ulp_utran_GANSSTimingOfCell
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_3999999
},
4873 { &hf_ulp_modeSpecificInfo_03
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_modeSpecificInfo_03
},
4874 { &hf_ulp_sfn
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4095
},
4875 { &hf_ulp_ganss_TODUncertainty
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
4876 { NULL
, 0, 0, NULL
}
4880 dissect_ulp_UTRAN_GANSSReferenceTime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4881 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4882 ett_ulp_UTRAN_GANSSReferenceTime
, UTRAN_GANSSReferenceTime_sequence
);
4888 static const value_string ulp_UTRANGANSSDriftRate_vals
[] = {
4889 { 0, "utran-GANSSDrift0" },
4890 { 1, "utran-GANSSDrift1" },
4891 { 2, "utran-GANSSDrift2" },
4892 { 3, "utran-GANSSDrift5" },
4893 { 4, "utran-GANSSDrift10" },
4894 { 5, "utran-GANSSDrift15" },
4895 { 6, "utran-GANSSDrift25" },
4896 { 7, "utran-GANSSDrift50" },
4897 { 8, "utran-GANSSDrift-1" },
4898 { 9, "utran-GANSSDrift-2" },
4899 { 10, "utran-GANSSDrift-5" },
4900 { 11, "utran-GANSSDrift-10" },
4901 { 12, "utran-GANSSDrift-15" },
4902 { 13, "utran-GANSSDrift-25" },
4903 { 14, "utran-GANSSDrift-50" },
4909 dissect_ulp_UTRANGANSSDriftRate(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4910 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
4911 15, NULL
, FALSE
, 0, NULL
);
4917 static const per_sequence_t UTRAN_GANSSReferenceTimeAssistance_sequence
[] = {
4918 { &hf_ulp_ganssDay
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_8191
},
4919 { &hf_ulp_ganssTimeID
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_15
},
4920 { &hf_ulp_utran_GANSSReferenceTime
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_UTRAN_GANSSReferenceTime
},
4921 { &hf_ulp_utranGANSSDriftRate
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_UTRANGANSSDriftRate
},
4922 { NULL
, 0, 0, NULL
}
4926 dissect_ulp_UTRAN_GANSSReferenceTimeAssistance(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4927 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4928 ett_ulp_UTRAN_GANSSReferenceTimeAssistance
, UTRAN_GANSSReferenceTimeAssistance_sequence
);
4936 dissect_ulp_INTEGER_0_80(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4937 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
4938 0U, 80U, NULL
, FALSE
);
4944 static const per_sequence_t T_set_GANSSTimingOfCell_sequence
[] = {
4945 { &hf_ulp_ms_part_02
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_80
},
4946 { &hf_ulp_ls_part
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4294967295
},
4947 { NULL
, 0, 0, NULL
}
4951 dissect_ulp_T_set_GANSSTimingOfCell(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4952 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4953 ett_ulp_T_set_GANSSTimingOfCell
, T_set_GANSSTimingOfCell_sequence
);
4959 static const per_sequence_t T_fdd_04_sequence
[] = {
4960 { &hf_ulp_referenceIdentity
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_PrimaryCPICH_Info
},
4961 { NULL
, 0, 0, NULL
}
4965 dissect_ulp_T_fdd_04(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4966 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4967 ett_ulp_T_fdd_04
, T_fdd_04_sequence
);
4973 static const per_sequence_t T_tdd_04_sequence
[] = {
4974 { &hf_ulp_referenceIdentity_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_CellParametersID
},
4975 { NULL
, 0, 0, NULL
}
4979 dissect_ulp_T_tdd_04(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
4980 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
4981 ett_ulp_T_tdd_04
, T_tdd_04_sequence
);
4987 static const value_string ulp_T_modeSpecificInfo_04_vals
[] = {
4993 static const per_choice_t T_modeSpecificInfo_04_choice
[] = {
4994 { 0, &hf_ulp_fdd_04
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_fdd_04
},
4995 { 1, &hf_ulp_tdd_04
, ASN1_NO_EXTENSIONS
, dissect_ulp_T_tdd_04
},
4996 { 0, NULL
, 0, NULL
}
5000 dissect_ulp_T_modeSpecificInfo_04(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5001 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
5002 ett_ulp_T_modeSpecificInfo_04
, T_modeSpecificInfo_04_choice
,
5009 static const per_sequence_t SET_GANSSReferenceTime_sequence
[] = {
5010 { &hf_ulp_set_GANSSTimingOfCell
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_set_GANSSTimingOfCell
},
5011 { &hf_ulp_modeSpecificInfo_04
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_T_modeSpecificInfo_04
},
5012 { &hf_ulp_sfn
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_4095
},
5013 { &hf_ulp_ganss_TODUncertainty
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_127
},
5014 { NULL
, 0, 0, NULL
}
5018 dissect_ulp_SET_GANSSReferenceTime(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5019 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5020 ett_ulp_SET_GANSSReferenceTime
, SET_GANSSReferenceTime_sequence
);
5026 static const per_sequence_t UTRAN_GANSSReferenceTimeResult_sequence
[] = {
5027 { &hf_ulp_ganssTimeID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_15
},
5028 { &hf_ulp_set_GANSSReferenceTime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SET_GANSSReferenceTime
},
5029 { NULL
, 0, 0, NULL
}
5033 dissect_ulp_UTRAN_GANSSReferenceTimeResult(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5034 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5035 ett_ulp_UTRAN_GANSSReferenceTimeResult
, UTRAN_GANSSReferenceTimeResult_sequence
);
5041 static const per_sequence_t Ver2_SUPL_POS_extension_sequence
[] = {
5042 { &hf_ulp_utran_GPSReferenceTimeAssistance
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_UTRAN_GPSReferenceTimeAssistance
},
5043 { &hf_ulp_utran_GPSReferenceTimeResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_UTRAN_GPSReferenceTimeResult
},
5044 { &hf_ulp_utran_GANSSReferenceTimeAssistance
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_UTRAN_GANSSReferenceTimeAssistance
},
5045 { &hf_ulp_utran_GANSSReferenceTimeResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_UTRAN_GANSSReferenceTimeResult
},
5046 { NULL
, 0, 0, NULL
}
5050 dissect_ulp_Ver2_SUPL_POS_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5051 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5052 ett_ulp_Ver2_SUPL_POS_extension
, Ver2_SUPL_POS_extension_sequence
);
5058 static const per_sequence_t SUPLPOS_sequence
[] = {
5059 { &hf_ulp_posPayLoad
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PosPayLoad
},
5060 { &hf_ulp_velocity
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Velocity
},
5061 { &hf_ulp_ver2_SUPL_POS_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_SUPL_POS_extension
},
5062 { NULL
, 0, 0, NULL
}
5066 dissect_ulp_SUPLPOS(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5067 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5068 ett_ulp_SUPLPOS
, SUPLPOS_sequence
);
5076 dissect_ulp_Ver(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5077 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
5078 64, 64, FALSE
, NULL
);
5084 static const per_sequence_t Ver2_SUPL_POS_INIT_extension_sequence
[] = {
5085 { &hf_ulp_multipleLocationIds
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_MultipleLocationIds
},
5086 { &hf_ulp_utran_GPSReferenceTimeResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_UTRAN_GPSReferenceTimeResult
},
5087 { &hf_ulp_utran_GANSSReferenceTimeResult
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_UTRAN_GANSSReferenceTimeResult
},
5088 { NULL
, 0, 0, NULL
}
5092 dissect_ulp_Ver2_SUPL_POS_INIT_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5093 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5094 ett_ulp_Ver2_SUPL_POS_INIT_extension
, Ver2_SUPL_POS_INIT_extension_sequence
);
5100 static const per_sequence_t SUPLPOSINIT_sequence
[] = {
5101 { &hf_ulp_sETCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SETCapabilities
},
5102 { &hf_ulp_requestedAssistData
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RequestedAssistData
},
5103 { &hf_ulp_locationId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_LocationId
},
5104 { &hf_ulp_position
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Position
},
5105 { &hf_ulp_sUPLPOS
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SUPLPOS
},
5106 { &hf_ulp_ver
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver
},
5107 { &hf_ulp_ver2_SUPL_POS_INIT_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_SUPL_POS_INIT_extension
},
5108 { NULL
, 0, 0, NULL
}
5112 dissect_ulp_SUPLPOSINIT(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5113 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5114 ett_ulp_SUPLPOSINIT
, SUPLPOSINIT_sequence
);
5120 static const value_string ulp_StatusCode_vals
[] = {
5121 { 0, "unspecified" },
5122 { 1, "systemFailure" },
5123 { 2, "unexpectedMessage" },
5124 { 3, "protocolError" },
5125 { 4, "dataMissing" },
5126 { 5, "unexpectedDataValue" },
5127 { 6, "posMethodFailure" },
5128 { 7, "posMethodMismatch" },
5129 { 8, "posProtocolMismatch" },
5130 { 9, "targetSETnotReachable" },
5131 { 10, "versionNotSupported" },
5132 { 11, "resourceShortage" },
5133 { 12, "invalidSessionId" },
5134 { 13, "nonProxyModeNotSupported" },
5135 { 14, "proxyModeNotSupported" },
5136 { 15, "positioningNotPermitted" },
5137 { 16, "authNetFailure" },
5138 { 17, "authSuplinitFailure" },
5139 { 100, "consentDeniedByUser" },
5140 { 101, "consentGrantedByUser" },
5141 { 18, "ver2-incompatibleProtectionLevel" },
5142 { 19, "ver2-serviceNotSupported" },
5143 { 20, "ver2-insufficientInterval" },
5144 { 21, "ver2-noSUPLCoverage" },
5145 { 102, "ver2-sessionStopped" },
5149 static guint32 StatusCode_value_map
[20+5] = {0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 100, 101, 18, 19, 20, 21, 102};
5152 dissect_ulp_StatusCode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5153 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
5154 20, NULL
, TRUE
, 5, StatusCode_value_map
);
5160 static const per_sequence_t Ver2_SUPL_END_extension_sequence
[] = {
5161 { &hf_ulp_sETCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SETCapabilities
},
5162 { NULL
, 0, 0, NULL
}
5166 dissect_ulp_Ver2_SUPL_END_extension(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5167 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5168 ett_ulp_Ver2_SUPL_END_extension
, Ver2_SUPL_END_extension_sequence
);
5174 static const per_sequence_t SUPLEND_sequence
[] = {
5175 { &hf_ulp_position
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Position
},
5176 { &hf_ulp_statusCode
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_StatusCode
},
5177 { &hf_ulp_ver
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver
},
5178 { &hf_ulp_ver2_SUPL_END_extension
, ASN1_NOT_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver2_SUPL_END_extension
},
5179 { NULL
, 0, 0, NULL
}
5183 dissect_ulp_SUPLEND(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5184 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5185 ett_ulp_SUPLEND
, SUPLEND_sequence
);
5191 static const per_sequence_t SUPLAUTHREQ_sequence
[] = {
5192 { &hf_ulp_ver
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver
},
5193 { &hf_ulp_sETCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SETCapabilities
},
5194 { NULL
, 0, 0, NULL
}
5198 dissect_ulp_SUPLAUTHREQ(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5199 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5200 ett_ulp_SUPLAUTHREQ
, SUPLAUTHREQ_sequence
);
5206 static const per_sequence_t SUPLAUTHRESP_sequence
[] = {
5207 { &hf_ulp_sPCSETKey
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SPCSETKey
},
5208 { &hf_ulp_sPCTID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SPCTID
},
5209 { &hf_ulp_sPCSETKeylifetime
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SPCSETKeylifetime
},
5210 { NULL
, 0, 0, NULL
}
5214 dissect_ulp_SUPLAUTHRESP(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5215 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5216 ett_ulp_SUPLAUTHRESP
, SUPLAUTHRESP_sequence
);
5224 dissect_ulp_INTEGER_1_8639999(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5225 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5226 1U, 8639999U, NULL
, FALSE
);
5234 dissect_ulp_INTEGER_0_2678400(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5235 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5236 0U, 2678400U, NULL
, FALSE
);
5242 static const per_sequence_t PeriodicParams_sequence
[] = {
5243 { &hf_ulp_numberOfFixes
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_8639999
},
5244 { &hf_ulp_intervalBetweenFixes
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_8639999
},
5245 { &hf_ulp_startTime
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_2678400
},
5246 { NULL
, 0, 0, NULL
}
5250 dissect_ulp_PeriodicParams(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5251 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5252 ett_ulp_PeriodicParams
, PeriodicParams_sequence
);
5258 static const value_string ulp_AreaEventType_vals
[] = {
5259 { 0, "enteringArea" },
5260 { 1, "insideArea" },
5261 { 2, "outsideArea" },
5262 { 3, "leavingArea" },
5268 dissect_ulp_AreaEventType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5269 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
5270 4, NULL
, TRUE
, 0, NULL
);
5278 dissect_ulp_INTEGER_1_604800(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5279 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5280 1U, 604800U, NULL
, FALSE
);
5286 static const per_sequence_t RepeatedReportingParams_sequence
[] = {
5287 { &hf_ulp_minimumIntervalTime
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_604800
},
5288 { &hf_ulp_maximumNumberOfReports
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_1024
},
5289 { NULL
, 0, 0, NULL
}
5293 dissect_ulp_RepeatedReportingParams(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5294 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5295 ett_ulp_RepeatedReportingParams
, RepeatedReportingParams_sequence
);
5303 dissect_ulp_INTEGER_0_11318399(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5304 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5305 0U, 11318399U, NULL
, FALSE
);
5311 static const value_string ulp_T_latitudeSign_01_vals
[] = {
5319 dissect_ulp_T_latitudeSign_01(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5320 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
5321 2, NULL
, FALSE
, 0, NULL
);
5327 static const per_sequence_t Coordinate_sequence
[] = {
5328 { &hf_ulp_latitudeSign_01
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_T_latitudeSign_01
},
5329 { &hf_ulp_latitude
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_8388607
},
5330 { &hf_ulp_longitude
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_M8388608_8388607
},
5331 { NULL
, 0, 0, NULL
}
5335 dissect_ulp_Coordinate(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5336 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5337 ett_ulp_Coordinate
, Coordinate_sequence
);
5345 dissect_ulp_INTEGER_1_1000000(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5346 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5347 1U, 1000000U, NULL
, FALSE
);
5355 dissect_ulp_INTEGER_1_1500000(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5356 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5357 1U, 1500000U, NULL
, FALSE
);
5363 static const per_sequence_t CircularArea_sequence
[] = {
5364 { &hf_ulp_coordinate
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_Coordinate
},
5365 { &hf_ulp_radius
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_1000000
},
5366 { &hf_ulp_radius_min
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1000000
},
5367 { &hf_ulp_radius_max
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1500000
},
5368 { NULL
, 0, 0, NULL
}
5372 dissect_ulp_CircularArea(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5373 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5374 ett_ulp_CircularArea
, CircularArea_sequence
);
5382 dissect_ulp_INTEGER_0_179(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5383 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5384 0U, 179U, NULL
, FALSE
);
5390 static const per_sequence_t EllipticalArea_sequence
[] = {
5391 { &hf_ulp_coordinate
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_Coordinate
},
5392 { &hf_ulp_semiMajor
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_1000000
},
5393 { &hf_ulp_semiMajor_min
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1000000
},
5394 { &hf_ulp_semiMajor_max
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1500000
},
5395 { &hf_ulp_semiMinor
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_1_1000000
},
5396 { &hf_ulp_semiMinor_min
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1000000
},
5397 { &hf_ulp_semiMinor_max
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_1500000
},
5398 { &hf_ulp_angle
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_179
},
5399 { NULL
, 0, 0, NULL
}
5403 dissect_ulp_EllipticalArea(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5404 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5405 ett_ulp_EllipticalArea
, EllipticalArea_sequence
);
5411 static const per_sequence_t PolygonDescription_sequence_of
[1] = {
5412 { &hf_ulp_PolygonDescription_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_Coordinate
},
5416 dissect_ulp_PolygonDescription(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5417 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
5418 ett_ulp_PolygonDescription
, PolygonDescription_sequence_of
,
5427 dissect_ulp_INTEGER_1_100000(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5428 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5429 1U, 100000U, NULL
, FALSE
);
5435 static const per_sequence_t PolygonArea_sequence
[] = {
5436 { &hf_ulp_polygonDescription
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_PolygonDescription
},
5437 { &hf_ulp_polygonHysteresis
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_1_100000
},
5438 { NULL
, 0, 0, NULL
}
5442 dissect_ulp_PolygonArea(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5443 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5444 ett_ulp_PolygonArea
, PolygonArea_sequence
);
5450 static const value_string ulp_GeographicTargetArea_vals
[] = {
5451 { 0, "circularArea" },
5452 { 1, "ellipticalArea" },
5453 { 2, "polygonArea" },
5457 static const per_choice_t GeographicTargetArea_choice
[] = {
5458 { 0, &hf_ulp_circularArea
, ASN1_EXTENSION_ROOT
, dissect_ulp_CircularArea
},
5459 { 1, &hf_ulp_ellipticalArea
, ASN1_EXTENSION_ROOT
, dissect_ulp_EllipticalArea
},
5460 { 2, &hf_ulp_polygonArea
, ASN1_EXTENSION_ROOT
, dissect_ulp_PolygonArea
},
5461 { 0, NULL
, 0, NULL
}
5465 dissect_ulp_GeographicTargetArea(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5466 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
5467 ett_ulp_GeographicTargetArea
, GeographicTargetArea_choice
,
5474 static const per_sequence_t GeographicTargetAreaList_sequence_of
[1] = {
5475 { &hf_ulp_GeographicTargetAreaList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_GeographicTargetArea
},
5479 dissect_ulp_GeographicTargetAreaList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5480 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
5481 ett_ulp_GeographicTargetAreaList
, GeographicTargetAreaList_sequence_of
,
5482 1, maxNumGeoArea
, FALSE
);
5488 static const per_sequence_t GSMAreaId_sequence
[] = {
5489 { &hf_ulp_refMCC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5490 { &hf_ulp_refMNC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5491 { &hf_ulp_refLAC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
5492 { &hf_ulp_refCI
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
5493 { NULL
, 0, 0, NULL
}
5497 dissect_ulp_GSMAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5498 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5499 ett_ulp_GSMAreaId
, GSMAreaId_sequence
);
5505 static const per_sequence_t WCDMAAreaId_sequence
[] = {
5506 { &hf_ulp_refMCC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5507 { &hf_ulp_refMNC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5508 { &hf_ulp_refLAC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
5509 { &hf_ulp_refUC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_268435455
},
5510 { NULL
, 0, 0, NULL
}
5514 dissect_ulp_WCDMAAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5515 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5516 ett_ulp_WCDMAAreaId
, WCDMAAreaId_sequence
);
5522 static const per_sequence_t CDMAAreaId_sequence
[] = {
5523 { &hf_ulp_refSID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
5524 { &hf_ulp_refNID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_32767
},
5525 { &hf_ulp_refBASEID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
5526 { NULL
, 0, 0, NULL
}
5530 dissect_ulp_CDMAAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5531 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5532 ett_ulp_CDMAAreaId
, CDMAAreaId_sequence
);
5538 static const per_sequence_t HRPDAreaId_sequence
[] = {
5539 { &hf_ulp_refSECTORID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_128
},
5540 { NULL
, 0, 0, NULL
}
5544 dissect_ulp_HRPDAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5545 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5546 ett_ulp_HRPDAreaId
, HRPDAreaId_sequence
);
5552 static const per_sequence_t UMBAreaId_sequence
[] = {
5553 { &hf_ulp_refMCC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5554 { &hf_ulp_refMNC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5555 { &hf_ulp_refSECTORID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_128
},
5556 { NULL
, 0, 0, NULL
}
5560 dissect_ulp_UMBAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5561 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5562 ett_ulp_UMBAreaId
, UMBAreaId_sequence
);
5570 dissect_ulp_BIT_STRING_SIZE_29(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5571 offset
= dissect_per_bit_string(tvb
, offset
, actx
, tree
, hf_index
,
5572 29, 29, FALSE
, NULL
);
5578 static const per_sequence_t LTEAreaId_sequence
[] = {
5579 { &hf_ulp_refMCC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5580 { &hf_ulp_refMNC
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_999
},
5581 { &hf_ulp_refCI_01
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_29
},
5582 { NULL
, 0, 0, NULL
}
5586 dissect_ulp_LTEAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5587 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5588 ett_ulp_LTEAreaId
, LTEAreaId_sequence
);
5594 static const per_sequence_t WLANAreaId_sequence
[] = {
5595 { &hf_ulp_apMACAddress
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_48
},
5596 { NULL
, 0, 0, NULL
}
5600 dissect_ulp_WLANAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5601 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5602 ett_ulp_WLANAreaId
, WLANAreaId_sequence
);
5608 static const per_sequence_t WimaxAreaId_sequence
[] = {
5609 { &hf_ulp_bsID_MSB
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_24
},
5610 { &hf_ulp_bsID_LSB
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_BIT_STRING_SIZE_24
},
5611 { NULL
, 0, 0, NULL
}
5615 dissect_ulp_WimaxAreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5616 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5617 ett_ulp_WimaxAreaId
, WimaxAreaId_sequence
);
5623 static const value_string ulp_AreaId_vals
[] = {
5625 { 1, "wCDMAAreaId" },
5626 { 2, "cDMAAreaId" },
5627 { 3, "hRPDAreaId" },
5630 { 6, "wLANAreaId" },
5631 { 7, "wiMAXAreaId" },
5635 static const per_choice_t AreaId_choice
[] = {
5636 { 0, &hf_ulp_gSMAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_GSMAreaId
},
5637 { 1, &hf_ulp_wCDMAAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_WCDMAAreaId
},
5638 { 2, &hf_ulp_cDMAAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_CDMAAreaId
},
5639 { 3, &hf_ulp_hRPDAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_HRPDAreaId
},
5640 { 4, &hf_ulp_uMBAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_UMBAreaId
},
5641 { 5, &hf_ulp_lTEAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_LTEAreaId
},
5642 { 6, &hf_ulp_wLANAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_WLANAreaId
},
5643 { 7, &hf_ulp_wiMAXAreaId
, ASN1_EXTENSION_ROOT
, dissect_ulp_WimaxAreaId
},
5644 { 0, NULL
, 0, NULL
}
5648 dissect_ulp_AreaId(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5649 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
5650 ett_ulp_AreaId
, AreaId_choice
,
5657 static const per_sequence_t AreaIdSet_sequence_of
[1] = {
5658 { &hf_ulp_AreaIdSet_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_AreaId
},
5662 dissect_ulp_AreaIdSet(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5663 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
5664 ett_ulp_AreaIdSet
, AreaIdSet_sequence_of
,
5665 1, maxAreaId
, FALSE
);
5671 static const value_string ulp_AreaIdSetType_vals
[] = {
5679 dissect_ulp_AreaIdSetType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5680 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
5681 2, NULL
, TRUE
, 0, NULL
);
5689 dissect_ulp_GeoAreaIndex(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5690 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5691 1U, maxNumGeoArea
, NULL
, FALSE
);
5697 static const per_sequence_t GeoAreaMappingList_sequence_of
[1] = {
5698 { &hf_ulp_GeoAreaMappingList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_GeoAreaIndex
},
5702 dissect_ulp_GeoAreaMappingList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5703 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
5704 ett_ulp_GeoAreaMappingList
, GeoAreaMappingList_sequence_of
,
5705 1, maxNumGeoArea
, FALSE
);
5711 static const per_sequence_t AreaIdList_sequence
[] = {
5712 { &hf_ulp_areaIdSet
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_AreaIdSet
},
5713 { &hf_ulp_areaIdSetType
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_AreaIdSetType
},
5714 { &hf_ulp_geoAreaMappingList
, ASN1_NO_EXTENSIONS
, ASN1_OPTIONAL
, dissect_ulp_GeoAreaMappingList
},
5715 { NULL
, 0, 0, NULL
}
5719 dissect_ulp_AreaIdList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5720 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5721 ett_ulp_AreaIdList
, AreaIdList_sequence
);
5727 static const per_sequence_t SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList_sequence_of
[1] = {
5728 { &hf_ulp_areaIdLists_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_AreaIdList
},
5732 dissect_ulp_SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5733 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
5734 ett_ulp_SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList
, SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList_sequence_of
,
5735 1, maxAreaIdList
, FALSE
);
5741 static const per_sequence_t AreaEventParams_sequence
[] = {
5742 { &hf_ulp_areaEventType
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_AreaEventType
},
5743 { &hf_ulp_locationEstimate
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
5744 { &hf_ulp_repeatedReportingParams
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_RepeatedReportingParams
},
5745 { &hf_ulp_startTime
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_2678400
},
5746 { &hf_ulp_stopTime
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_INTEGER_0_11318399
},
5747 { &hf_ulp_geographicTargetAreaList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GeographicTargetAreaList
},
5748 { &hf_ulp_areaIdLists
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList
},
5749 { NULL
, 0, 0, NULL
}
5753 dissect_ulp_AreaEventParams(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5754 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5755 ett_ulp_AreaEventParams
, AreaEventParams_sequence
);
5761 static const value_string ulp_TriggerParams_vals
[] = {
5762 { 0, "periodicParams" },
5763 { 1, "areaEventParams" },
5767 static const per_choice_t TriggerParams_choice
[] = {
5768 { 0, &hf_ulp_periodicParams
, ASN1_EXTENSION_ROOT
, dissect_ulp_PeriodicParams
},
5769 { 1, &hf_ulp_areaEventParams
, ASN1_EXTENSION_ROOT
, dissect_ulp_AreaEventParams
},
5770 { 0, NULL
, 0, NULL
}
5774 dissect_ulp_TriggerParams(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5775 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
5776 ett_ulp_TriggerParams
, TriggerParams_choice
,
5783 static const value_string ulp_CauseCode_vals
[] = {
5784 { 0, "servingNetWorkNotInAreaIdList" },
5785 { 1, "sETCapabilitiesChanged" },
5786 { 2, "noSUPLCoverage" },
5792 dissect_ulp_CauseCode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5793 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
5794 3, NULL
, TRUE
, 0, NULL
);
5800 static const per_sequence_t Ver2_SUPLTRIGGEREDSTART_sequence
[] = {
5801 { &hf_ulp_sETCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SETCapabilities
},
5802 { &hf_ulp_locationId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_LocationId
},
5803 { &hf_ulp_ver
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver
},
5804 { &hf_ulp_qoP
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_QoP
},
5805 { &hf_ulp_multipleLocationIds
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_MultipleLocationIds
},
5806 { &hf_ulp_thirdParty
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ThirdParty
},
5807 { &hf_ulp_applicationID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ApplicationID
},
5808 { &hf_ulp_triggerType
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TriggerType
},
5809 { &hf_ulp_triggerParams
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TriggerParams
},
5810 { &hf_ulp_position
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Position
},
5811 { &hf_ulp_reportingCap
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ReportingCap
},
5812 { &hf_ulp_causeCode
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_CauseCode
},
5813 { NULL
, 0, 0, NULL
}
5817 dissect_ulp_Ver2_SUPLTRIGGEREDSTART(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5818 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5819 ett_ulp_Ver2_SUPLTRIGGEREDSTART
, Ver2_SUPLTRIGGEREDSTART_sequence
);
5825 static const value_string ulp_RepMode_vals
[] = {
5827 { 2, "quasirealtime" },
5832 static guint32 RepMode_value_map
[3+0] = {1, 2, 3};
5835 dissect_ulp_RepMode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5836 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
5837 3, NULL
, TRUE
, 0, RepMode_value_map
);
5845 dissect_ulp_INTEGER_1_2048(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5846 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
5847 1U, 2048U, NULL
, FALSE
);
5853 static const value_string ulp_BatchRepConditions_vals
[] = {
5854 { 0, "num-interval" },
5855 { 1, "num-minutes" },
5856 { 2, "endofsession" },
5860 static const per_choice_t BatchRepConditions_choice
[] = {
5861 { 0, &hf_ulp_num_interval
, ASN1_EXTENSION_ROOT
, dissect_ulp_INTEGER_1_1024
},
5862 { 1, &hf_ulp_num_minutes
, ASN1_EXTENSION_ROOT
, dissect_ulp_INTEGER_1_2048
},
5863 { 2, &hf_ulp_endofsession
, ASN1_EXTENSION_ROOT
, dissect_ulp_NULL
},
5864 { 0, NULL
, 0, NULL
}
5868 dissect_ulp_BatchRepConditions(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5869 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
5870 ett_ulp_BatchRepConditions
, BatchRepConditions_choice
,
5877 static const per_sequence_t BatchRepType_sequence
[] = {
5878 { &hf_ulp_reportPosition
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
5879 { &hf_ulp_reportMeasurements
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
5880 { &hf_ulp_intermediateReports
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_BOOLEAN
},
5881 { &hf_ulp_discardOldest
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BOOLEAN
},
5882 { NULL
, 0, 0, NULL
}
5886 dissect_ulp_BatchRepType(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5887 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5888 ett_ulp_BatchRepType
, BatchRepType_sequence
);
5894 static const per_sequence_t ReportingMode_sequence
[] = {
5895 { &hf_ulp_repMode
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_RepMode
},
5896 { &hf_ulp_batchRepConditions
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BatchRepConditions
},
5897 { &hf_ulp_batchRepType
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_BatchRepType
},
5898 { NULL
, 0, 0, NULL
}
5902 dissect_ulp_ReportingMode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5903 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5904 ett_ulp_ReportingMode
, ReportingMode_sequence
);
5910 static const per_sequence_t Ver2_SUPLTRIGGEREDRESPONSE_sequence
[] = {
5911 { &hf_ulp_posMethod
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_PosMethod
},
5912 { &hf_ulp_triggerParams
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TriggerParams
},
5913 { &hf_ulp_sLPAddress
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SLPAddress
},
5914 { &hf_ulp_supportedNetworkInformation
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SupportedNetworkInformation
},
5915 { &hf_ulp_reportingMode
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ReportingMode
},
5916 { &hf_ulp_sPCSETKey
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SPCSETKey
},
5917 { &hf_ulp_sPCTID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SPCTID
},
5918 { &hf_ulp_sPCSETKeylifetime
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SPCSETKeylifetime
},
5919 { &hf_ulp_gnssPosTechnology
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GNSSPosTechnology
},
5920 { NULL
, 0, 0, NULL
}
5924 dissect_ulp_Ver2_SUPLTRIGGEREDRESPONSE(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5925 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5926 ett_ulp_Ver2_SUPLTRIGGEREDRESPONSE
, Ver2_SUPLTRIGGEREDRESPONSE_sequence
);
5932 static const per_sequence_t Ver2_SUPLTRIGGEREDSTOP_sequence
[] = {
5933 { &hf_ulp_statusCode
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_StatusCode
},
5934 { NULL
, 0, 0, NULL
}
5938 dissect_ulp_Ver2_SUPLTRIGGEREDSTOP(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5939 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5940 ett_ulp_Ver2_SUPLTRIGGEREDSTOP
, Ver2_SUPLTRIGGEREDSTOP_sequence
);
5946 static const per_sequence_t Ver2_SUPLNOTIFY_sequence
[] = {
5947 { &hf_ulp_notification
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_Notification
},
5948 { NULL
, 0, 0, NULL
}
5952 dissect_ulp_Ver2_SUPLNOTIFY(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5953 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5954 ett_ulp_Ver2_SUPLNOTIFY
, Ver2_SUPLNOTIFY_sequence
);
5960 static const value_string ulp_NotificationResponse_vals
[] = {
5962 { 1, "notAllowed" },
5968 dissect_ulp_NotificationResponse(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5969 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
5970 2, NULL
, TRUE
, 0, NULL
);
5976 static const per_sequence_t Ver2_SUPLNOTIFYRESPONSE_sequence
[] = {
5977 { &hf_ulp_notificationResponse
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_NotificationResponse
},
5978 { NULL
, 0, 0, NULL
}
5982 dissect_ulp_Ver2_SUPLNOTIFYRESPONSE(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5983 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
5984 ett_ulp_Ver2_SUPLNOTIFYRESPONSE
, Ver2_SUPLNOTIFYRESPONSE_sequence
);
5990 static const per_sequence_t Ver2_SUPLSETINIT_sequence
[] = {
5991 { &hf_ulp_targetSETID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SETId
},
5992 { &hf_ulp_qoP
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_QoP
},
5993 { &hf_ulp_applicationID
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ApplicationID
},
5994 { NULL
, 0, 0, NULL
}
5998 dissect_ulp_Ver2_SUPLSETINIT(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
5999 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
6000 ett_ulp_Ver2_SUPLSETINIT
, Ver2_SUPLSETINIT_sequence
);
6006 static const per_sequence_t SessionInformation_sequence
[] = {
6007 { &hf_ulp_sessionID
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_SessionID
},
6008 { NULL
, 0, 0, NULL
}
6012 dissect_ulp_SessionInformation(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6013 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
6014 ett_ulp_SessionInformation
, SessionInformation_sequence
);
6020 static const per_sequence_t SessionList_sequence_of
[1] = {
6021 { &hf_ulp_SessionList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_SessionInformation
},
6025 dissect_ulp_SessionList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6026 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
6027 ett_ulp_SessionList
, SessionList_sequence_of
,
6028 1, maxnumSessions
, FALSE
);
6034 static const per_sequence_t GANSSSignalsDescription_sequence
[] = {
6035 { &hf_ulp_ganssId
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_15
},
6036 { &hf_ulp_gANSSSignals
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSSignals
},
6037 { NULL
, 0, 0, NULL
}
6041 dissect_ulp_GANSSSignalsDescription(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6042 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
6043 ett_ulp_GANSSSignalsDescription
, GANSSSignalsDescription_sequence
);
6049 static const per_sequence_t GANSSsignalsInfo_sequence_of
[1] = {
6050 { &hf_ulp_GANSSsignalsInfo_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_GANSSSignalsDescription
},
6054 dissect_ulp_GANSSsignalsInfo(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6055 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
6056 ett_ulp_GANSSsignalsInfo
, GANSSsignalsInfo_sequence_of
,
6057 1, maxGANSS
, FALSE
);
6063 static const per_sequence_t PositionData_sequence
[] = {
6064 { &hf_ulp_position
, ASN1_EXTENSION_ROOT
, ASN1_NOT_OPTIONAL
, dissect_ulp_Position
},
6065 { &hf_ulp_posMethod
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_PosMethod
},
6066 { &hf_ulp_gnssPosTechnology
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GNSSPosTechnology
},
6067 { &hf_ulp_ganssSignalsInfo
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_GANSSsignalsInfo
},
6068 { NULL
, 0, 0, NULL
}
6072 dissect_ulp_PositionData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6073 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
6074 ett_ulp_PositionData
, PositionData_sequence
);
6080 static const value_string ulp_ResultCode_vals
[] = {
6081 { 1, "outofradiocoverage" },
6082 { 2, "noposition" },
6083 { 3, "nomeasurement" },
6084 { 4, "nopositionnomeasurement" },
6085 { 5, "outofmemory" },
6086 { 6, "outofmemoryintermediatereporting" },
6091 static guint32 ResultCode_value_map
[7+0] = {1, 2, 3, 4, 5, 6, 7};
6094 dissect_ulp_ResultCode(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6095 offset
= dissect_per_enumerated(tvb
, offset
, actx
, tree
, hf_index
,
6096 7, NULL
, TRUE
, 0, ResultCode_value_map
);
6104 dissect_ulp_INTEGER_0_31536000(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6105 offset
= dissect_per_constrained_integer(tvb
, offset
, actx
, tree
, hf_index
,
6106 0U, 31536000U, NULL
, FALSE
);
6112 static const value_string ulp_TimeStamp_vals
[] = {
6113 { 0, "absoluteTime" },
6114 { 1, "relativeTime" },
6118 static const per_choice_t TimeStamp_choice
[] = {
6119 { 0, &hf_ulp_absoluteTime
, ASN1_NO_EXTENSIONS
, dissect_ulp_UTCTime
},
6120 { 1, &hf_ulp_relativeTime
, ASN1_NO_EXTENSIONS
, dissect_ulp_INTEGER_0_31536000
},
6121 { 0, NULL
, 0, NULL
}
6125 dissect_ulp_TimeStamp(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6126 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
6127 ett_ulp_TimeStamp
, TimeStamp_choice
,
6134 static const per_sequence_t ReportData_sequence
[] = {
6135 { &hf_ulp_positionData
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_PositionData
},
6136 { &hf_ulp_multipleLocationIds
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_MultipleLocationIds
},
6137 { &hf_ulp_resultCode
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ResultCode
},
6138 { &hf_ulp_timestamp
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_TimeStamp
},
6139 { NULL
, 0, 0, NULL
}
6143 dissect_ulp_ReportData(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6144 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
6145 ett_ulp_ReportData
, ReportData_sequence
);
6151 static const per_sequence_t ReportDataList_sequence_of
[1] = {
6152 { &hf_ulp_ReportDataList_item
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_ReportData
},
6156 dissect_ulp_ReportDataList(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6157 offset
= dissect_per_constrained_sequence_of(tvb
, offset
, actx
, tree
, hf_index
,
6158 ett_ulp_ReportDataList
, ReportDataList_sequence_of
,
6165 static const per_sequence_t Ver2_SUPLREPORT_sequence
[] = {
6166 { &hf_ulp_sessionList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SessionList
},
6167 { &hf_ulp_sETCapabilities
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_SETCapabilities
},
6168 { &hf_ulp_reportDataList
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_ReportDataList
},
6169 { &hf_ulp_ver
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_Ver
},
6170 { &hf_ulp_moreComponents
, ASN1_EXTENSION_ROOT
, ASN1_OPTIONAL
, dissect_ulp_NULL
},
6171 { NULL
, 0, 0, NULL
}
6175 dissect_ulp_Ver2_SUPLREPORT(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6176 offset
= dissect_per_sequence(tvb
, offset
, actx
, tree
, hf_index
,
6177 ett_ulp_Ver2_SUPLREPORT
, Ver2_SUPLREPORT_sequence
);
6183 static const value_string ulp_UlpMessage_vals
[] = {
6184 { 0, "msSUPLINIT" },
6185 { 1, "msSUPLSTART" },
6186 { 2, "msSUPLRESPONSE" },
6187 { 3, "msSUPLPOSINIT" },
6190 { 6, "msSUPLAUTHREQ" },
6191 { 7, "msSUPLAUTHRESP" },
6192 { 8, "msSUPLTRIGGEREDSTART" },
6193 { 9, "msSUPLTRIGGEREDRESPONSE" },
6194 { 10, "msSUPLTRIGGEREDSTOP" },
6195 { 11, "msSUPLNOTIFY" },
6196 { 12, "msSUPLNOTIFYRESPONSE" },
6197 { 13, "msSUPLSETINIT" },
6198 { 14, "msSUPLREPORT" },
6202 static const per_choice_t UlpMessage_choice
[] = {
6203 { 0, &hf_ulp_msSUPLINIT
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLINIT
},
6204 { 1, &hf_ulp_msSUPLSTART
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLSTART
},
6205 { 2, &hf_ulp_msSUPLRESPONSE
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLRESPONSE
},
6206 { 3, &hf_ulp_msSUPLPOSINIT
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLPOSINIT
},
6207 { 4, &hf_ulp_msSUPLPOS
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLPOS
},
6208 { 5, &hf_ulp_msSUPLEND
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLEND
},
6209 { 6, &hf_ulp_msSUPLAUTHREQ
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLAUTHREQ
},
6210 { 7, &hf_ulp_msSUPLAUTHRESP
, ASN1_EXTENSION_ROOT
, dissect_ulp_SUPLAUTHRESP
},
6211 { 8, &hf_ulp_msSUPLTRIGGEREDSTART
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_SUPLTRIGGEREDSTART
},
6212 { 9, &hf_ulp_msSUPLTRIGGEREDRESPONSE
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_SUPLTRIGGEREDRESPONSE
},
6213 { 10, &hf_ulp_msSUPLTRIGGEREDSTOP
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_SUPLTRIGGEREDSTOP
},
6214 { 11, &hf_ulp_msSUPLNOTIFY
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_SUPLNOTIFY
},
6215 { 12, &hf_ulp_msSUPLNOTIFYRESPONSE
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_SUPLNOTIFYRESPONSE
},
6216 { 13, &hf_ulp_msSUPLSETINIT
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_SUPLSETINIT
},
6217 { 14, &hf_ulp_msSUPLREPORT
, ASN1_NOT_EXTENSION_ROOT
, dissect_ulp_Ver2_SUPLREPORT
},
6218 { 0, NULL
, 0, NULL
}
6222 dissect_ulp_UlpMessage(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6223 #line 44 "../../asn1/ulp/ulp.cnf"
6227 offset
= dissect_per_choice(tvb
, offset
, actx
, tree
, hf_index
,
6228 ett_ulp_UlpMessage
, UlpMessage_choice
,
6232 col_append_fstr(actx
->pinfo
->cinfo
, COL_INFO
, "%s ", val_to_str(UlpMessage
,ulp_UlpMessage_vals
,"Unknown"));
6240 static const per_sequence_t ULP_PDU_sequence
[] = {
6241 { &hf_ulp_length
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_INTEGER_0_65535
},
6242 { &hf_ulp_version
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_Version
},
6243 { &hf_ulp_sessionID
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_SessionID
},
6244 { &hf_ulp_message
, ASN1_NO_EXTENSIONS
, ASN1_NOT_OPTIONAL
, dissect_ulp_UlpMessage
},
6245 { NULL
, 0, 0, NULL
}
6249 dissect_ulp_ULP_PDU(tvbuff_t
*tvb _U_
, int offset _U_
, asn1_ctx_t
*actx _U_
, proto_tree
*tree _U_
, int hf_index _U_
) {
6250 #line 29 "../../asn1/ulp/ulp.cnf"
6252 proto_tree
*ulp_tree
;
6254 it
= proto_tree_add_item(tree
, proto_ulp
, tvb
, 0, -1, ENC_NA
);
6255 ulp_tree
= proto_item_add_subtree(it
, ett_ulp
);
6257 col_set_str(actx
->pinfo
->cinfo
, COL_PROTOCOL
, PSNAME
);
6258 col_clear(actx
->pinfo
->cinfo
, COL_INFO
);
6260 #line 40 "../../asn1/ulp/ulp.cnf"
6261 offset
= dissect_per_sequence(tvb
, offset
, actx
, ulp_tree
, hf_index
,
6262 ett_ulp_ULP_PDU
, ULP_PDU_sequence
);
6271 static int dissect_ULP_PDU_PDU(tvbuff_t
*tvb _U_
, packet_info
*pinfo _U_
, proto_tree
*tree _U_
, void *data _U_
) {
6273 asn1_ctx_t asn1_ctx
;
6274 asn1_ctx_init(&asn1_ctx
, ASN1_ENC_PER
, FALSE
, pinfo
);
6275 offset
= dissect_ulp_ULP_PDU(tvb
, offset
, &asn1_ctx
, tree
, hf_ulp_ULP_PDU_PDU
);
6276 offset
+= 7; offset
>>= 3;
6281 /*--- End of included file: packet-ulp-fn.c ---*/
6282 #line 74 "../../asn1/ulp/packet-ulp-template.c"
6286 get_ulp_pdu_len(packet_info
*pinfo _U_
, tvbuff_t
*tvb
, int offset
)
6288 /* PDU length = Message length */
6289 return tvb_get_ntohs(tvb
,offset
);
6293 dissect_ulp_tcp(tvbuff_t
*tvb
, packet_info
*pinfo
, proto_tree
*tree
, void* data
)
6295 tcp_dissect_pdus(tvb
, pinfo
, tree
, ulp_desegment
, ULP_HEADER_SIZE
,
6296 get_ulp_pdu_len
, dissect_ULP_PDU_PDU
, data
);
6297 return tvb_length(tvb
);
6300 void proto_reg_handoff_ulp(void);
6302 /*--- proto_register_ulp -------------------------------------------*/
6303 void proto_register_ulp(void) {
6305 /* List of fields */
6306 static hf_register_info hf
[] = {
6309 /*--- Included file: packet-ulp-hfarr.c ---*/
6310 #line 1 "../../asn1/ulp/packet-ulp-hfarr.c"
6311 { &hf_ulp_ULP_PDU_PDU
,
6312 { "ULP-PDU", "ulp.ULP_PDU_element",
6313 FT_NONE
, BASE_NONE
, NULL
, 0,
6316 { "length", "ulp.length",
6317 FT_UINT32
, BASE_DEC
, NULL
, 0,
6318 "INTEGER_0_65535", HFILL
}},
6320 { "version", "ulp.version_element",
6321 FT_NONE
, BASE_NONE
, NULL
, 0,
6323 { &hf_ulp_sessionID
,
6324 { "sessionID", "ulp.sessionID_element",
6325 FT_NONE
, BASE_NONE
, NULL
, 0,
6328 { "message", "ulp.message",
6329 FT_UINT32
, BASE_DEC
, VALS(ulp_UlpMessage_vals
), 0,
6330 "UlpMessage", HFILL
}},
6331 { &hf_ulp_msSUPLINIT
,
6332 { "msSUPLINIT", "ulp.msSUPLINIT_element",
6333 FT_NONE
, BASE_NONE
, NULL
, 0,
6334 "SUPLINIT", HFILL
}},
6335 { &hf_ulp_msSUPLSTART
,
6336 { "msSUPLSTART", "ulp.msSUPLSTART_element",
6337 FT_NONE
, BASE_NONE
, NULL
, 0,
6338 "SUPLSTART", HFILL
}},
6339 { &hf_ulp_msSUPLRESPONSE
,
6340 { "msSUPLRESPONSE", "ulp.msSUPLRESPONSE_element",
6341 FT_NONE
, BASE_NONE
, NULL
, 0,
6342 "SUPLRESPONSE", HFILL
}},
6343 { &hf_ulp_msSUPLPOSINIT
,
6344 { "msSUPLPOSINIT", "ulp.msSUPLPOSINIT_element",
6345 FT_NONE
, BASE_NONE
, NULL
, 0,
6346 "SUPLPOSINIT", HFILL
}},
6347 { &hf_ulp_msSUPLPOS
,
6348 { "msSUPLPOS", "ulp.msSUPLPOS_element",
6349 FT_NONE
, BASE_NONE
, NULL
, 0,
6350 "SUPLPOS", HFILL
}},
6351 { &hf_ulp_msSUPLEND
,
6352 { "msSUPLEND", "ulp.msSUPLEND_element",
6353 FT_NONE
, BASE_NONE
, NULL
, 0,
6354 "SUPLEND", HFILL
}},
6355 { &hf_ulp_msSUPLAUTHREQ
,
6356 { "msSUPLAUTHREQ", "ulp.msSUPLAUTHREQ_element",
6357 FT_NONE
, BASE_NONE
, NULL
, 0,
6358 "SUPLAUTHREQ", HFILL
}},
6359 { &hf_ulp_msSUPLAUTHRESP
,
6360 { "msSUPLAUTHRESP", "ulp.msSUPLAUTHRESP_element",
6361 FT_NONE
, BASE_NONE
, NULL
, 0,
6362 "SUPLAUTHRESP", HFILL
}},
6363 { &hf_ulp_msSUPLTRIGGEREDSTART
,
6364 { "msSUPLTRIGGEREDSTART", "ulp.msSUPLTRIGGEREDSTART_element",
6365 FT_NONE
, BASE_NONE
, NULL
, 0,
6366 "Ver2_SUPLTRIGGEREDSTART", HFILL
}},
6367 { &hf_ulp_msSUPLTRIGGEREDRESPONSE
,
6368 { "msSUPLTRIGGEREDRESPONSE", "ulp.msSUPLTRIGGEREDRESPONSE_element",
6369 FT_NONE
, BASE_NONE
, NULL
, 0,
6370 "Ver2_SUPLTRIGGEREDRESPONSE", HFILL
}},
6371 { &hf_ulp_msSUPLTRIGGEREDSTOP
,
6372 { "msSUPLTRIGGEREDSTOP", "ulp.msSUPLTRIGGEREDSTOP_element",
6373 FT_NONE
, BASE_NONE
, NULL
, 0,
6374 "Ver2_SUPLTRIGGEREDSTOP", HFILL
}},
6375 { &hf_ulp_msSUPLNOTIFY
,
6376 { "msSUPLNOTIFY", "ulp.msSUPLNOTIFY_element",
6377 FT_NONE
, BASE_NONE
, NULL
, 0,
6378 "Ver2_SUPLNOTIFY", HFILL
}},
6379 { &hf_ulp_msSUPLNOTIFYRESPONSE
,
6380 { "msSUPLNOTIFYRESPONSE", "ulp.msSUPLNOTIFYRESPONSE_element",
6381 FT_NONE
, BASE_NONE
, NULL
, 0,
6382 "Ver2_SUPLNOTIFYRESPONSE", HFILL
}},
6383 { &hf_ulp_msSUPLSETINIT
,
6384 { "msSUPLSETINIT", "ulp.msSUPLSETINIT_element",
6385 FT_NONE
, BASE_NONE
, NULL
, 0,
6386 "Ver2_SUPLSETINIT", HFILL
}},
6387 { &hf_ulp_msSUPLREPORT
,
6388 { "msSUPLREPORT", "ulp.msSUPLREPORT_element",
6389 FT_NONE
, BASE_NONE
, NULL
, 0,
6390 "Ver2_SUPLREPORT", HFILL
}},
6391 { &hf_ulp_posMethod
,
6392 { "posMethod", "ulp.posMethod",
6393 FT_UINT32
, BASE_DEC
, VALS(ulp_PosMethod_vals
), 0,
6395 { &hf_ulp_notification
,
6396 { "notification", "ulp.notification_element",
6397 FT_NONE
, BASE_NONE
, NULL
, 0,
6399 { &hf_ulp_sLPAddress
,
6400 { "sLPAddress", "ulp.sLPAddress",
6401 FT_UINT32
, BASE_DEC
, VALS(ulp_SLPAddress_vals
), 0,
6404 { "qoP", "ulp.qoP_element",
6405 FT_NONE
, BASE_NONE
, NULL
, 0,
6408 { "sLPMode", "ulp.sLPMode",
6409 FT_UINT32
, BASE_DEC
, VALS(ulp_SLPMode_vals
), 0,
6413 FT_BYTES
, BASE_NONE
, NULL
, 0,
6415 { &hf_ulp_keyIdentity
,
6416 { "keyIdentity", "ulp.keyIdentity",
6417 FT_BYTES
, BASE_NONE
, NULL
, 0,
6419 { &hf_ulp_ver2_SUPL_INIT_extension
,
6420 { "ver2-SUPL-INIT-extension", "ulp.ver2_SUPL_INIT_extension_element",
6421 FT_NONE
, BASE_NONE
, NULL
, 0,
6423 { &hf_ulp_notificationType
,
6424 { "notificationType", "ulp.notificationType",
6425 FT_UINT32
, BASE_DEC
, VALS(ulp_NotificationType_vals
), 0,
6427 { &hf_ulp_encodingType
,
6428 { "encodingType", "ulp.encodingType",
6429 FT_UINT32
, BASE_DEC
, VALS(ulp_EncodingType_vals
), 0,
6431 { &hf_ulp_requestorId
,
6432 { "requestorId", "ulp.requestorId",
6433 FT_BYTES
, BASE_NONE
, NULL
, 0,
6434 "OCTET_STRING_SIZE_1_maxReqLength", HFILL
}},
6435 { &hf_ulp_requestorIdType
,
6436 { "requestorIdType", "ulp.requestorIdType",
6437 FT_UINT32
, BASE_DEC
, VALS(ulp_FormatIndicator_vals
), 0,
6438 "FormatIndicator", HFILL
}},
6439 { &hf_ulp_clientName
,
6440 { "clientName", "ulp.clientName",
6441 FT_BYTES
, BASE_NONE
, NULL
, 0,
6442 "OCTET_STRING_SIZE_1_maxClientLength", HFILL
}},
6443 { &hf_ulp_clientNameType
,
6444 { "clientNameType", "ulp.clientNameType",
6445 FT_UINT32
, BASE_DEC
, VALS(ulp_FormatIndicator_vals
), 0,
6446 "FormatIndicator", HFILL
}},
6447 { &hf_ulp_ver2_Notification_extension
,
6448 { "ver2-Notification-extension", "ulp.ver2_Notification_extension_element",
6449 FT_NONE
, BASE_NONE
, NULL
, 0,
6451 { &hf_ulp_sETCapabilities
,
6452 { "sETCapabilities", "ulp.sETCapabilities_element",
6453 FT_NONE
, BASE_NONE
, NULL
, 0,
6455 { &hf_ulp_locationId
,
6456 { "locationId", "ulp.locationId_element",
6457 FT_NONE
, BASE_NONE
, NULL
, 0,
6459 { &hf_ulp_ver2_SUPL_START_extension
,
6460 { "ver2-SUPL-START-extension", "ulp.ver2_SUPL_START_extension_element",
6461 FT_NONE
, BASE_NONE
, NULL
, 0,
6463 { &hf_ulp_posTechnology
,
6464 { "posTechnology", "ulp.posTechnology_element",
6465 FT_NONE
, BASE_NONE
, NULL
, 0,
6467 { &hf_ulp_prefMethod
,
6468 { "prefMethod", "ulp.prefMethod",
6469 FT_UINT32
, BASE_DEC
, VALS(ulp_PrefMethod_vals
), 0,
6471 { &hf_ulp_posProtocol
,
6472 { "posProtocol", "ulp.posProtocol_element",
6473 FT_NONE
, BASE_NONE
, NULL
, 0,
6475 { &hf_ulp_ver2_SETCapabilities_extension
,
6476 { "ver2-SETCapabilities-extension", "ulp.ver2_SETCapabilities_extension_element",
6477 FT_NONE
, BASE_NONE
, NULL
, 0,
6479 { &hf_ulp_agpsSETassisted
,
6480 { "agpsSETassisted", "ulp.agpsSETassisted",
6481 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6482 "BOOLEAN", HFILL
}},
6483 { &hf_ulp_agpsSETBased
,
6484 { "agpsSETBased", "ulp.agpsSETBased",
6485 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6486 "BOOLEAN", HFILL
}},
6487 { &hf_ulp_autonomousGPS
,
6488 { "autonomousGPS", "ulp.autonomousGPS",
6489 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6490 "BOOLEAN", HFILL
}},
6492 { "aFLT", "ulp.aFLT",
6493 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6494 "BOOLEAN", HFILL
}},
6496 { "eCID", "ulp.eCID",
6497 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6498 "BOOLEAN", HFILL
}},
6500 { "eOTD", "ulp.eOTD",
6501 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6502 "BOOLEAN", HFILL
}},
6504 { "oTDOA", "ulp.oTDOA",
6505 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6506 "BOOLEAN", HFILL
}},
6507 { &hf_ulp_ver2_PosTechnology_extension
,
6508 { "ver2-PosTechnology-extension", "ulp.ver2_PosTechnology_extension_element",
6509 FT_NONE
, BASE_NONE
, NULL
, 0,
6512 { "tia801", "ulp.tia801",
6513 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6514 "BOOLEAN", HFILL
}},
6516 { "rrlp", "ulp.rrlp",
6517 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6518 "BOOLEAN", HFILL
}},
6521 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6522 "BOOLEAN", HFILL
}},
6523 { &hf_ulp_ver2_PosProtocol_extension
,
6524 { "ver2-PosProtocol-extension", "ulp.ver2_PosProtocol_extension_element",
6525 FT_NONE
, BASE_NONE
, NULL
, 0,
6527 { &hf_ulp_sETAuthKey
,
6528 { "sETAuthKey", "ulp.sETAuthKey",
6529 FT_UINT32
, BASE_DEC
, VALS(ulp_SETAuthKey_vals
), 0,
6531 { &hf_ulp_keyIdentity4
,
6532 { "keyIdentity4", "ulp.keyIdentity4",
6533 FT_BYTES
, BASE_NONE
, NULL
, 0,
6535 { &hf_ulp_ver2_SUPL_RESPONSE_extension
,
6536 { "ver2-SUPL-RESPONSE-extension", "ulp.ver2_SUPL_RESPONSE_extension_element",
6537 FT_NONE
, BASE_NONE
, NULL
, 0,
6540 { "shortKey", "ulp.shortKey",
6541 FT_BYTES
, BASE_NONE
, NULL
, 0,
6542 "BIT_STRING_SIZE_128", HFILL
}},
6544 { "longKey", "ulp.longKey",
6545 FT_BYTES
, BASE_NONE
, NULL
, 0,
6546 "BIT_STRING_SIZE_256", HFILL
}},
6547 { &hf_ulp_requestedAssistData
,
6548 { "requestedAssistData", "ulp.requestedAssistData_element",
6549 FT_NONE
, BASE_NONE
, NULL
, 0,
6552 { "position", "ulp.position_element",
6553 FT_NONE
, BASE_NONE
, NULL
, 0,
6556 { "sUPLPOS", "ulp.sUPLPOS_element",
6557 FT_NONE
, BASE_NONE
, NULL
, 0,
6561 FT_BYTES
, BASE_NONE
, NULL
, 0,
6563 { &hf_ulp_ver2_SUPL_POS_INIT_extension
,
6564 { "ver2-SUPL-POS-INIT-extension", "ulp.ver2_SUPL_POS_INIT_extension_element",
6565 FT_NONE
, BASE_NONE
, NULL
, 0,
6567 { &hf_ulp_almanacRequested
,
6568 { "almanacRequested", "ulp.almanacRequested",
6569 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6570 "BOOLEAN", HFILL
}},
6571 { &hf_ulp_utcModelRequested
,
6572 { "utcModelRequested", "ulp.utcModelRequested",
6573 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6574 "BOOLEAN", HFILL
}},
6575 { &hf_ulp_ionosphericModelRequested
,
6576 { "ionosphericModelRequested", "ulp.ionosphericModelRequested",
6577 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6578 "BOOLEAN", HFILL
}},
6579 { &hf_ulp_dgpsCorrectionsRequested
,
6580 { "dgpsCorrectionsRequested", "ulp.dgpsCorrectionsRequested",
6581 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6582 "BOOLEAN", HFILL
}},
6583 { &hf_ulp_referenceLocationRequested
,
6584 { "referenceLocationRequested", "ulp.referenceLocationRequested",
6585 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6586 "BOOLEAN", HFILL
}},
6587 { &hf_ulp_referenceTimeRequested
,
6588 { "referenceTimeRequested", "ulp.referenceTimeRequested",
6589 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6590 "BOOLEAN", HFILL
}},
6591 { &hf_ulp_acquisitionAssistanceRequested
,
6592 { "acquisitionAssistanceRequested", "ulp.acquisitionAssistanceRequested",
6593 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6594 "BOOLEAN", HFILL
}},
6595 { &hf_ulp_realTimeIntegrityRequested
,
6596 { "realTimeIntegrityRequested", "ulp.realTimeIntegrityRequested",
6597 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6598 "BOOLEAN", HFILL
}},
6599 { &hf_ulp_navigationModelRequested
,
6600 { "navigationModelRequested", "ulp.navigationModelRequested",
6601 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6602 "BOOLEAN", HFILL
}},
6603 { &hf_ulp_navigationModelData
,
6604 { "navigationModelData", "ulp.navigationModelData_element",
6605 FT_NONE
, BASE_NONE
, NULL
, 0,
6606 "NavigationModel", HFILL
}},
6607 { &hf_ulp_ver2_RequestedAssistData_extension
,
6608 { "ver2-RequestedAssistData-extension", "ulp.ver2_RequestedAssistData_extension_element",
6609 FT_NONE
, BASE_NONE
, NULL
, 0,
6612 { "gpsWeek", "ulp.gpsWeek",
6613 FT_UINT32
, BASE_DEC
, NULL
, 0,
6614 "INTEGER_0_1023", HFILL
}},
6616 { "gpsToe", "ulp.gpsToe",
6617 FT_UINT32
, BASE_DEC
, NULL
, 0,
6618 "INTEGER_0_167", HFILL
}},
6620 { "nSAT", "ulp.nSAT",
6621 FT_UINT32
, BASE_DEC
, NULL
, 0,
6622 "INTEGER_0_31", HFILL
}},
6624 { "toeLimit", "ulp.toeLimit",
6625 FT_UINT32
, BASE_DEC
, NULL
, 0,
6626 "INTEGER_0_10", HFILL
}},
6628 { "satInfo", "ulp.satInfo",
6629 FT_UINT32
, BASE_DEC
, NULL
, 0,
6630 "SatelliteInfo", HFILL
}},
6631 { &hf_ulp_SatelliteInfo_item
,
6632 { "SatelliteInfoElement", "ulp.SatelliteInfoElement_element",
6633 FT_NONE
, BASE_NONE
, NULL
, 0,
6636 { "satId", "ulp.satId",
6637 FT_UINT32
, BASE_DEC
, NULL
, 0,
6638 "INTEGER_0_63", HFILL
}},
6640 { "iODE", "ulp.iODE",
6641 FT_UINT32
, BASE_DEC
, NULL
, 0,
6642 "INTEGER_0_255", HFILL
}},
6643 { &hf_ulp_posPayLoad
,
6644 { "posPayLoad", "ulp.posPayLoad",
6645 FT_UINT32
, BASE_DEC
, VALS(ulp_PosPayLoad_vals
), 0,
6648 { "velocity", "ulp.velocity",
6649 FT_UINT32
, BASE_DEC
, VALS(ulp_Velocity_vals
), 0,
6651 { &hf_ulp_ver2_SUPL_POS_extension
,
6652 { "ver2-SUPL-POS-extension", "ulp.ver2_SUPL_POS_extension_element",
6653 FT_NONE
, BASE_NONE
, NULL
, 0,
6655 { &hf_ulp_tia801payload
,
6656 { "tia801payload", "ulp.tia801payload",
6657 FT_BYTES
, BASE_NONE
, NULL
, 0,
6658 "OCTET_STRING_SIZE_1_8192", HFILL
}},
6659 { &hf_ulp_rrcPayload
,
6660 { "rrcPayload", "ulp.rrcPayload",
6661 FT_BYTES
, BASE_NONE
, NULL
, 0,
6662 "OCTET_STRING_SIZE_1_8192", HFILL
}},
6663 { &hf_ulp_rrlpPayload
,
6664 { "rrlpPayload", "ulp.rrlpPayload",
6665 FT_BYTES
, BASE_NONE
, NULL
, 0,
6667 { &hf_ulp_ver2_PosPayLoad_extension
,
6668 { "ver2-PosPayLoad-extension", "ulp.ver2_PosPayLoad_extension_element",
6669 FT_NONE
, BASE_NONE
, NULL
, 0,
6671 { &hf_ulp_statusCode
,
6672 { "statusCode", "ulp.statusCode",
6673 FT_UINT32
, BASE_DEC
, VALS(ulp_StatusCode_vals
), 0,
6675 { &hf_ulp_ver2_SUPL_END_extension
,
6676 { "ver2-SUPL-END-extension", "ulp.ver2_SUPL_END_extension_element",
6677 FT_NONE
, BASE_NONE
, NULL
, 0,
6679 { &hf_ulp_sPCSETKey
,
6680 { "sPCSETKey", "ulp.sPCSETKey",
6681 FT_BYTES
, BASE_NONE
, NULL
, 0,
6684 { "sPCTID", "ulp.sPCTID_element",
6685 FT_NONE
, BASE_NONE
, NULL
, 0,
6687 { &hf_ulp_sPCSETKeylifetime
,
6688 { "sPCSETKeylifetime", "ulp.sPCSETKeylifetime",
6689 FT_UINT32
, BASE_DEC
, NULL
, 0,
6691 { &hf_ulp_notificationResponse
,
6692 { "notificationResponse", "ulp.notificationResponse",
6693 FT_UINT32
, BASE_DEC
, VALS(ulp_NotificationResponse_vals
), 0,
6695 { &hf_ulp_targetSETID
,
6696 { "targetSETID", "ulp.targetSETID",
6697 FT_UINT32
, BASE_DEC
, VALS(ulp_SETId_vals
), 0,
6699 { &hf_ulp_applicationID
,
6700 { "applicationID", "ulp.applicationID_element",
6701 FT_NONE
, BASE_NONE
, NULL
, 0,
6703 { &hf_ulp_multipleLocationIds
,
6704 { "multipleLocationIds", "ulp.multipleLocationIds",
6705 FT_UINT32
, BASE_DEC
, NULL
, 0,
6707 { &hf_ulp_thirdParty
,
6708 { "thirdParty", "ulp.thirdParty",
6709 FT_UINT32
, BASE_DEC
, NULL
, 0,
6711 { &hf_ulp_triggerType
,
6712 { "triggerType", "ulp.triggerType",
6713 FT_UINT32
, BASE_DEC
, VALS(ulp_TriggerType_vals
), 0,
6715 { &hf_ulp_triggerParams
,
6716 { "triggerParams", "ulp.triggerParams",
6717 FT_UINT32
, BASE_DEC
, VALS(ulp_TriggerParams_vals
), 0,
6719 { &hf_ulp_reportingCap
,
6720 { "reportingCap", "ulp.reportingCap_element",
6721 FT_NONE
, BASE_NONE
, NULL
, 0,
6723 { &hf_ulp_causeCode
,
6724 { "causeCode", "ulp.causeCode",
6725 FT_UINT32
, BASE_DEC
, VALS(ulp_CauseCode_vals
), 0,
6727 { &hf_ulp_periodicParams
,
6728 { "periodicParams", "ulp.periodicParams_element",
6729 FT_NONE
, BASE_NONE
, NULL
, 0,
6731 { &hf_ulp_areaEventParams
,
6732 { "areaEventParams", "ulp.areaEventParams_element",
6733 FT_NONE
, BASE_NONE
, NULL
, 0,
6735 { &hf_ulp_numberOfFixes
,
6736 { "numberOfFixes", "ulp.numberOfFixes",
6737 FT_UINT32
, BASE_DEC
, NULL
, 0,
6738 "INTEGER_1_8639999", HFILL
}},
6739 { &hf_ulp_intervalBetweenFixes
,
6740 { "intervalBetweenFixes", "ulp.intervalBetweenFixes",
6741 FT_UINT32
, BASE_DEC
, NULL
, 0,
6742 "INTEGER_1_8639999", HFILL
}},
6743 { &hf_ulp_startTime
,
6744 { "startTime", "ulp.startTime",
6745 FT_UINT32
, BASE_DEC
, NULL
, 0,
6746 "INTEGER_0_2678400", HFILL
}},
6747 { &hf_ulp_areaEventType
,
6748 { "areaEventType", "ulp.areaEventType",
6749 FT_UINT32
, BASE_DEC
, VALS(ulp_AreaEventType_vals
), 0,
6751 { &hf_ulp_locationEstimate
,
6752 { "locationEstimate", "ulp.locationEstimate",
6753 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6754 "BOOLEAN", HFILL
}},
6755 { &hf_ulp_repeatedReportingParams
,
6756 { "repeatedReportingParams", "ulp.repeatedReportingParams_element",
6757 FT_NONE
, BASE_NONE
, NULL
, 0,
6760 { "stopTime", "ulp.stopTime",
6761 FT_UINT32
, BASE_DEC
, NULL
, 0,
6762 "INTEGER_0_11318399", HFILL
}},
6763 { &hf_ulp_geographicTargetAreaList
,
6764 { "geographicTargetAreaList", "ulp.geographicTargetAreaList",
6765 FT_UINT32
, BASE_DEC
, NULL
, 0,
6767 { &hf_ulp_areaIdLists
,
6768 { "areaIdLists", "ulp.areaIdLists",
6769 FT_UINT32
, BASE_DEC
, NULL
, 0,
6770 "SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList", HFILL
}},
6771 { &hf_ulp_areaIdLists_item
,
6772 { "AreaIdList", "ulp.AreaIdList_element",
6773 FT_NONE
, BASE_NONE
, NULL
, 0,
6775 { &hf_ulp_minimumIntervalTime
,
6776 { "minimumIntervalTime", "ulp.minimumIntervalTime",
6777 FT_UINT32
, BASE_DEC
, NULL
, 0,
6778 "INTEGER_1_604800", HFILL
}},
6779 { &hf_ulp_maximumNumberOfReports
,
6780 { "maximumNumberOfReports", "ulp.maximumNumberOfReports",
6781 FT_UINT32
, BASE_DEC
, NULL
, 0,
6782 "INTEGER_1_1024", HFILL
}},
6783 { &hf_ulp_GeographicTargetAreaList_item
,
6784 { "GeographicTargetArea", "ulp.GeographicTargetArea",
6785 FT_UINT32
, BASE_DEC
, VALS(ulp_GeographicTargetArea_vals
), 0,
6787 { &hf_ulp_circularArea
,
6788 { "circularArea", "ulp.circularArea_element",
6789 FT_NONE
, BASE_NONE
, NULL
, 0,
6791 { &hf_ulp_ellipticalArea
,
6792 { "ellipticalArea", "ulp.ellipticalArea_element",
6793 FT_NONE
, BASE_NONE
, NULL
, 0,
6795 { &hf_ulp_polygonArea
,
6796 { "polygonArea", "ulp.polygonArea_element",
6797 FT_NONE
, BASE_NONE
, NULL
, 0,
6799 { &hf_ulp_areaIdSet
,
6800 { "areaIdSet", "ulp.areaIdSet",
6801 FT_UINT32
, BASE_DEC
, NULL
, 0,
6803 { &hf_ulp_areaIdSetType
,
6804 { "areaIdSetType", "ulp.areaIdSetType",
6805 FT_UINT32
, BASE_DEC
, VALS(ulp_AreaIdSetType_vals
), 0,
6807 { &hf_ulp_geoAreaMappingList
,
6808 { "geoAreaMappingList", "ulp.geoAreaMappingList",
6809 FT_UINT32
, BASE_DEC
, NULL
, 0,
6811 { &hf_ulp_AreaIdSet_item
,
6812 { "AreaId", "ulp.AreaId",
6813 FT_UINT32
, BASE_DEC
, VALS(ulp_AreaId_vals
), 0,
6815 { &hf_ulp_gSMAreaId
,
6816 { "gSMAreaId", "ulp.gSMAreaId_element",
6817 FT_NONE
, BASE_NONE
, NULL
, 0,
6819 { &hf_ulp_wCDMAAreaId
,
6820 { "wCDMAAreaId", "ulp.wCDMAAreaId_element",
6821 FT_NONE
, BASE_NONE
, NULL
, 0,
6823 { &hf_ulp_cDMAAreaId
,
6824 { "cDMAAreaId", "ulp.cDMAAreaId_element",
6825 FT_NONE
, BASE_NONE
, NULL
, 0,
6827 { &hf_ulp_hRPDAreaId
,
6828 { "hRPDAreaId", "ulp.hRPDAreaId_element",
6829 FT_NONE
, BASE_NONE
, NULL
, 0,
6831 { &hf_ulp_uMBAreaId
,
6832 { "uMBAreaId", "ulp.uMBAreaId_element",
6833 FT_NONE
, BASE_NONE
, NULL
, 0,
6835 { &hf_ulp_lTEAreaId
,
6836 { "lTEAreaId", "ulp.lTEAreaId_element",
6837 FT_NONE
, BASE_NONE
, NULL
, 0,
6839 { &hf_ulp_wLANAreaId
,
6840 { "wLANAreaId", "ulp.wLANAreaId_element",
6841 FT_NONE
, BASE_NONE
, NULL
, 0,
6843 { &hf_ulp_wiMAXAreaId
,
6844 { "wiMAXAreaId", "ulp.wiMAXAreaId_element",
6845 FT_NONE
, BASE_NONE
, NULL
, 0,
6848 { "refMCC", "ulp.refMCC",
6849 FT_UINT32
, BASE_DEC
, NULL
, 0,
6850 "INTEGER_0_999", HFILL
}},
6852 { "refMNC", "ulp.refMNC",
6853 FT_UINT32
, BASE_DEC
, NULL
, 0,
6854 "INTEGER_0_999", HFILL
}},
6856 { "refLAC", "ulp.refLAC",
6857 FT_UINT32
, BASE_DEC
, NULL
, 0,
6858 "INTEGER_0_65535", HFILL
}},
6860 { "refCI", "ulp.refCI",
6861 FT_UINT32
, BASE_DEC
, NULL
, 0,
6862 "INTEGER_0_65535", HFILL
}},
6864 { "refUC", "ulp.refUC",
6865 FT_UINT32
, BASE_DEC
, NULL
, 0,
6866 "INTEGER_0_268435455", HFILL
}},
6868 { "refSID", "ulp.refSID",
6869 FT_UINT32
, BASE_DEC
, NULL
, 0,
6870 "INTEGER_0_65535", HFILL
}},
6872 { "refNID", "ulp.refNID",
6873 FT_UINT32
, BASE_DEC
, NULL
, 0,
6874 "INTEGER_0_32767", HFILL
}},
6875 { &hf_ulp_refBASEID
,
6876 { "refBASEID", "ulp.refBASEID",
6877 FT_UINT32
, BASE_DEC
, NULL
, 0,
6878 "INTEGER_0_65535", HFILL
}},
6879 { &hf_ulp_refSECTORID
,
6880 { "refSECTORID", "ulp.refSECTORID",
6881 FT_BYTES
, BASE_NONE
, NULL
, 0,
6882 "BIT_STRING_SIZE_128", HFILL
}},
6884 { "refCI", "ulp.refCI",
6885 FT_BYTES
, BASE_NONE
, NULL
, 0,
6886 "BIT_STRING_SIZE_29", HFILL
}},
6887 { &hf_ulp_apMACAddress
,
6888 { "apMACAddress", "ulp.apMACAddress",
6889 FT_BYTES
, BASE_NONE
, NULL
, 0,
6890 "BIT_STRING_SIZE_48", HFILL
}},
6892 { "bsID-MSB", "ulp.bsID_MSB",
6893 FT_BYTES
, BASE_NONE
, NULL
, 0,
6894 "BIT_STRING_SIZE_24", HFILL
}},
6896 { "bsID-LSB", "ulp.bsID_LSB",
6897 FT_BYTES
, BASE_NONE
, NULL
, 0,
6898 "BIT_STRING_SIZE_24", HFILL
}},
6899 { &hf_ulp_GeoAreaMappingList_item
,
6900 { "GeoAreaIndex", "ulp.GeoAreaIndex",
6901 FT_UINT32
, BASE_DEC
, NULL
, 0,
6903 { &hf_ulp_supportedNetworkInformation
,
6904 { "supportedNetworkInformation", "ulp.supportedNetworkInformation_element",
6905 FT_NONE
, BASE_NONE
, NULL
, 0,
6907 { &hf_ulp_reportingMode
,
6908 { "reportingMode", "ulp.reportingMode_element",
6909 FT_NONE
, BASE_NONE
, NULL
, 0,
6911 { &hf_ulp_gnssPosTechnology
,
6912 { "gnssPosTechnology", "ulp.gnssPosTechnology_element",
6913 FT_NONE
, BASE_NONE
, NULL
, 0,
6916 { "repMode", "ulp.repMode",
6917 FT_UINT32
, BASE_DEC
, VALS(ulp_RepMode_vals
), 0,
6919 { &hf_ulp_batchRepConditions
,
6920 { "batchRepConditions", "ulp.batchRepConditions",
6921 FT_UINT32
, BASE_DEC
, VALS(ulp_BatchRepConditions_vals
), 0,
6923 { &hf_ulp_batchRepType
,
6924 { "batchRepType", "ulp.batchRepType_element",
6925 FT_NONE
, BASE_NONE
, NULL
, 0,
6927 { &hf_ulp_num_interval
,
6928 { "num-interval", "ulp.num_interval",
6929 FT_UINT32
, BASE_DEC
, NULL
, 0,
6930 "INTEGER_1_1024", HFILL
}},
6931 { &hf_ulp_num_minutes
,
6932 { "num-minutes", "ulp.num_minutes",
6933 FT_UINT32
, BASE_DEC
, NULL
, 0,
6934 "INTEGER_1_2048", HFILL
}},
6935 { &hf_ulp_endofsession
,
6936 { "endofsession", "ulp.endofsession_element",
6937 FT_NONE
, BASE_NONE
, NULL
, 0,
6939 { &hf_ulp_reportPosition
,
6940 { "reportPosition", "ulp.reportPosition",
6941 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6942 "BOOLEAN", HFILL
}},
6943 { &hf_ulp_reportMeasurements
,
6944 { "reportMeasurements", "ulp.reportMeasurements",
6945 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6946 "BOOLEAN", HFILL
}},
6947 { &hf_ulp_intermediateReports
,
6948 { "intermediateReports", "ulp.intermediateReports",
6949 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6950 "BOOLEAN", HFILL
}},
6951 { &hf_ulp_discardOldest
,
6952 { "discardOldest", "ulp.discardOldest",
6953 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
6954 "BOOLEAN", HFILL
}},
6955 { &hf_ulp_sessionList
,
6956 { "sessionList", "ulp.sessionList",
6957 FT_UINT32
, BASE_DEC
, NULL
, 0,
6959 { &hf_ulp_reportDataList
,
6960 { "reportDataList", "ulp.reportDataList",
6961 FT_UINT32
, BASE_DEC
, NULL
, 0,
6963 { &hf_ulp_moreComponents
,
6964 { "moreComponents", "ulp.moreComponents_element",
6965 FT_NONE
, BASE_NONE
, NULL
, 0,
6967 { &hf_ulp_SessionList_item
,
6968 { "SessionInformation", "ulp.SessionInformation_element",
6969 FT_NONE
, BASE_NONE
, NULL
, 0,
6971 { &hf_ulp_ReportDataList_item
,
6972 { "ReportData", "ulp.ReportData_element",
6973 FT_NONE
, BASE_NONE
, NULL
, 0,
6975 { &hf_ulp_positionData
,
6976 { "positionData", "ulp.positionData_element",
6977 FT_NONE
, BASE_NONE
, NULL
, 0,
6979 { &hf_ulp_resultCode
,
6980 { "resultCode", "ulp.resultCode",
6981 FT_UINT32
, BASE_DEC
, VALS(ulp_ResultCode_vals
), 0,
6983 { &hf_ulp_timestamp
,
6984 { "timestamp", "ulp.timestamp",
6985 FT_UINT32
, BASE_DEC
, VALS(ulp_TimeStamp_vals
), 0,
6987 { &hf_ulp_ganssSignalsInfo
,
6988 { "ganssSignalsInfo", "ulp.ganssSignalsInfo",
6989 FT_UINT32
, BASE_DEC
, NULL
, 0,
6991 { &hf_ulp_GANSSsignalsInfo_item
,
6992 { "GANSSSignalsDescription", "ulp.GANSSSignalsDescription_element",
6993 FT_NONE
, BASE_NONE
, NULL
, 0,
6996 { "ganssId", "ulp.ganssId",
6997 FT_UINT32
, BASE_DEC
, NULL
, 0,
6998 "INTEGER_0_15", HFILL
}},
6999 { &hf_ulp_gANSSSignals
,
7000 { "gANSSSignals", "ulp.gANSSSignals",
7001 FT_BYTES
, BASE_NONE
, NULL
, 0,
7003 { &hf_ulp_absoluteTime
,
7004 { "absoluteTime", "ulp.absoluteTime",
7005 FT_STRING
, BASE_NONE
, NULL
, 0,
7006 "UTCTime", HFILL
}},
7007 { &hf_ulp_relativeTime
,
7008 { "relativeTime", "ulp.relativeTime",
7009 FT_UINT32
, BASE_DEC
, NULL
, 0,
7010 "INTEGER_0_31536000", HFILL
}},
7011 { &hf_ulp_notificationMode
,
7012 { "notificationMode", "ulp.notificationMode",
7013 FT_UINT32
, BASE_DEC
, VALS(ulp_NotificationMode_vals
), 0,
7015 { &hf_ulp_e_SLPAddress
,
7016 { "e-SLPAddress", "ulp.e_SLPAddress",
7017 FT_UINT32
, BASE_DEC
, VALS(ulp_SLPAddress_vals
), 0,
7018 "SLPAddress", HFILL
}},
7019 { &hf_ulp_historicReporting
,
7020 { "historicReporting", "ulp.historicReporting_element",
7021 FT_NONE
, BASE_NONE
, NULL
, 0,
7023 { &hf_ulp_protectionLevel
,
7024 { "protectionLevel", "ulp.protectionLevel_element",
7025 FT_NONE
, BASE_NONE
, NULL
, 0,
7027 { &hf_ulp_minimumMajorVersion
,
7028 { "minimumMajorVersion", "ulp.minimumMajorVersion",
7029 FT_UINT32
, BASE_DEC
, NULL
, 0,
7030 "INTEGER_0_255", HFILL
}},
7031 { &hf_ulp_allowedReportingType
,
7032 { "allowedReportingType", "ulp.allowedReportingType",
7033 FT_UINT32
, BASE_DEC
, VALS(ulp_AllowedReportingType_vals
), 0,
7035 { &hf_ulp_reportingCriteria
,
7036 { "reportingCriteria", "ulp.reportingCriteria_element",
7037 FT_NONE
, BASE_NONE
, NULL
, 0,
7039 { &hf_ulp_timeWindow
,
7040 { "timeWindow", "ulp.timeWindow_element",
7041 FT_NONE
, BASE_NONE
, NULL
, 0,
7043 { &hf_ulp_maxNumberofReports
,
7044 { "maxNumberofReports", "ulp.maxNumberofReports",
7045 FT_UINT32
, BASE_DEC
, NULL
, 0,
7046 "INTEGER_1_65536", HFILL
}},
7047 { &hf_ulp_minTimeInterval
,
7048 { "minTimeInterval", "ulp.minTimeInterval",
7049 FT_UINT32
, BASE_DEC
, NULL
, 0,
7050 "INTEGER_1_86400", HFILL
}},
7051 { &hf_ulp_startTime_01
,
7052 { "startTime", "ulp.startTime",
7053 FT_INT32
, BASE_DEC
, NULL
, 0,
7054 "INTEGER_M525600_M1", HFILL
}},
7055 { &hf_ulp_stopTime_01
,
7056 { "stopTime", "ulp.stopTime",
7057 FT_INT32
, BASE_DEC
, NULL
, 0,
7058 "INTEGER_M525599_0", HFILL
}},
7059 { &hf_ulp_protlevel
,
7060 { "protlevel", "ulp.protlevel",
7061 FT_UINT32
, BASE_DEC
, VALS(ulp_ProtLevel_vals
), 0,
7063 { &hf_ulp_basicProtectionParams
,
7064 { "basicProtectionParams", "ulp.basicProtectionParams_element",
7065 FT_NONE
, BASE_NONE
, NULL
, 0,
7067 { &hf_ulp_keyIdentifier
,
7068 { "keyIdentifier", "ulp.keyIdentifier",
7069 FT_BYTES
, BASE_NONE
, NULL
, 0,
7070 "OCTET_STRING_SIZE_8", HFILL
}},
7071 { &hf_ulp_basicReplayCounter
,
7072 { "basicReplayCounter", "ulp.basicReplayCounter",
7073 FT_UINT32
, BASE_DEC
, NULL
, 0,
7074 "INTEGER_0_65535", HFILL
}},
7076 { "basicMAC", "ulp.basicMAC",
7077 FT_BYTES
, BASE_NONE
, NULL
, 0,
7078 "BIT_STRING_SIZE_32", HFILL
}},
7079 { &hf_ulp_initialApproximateposition
,
7080 { "initialApproximateposition", "ulp.initialApproximateposition_element",
7081 FT_NONE
, BASE_NONE
, NULL
, 0,
7082 "Position", HFILL
}},
7083 { &hf_ulp_utran_GPSReferenceTimeResult
,
7084 { "utran-GPSReferenceTimeResult", "ulp.utran_GPSReferenceTimeResult_element",
7085 FT_NONE
, BASE_NONE
, NULL
, 0,
7087 { &hf_ulp_utran_GANSSReferenceTimeResult
,
7088 { "utran-GANSSReferenceTimeResult", "ulp.utran_GANSSReferenceTimeResult_element",
7089 FT_NONE
, BASE_NONE
, NULL
, 0,
7091 { &hf_ulp_utran_GPSReferenceTimeAssistance
,
7092 { "utran-GPSReferenceTimeAssistance", "ulp.utran_GPSReferenceTimeAssistance_element",
7093 FT_NONE
, BASE_NONE
, NULL
, 0,
7095 { &hf_ulp_utran_GANSSReferenceTimeAssistance
,
7096 { "utran-GANSSReferenceTimeAssistance", "ulp.utran_GANSSReferenceTimeAssistance_element",
7097 FT_NONE
, BASE_NONE
, NULL
, 0,
7099 { &hf_ulp_emergencyCallLocation
,
7100 { "emergencyCallLocation", "ulp.emergencyCallLocation_element",
7101 FT_NONE
, BASE_NONE
, NULL
, 0,
7103 { &hf_ulp_serviceCapabilities
,
7104 { "serviceCapabilities", "ulp.serviceCapabilities_element",
7105 FT_NONE
, BASE_NONE
, NULL
, 0,
7107 { &hf_ulp_supportedBearers
,
7108 { "supportedBearers", "ulp.supportedBearers_element",
7109 FT_NONE
, BASE_NONE
, NULL
, 0,
7111 { &hf_ulp_servicesSupported
,
7112 { "servicesSupported", "ulp.servicesSupported_element",
7113 FT_NONE
, BASE_NONE
, NULL
, 0,
7115 { &hf_ulp_reportingCapabilities
,
7116 { "reportingCapabilities", "ulp.reportingCapabilities_element",
7117 FT_NONE
, BASE_NONE
, NULL
, 0,
7118 "ReportingCap", HFILL
}},
7119 { &hf_ulp_eventTriggerCapabilities
,
7120 { "eventTriggerCapabilities", "ulp.eventTriggerCapabilities_element",
7121 FT_NONE
, BASE_NONE
, NULL
, 0,
7123 { &hf_ulp_sessionCapabilities
,
7124 { "sessionCapabilities", "ulp.sessionCapabilities_element",
7125 FT_NONE
, BASE_NONE
, NULL
, 0,
7127 { &hf_ulp_periodicTrigger
,
7128 { "periodicTrigger", "ulp.periodicTrigger",
7129 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7130 "BOOLEAN", HFILL
}},
7131 { &hf_ulp_areaEventTrigger
,
7132 { "areaEventTrigger", "ulp.areaEventTrigger",
7133 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7134 "BOOLEAN", HFILL
}},
7135 { &hf_ulp_geoAreaShapesSupported
,
7136 { "geoAreaShapesSupported", "ulp.geoAreaShapesSupported_element",
7137 FT_NONE
, BASE_NONE
, NULL
, 0,
7139 { &hf_ulp_maxNumGeoAreaSupported
,
7140 { "maxNumGeoAreaSupported", "ulp.maxNumGeoAreaSupported",
7141 FT_UINT32
, BASE_DEC
, NULL
, 0,
7142 "INTEGER_0_maxNumGeoArea", HFILL
}},
7143 { &hf_ulp_maxAreaIdListSupported
,
7144 { "maxAreaIdListSupported", "ulp.maxAreaIdListSupported",
7145 FT_UINT32
, BASE_DEC
, NULL
, 0,
7146 "INTEGER_0_maxAreaIdList", HFILL
}},
7147 { &hf_ulp_maxAreaIdSupportedPerList
,
7148 { "maxAreaIdSupportedPerList", "ulp.maxAreaIdSupportedPerList",
7149 FT_UINT32
, BASE_DEC
, NULL
, 0,
7150 "INTEGER_0_maxAreaId", HFILL
}},
7151 { &hf_ulp_ellipticalArea_01
,
7152 { "ellipticalArea", "ulp.ellipticalArea",
7153 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7154 "BOOLEAN", HFILL
}},
7155 { &hf_ulp_polygonArea_01
,
7156 { "polygonArea", "ulp.polygonArea",
7157 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7158 "BOOLEAN", HFILL
}},
7159 { &hf_ulp_maxNumberTotalSessions
,
7160 { "maxNumberTotalSessions", "ulp.maxNumberTotalSessions",
7161 FT_UINT32
, BASE_DEC
, NULL
, 0,
7162 "INTEGER_1_128", HFILL
}},
7163 { &hf_ulp_maxNumberPeriodicSessions
,
7164 { "maxNumberPeriodicSessions", "ulp.maxNumberPeriodicSessions",
7165 FT_UINT32
, BASE_DEC
, NULL
, 0,
7166 "INTEGER_1_32", HFILL
}},
7167 { &hf_ulp_maxNumberTriggeredSessions
,
7168 { "maxNumberTriggeredSessions", "ulp.maxNumberTriggeredSessions",
7169 FT_UINT32
, BASE_DEC
, NULL
, 0,
7170 "INTEGER_1_32", HFILL
}},
7173 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7174 "BOOLEAN", HFILL
}},
7176 { "wcdma", "ulp.wcdma",
7177 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7178 "BOOLEAN", HFILL
}},
7181 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7182 "BOOLEAN", HFILL
}},
7184 { "cdma", "ulp.cdma",
7185 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7186 "BOOLEAN", HFILL
}},
7188 { "hprd", "ulp.hprd",
7189 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7190 "BOOLEAN", HFILL
}},
7193 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7194 "BOOLEAN", HFILL
}},
7196 { "wlan", "ulp.wlan",
7197 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7198 "BOOLEAN", HFILL
}},
7200 { "wiMAX", "ulp.wiMAX",
7201 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7202 "BOOLEAN", HFILL
}},
7205 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7206 "BOOLEAN", HFILL
}},
7207 { &hf_ulp_posProtocolVersionRRLP
,
7208 { "posProtocolVersionRRLP", "ulp.posProtocolVersionRRLP_element",
7209 FT_NONE
, BASE_NONE
, NULL
, 0,
7210 "PosProtocolVersion3GPP", HFILL
}},
7211 { &hf_ulp_posProtocolVersionRRC
,
7212 { "posProtocolVersionRRC", "ulp.posProtocolVersionRRC_element",
7213 FT_NONE
, BASE_NONE
, NULL
, 0,
7214 "PosProtocolVersion3GPP", HFILL
}},
7215 { &hf_ulp_posProtocolVersionTIA801
,
7216 { "posProtocolVersionTIA801", "ulp.posProtocolVersionTIA801",
7217 FT_UINT32
, BASE_DEC
, NULL
, 0,
7218 "PosProtocolVersion3GPP2", HFILL
}},
7219 { &hf_ulp_posProtocolVersionLPP
,
7220 { "posProtocolVersionLPP", "ulp.posProtocolVersionLPP_element",
7221 FT_NONE
, BASE_NONE
, NULL
, 0,
7222 "PosProtocolVersion3GPP", HFILL
}},
7223 { &hf_ulp_majorVersionField
,
7224 { "majorVersionField", "ulp.majorVersionField",
7225 FT_UINT32
, BASE_DEC
, NULL
, 0,
7226 "INTEGER_0_255", HFILL
}},
7227 { &hf_ulp_technicalVersionField
,
7228 { "technicalVersionField", "ulp.technicalVersionField",
7229 FT_UINT32
, BASE_DEC
, NULL
, 0,
7230 "INTEGER_0_255", HFILL
}},
7231 { &hf_ulp_editorialVersionField
,
7232 { "editorialVersionField", "ulp.editorialVersionField",
7233 FT_UINT32
, BASE_DEC
, NULL
, 0,
7234 "INTEGER_0_255", HFILL
}},
7235 { &hf_ulp_PosProtocolVersion3GPP2_item
,
7236 { "Supported3GPP2PosProtocolVersion", "ulp.Supported3GPP2PosProtocolVersion_element",
7237 FT_NONE
, BASE_NONE
, NULL
, 0,
7239 { &hf_ulp_revisionNumber
,
7240 { "revisionNumber", "ulp.revisionNumber",
7241 FT_BYTES
, BASE_NONE
, NULL
, 0,
7242 "BIT_STRING_SIZE_6", HFILL
}},
7243 { &hf_ulp_pointReleaseNumber
,
7244 { "pointReleaseNumber", "ulp.pointReleaseNumber",
7245 FT_UINT32
, BASE_DEC
, NULL
, 0,
7246 "INTEGER_0_255", HFILL
}},
7247 { &hf_ulp_internalEditLevel
,
7248 { "internalEditLevel", "ulp.internalEditLevel",
7249 FT_UINT32
, BASE_DEC
, NULL
, 0,
7250 "INTEGER_0_255", HFILL
}},
7251 { &hf_ulp_gANSSPositionMethods
,
7252 { "gANSSPositionMethods", "ulp.gANSSPositionMethods",
7253 FT_UINT32
, BASE_DEC
, NULL
, 0,
7255 { &hf_ulp_GANSSPositionMethods_item
,
7256 { "GANSSPositionMethod", "ulp.GANSSPositionMethod_element",
7257 FT_NONE
, BASE_NONE
, NULL
, 0,
7259 { &hf_ulp_ganssSBASid
,
7260 { "ganssSBASid", "ulp.ganssSBASid",
7261 FT_BYTES
, BASE_NONE
, NULL
, 0,
7262 "BIT_STRING_SIZE_3", HFILL
}},
7263 { &hf_ulp_gANSSPositioningMethodTypes
,
7264 { "gANSSPositioningMethodTypes", "ulp.gANSSPositioningMethodTypes_element",
7265 FT_NONE
, BASE_NONE
, NULL
, 0,
7267 { &hf_ulp_setAssisted
,
7268 { "setAssisted", "ulp.setAssisted",
7269 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7270 "BOOLEAN", HFILL
}},
7272 { "setBased", "ulp.setBased",
7273 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7274 "BOOLEAN", HFILL
}},
7275 { &hf_ulp_autonomous
,
7276 { "autonomous", "ulp.autonomous",
7277 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7278 "BOOLEAN", HFILL
}},
7279 { &hf_ulp_ganssRequestedCommonAssistanceDataList
,
7280 { "ganssRequestedCommonAssistanceDataList", "ulp.ganssRequestedCommonAssistanceDataList_element",
7281 FT_NONE
, BASE_NONE
, NULL
, 0,
7283 { &hf_ulp_ganssRequestedGenericAssistanceDataList
,
7284 { "ganssRequestedGenericAssistanceDataList", "ulp.ganssRequestedGenericAssistanceDataList",
7285 FT_UINT32
, BASE_DEC
, NULL
, 0,
7287 { &hf_ulp_extendedEphemeris
,
7288 { "extendedEphemeris", "ulp.extendedEphemeris_element",
7289 FT_NONE
, BASE_NONE
, NULL
, 0,
7291 { &hf_ulp_extendedEphemerisCheck
,
7292 { "extendedEphemerisCheck", "ulp.extendedEphemerisCheck_element",
7293 FT_NONE
, BASE_NONE
, NULL
, 0,
7294 "ExtendedEphCheck", HFILL
}},
7295 { &hf_ulp_ganssReferenceTime
,
7296 { "ganssReferenceTime", "ulp.ganssReferenceTime",
7297 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7298 "BOOLEAN", HFILL
}},
7299 { &hf_ulp_ganssIonosphericModel
,
7300 { "ganssIonosphericModel", "ulp.ganssIonosphericModel",
7301 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7302 "BOOLEAN", HFILL
}},
7303 { &hf_ulp_ganssAdditionalIonosphericModelForDataID00
,
7304 { "ganssAdditionalIonosphericModelForDataID00", "ulp.ganssAdditionalIonosphericModelForDataID00",
7305 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7306 "BOOLEAN", HFILL
}},
7307 { &hf_ulp_ganssAdditionalIonosphericModelForDataID11
,
7308 { "ganssAdditionalIonosphericModelForDataID11", "ulp.ganssAdditionalIonosphericModelForDataID11",
7309 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7310 "BOOLEAN", HFILL
}},
7311 { &hf_ulp_ganssEarthOrientationParameters
,
7312 { "ganssEarthOrientationParameters", "ulp.ganssEarthOrientationParameters",
7313 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7314 "BOOLEAN", HFILL
}},
7315 { &hf_ulp_GanssRequestedGenericAssistanceDataList_item
,
7316 { "GanssReqGenericData", "ulp.GanssReqGenericData_element",
7317 FT_NONE
, BASE_NONE
, NULL
, 0,
7319 { &hf_ulp_ganssRealTimeIntegrity
,
7320 { "ganssRealTimeIntegrity", "ulp.ganssRealTimeIntegrity",
7321 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7322 "BOOLEAN", HFILL
}},
7323 { &hf_ulp_ganssDifferentialCorrection
,
7324 { "ganssDifferentialCorrection", "ulp.ganssDifferentialCorrection",
7325 FT_BYTES
, BASE_NONE
, NULL
, 0,
7326 "DGANSS_Sig_Id_Req", HFILL
}},
7327 { &hf_ulp_ganssAlmanac
,
7328 { "ganssAlmanac", "ulp.ganssAlmanac",
7329 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7330 "BOOLEAN", HFILL
}},
7331 { &hf_ulp_ganssNavigationModelData
,
7332 { "ganssNavigationModelData", "ulp.ganssNavigationModelData_element",
7333 FT_NONE
, BASE_NONE
, NULL
, 0,
7335 { &hf_ulp_ganssTimeModels
,
7336 { "ganssTimeModels", "ulp.ganssTimeModels",
7337 FT_BYTES
, BASE_NONE
, NULL
, 0,
7338 "BIT_STRING_SIZE_16", HFILL
}},
7339 { &hf_ulp_ganssReferenceMeasurementInfo
,
7340 { "ganssReferenceMeasurementInfo", "ulp.ganssReferenceMeasurementInfo",
7341 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7342 "BOOLEAN", HFILL
}},
7343 { &hf_ulp_ganssDataBits
,
7344 { "ganssDataBits", "ulp.ganssDataBits_element",
7345 FT_NONE
, BASE_NONE
, NULL
, 0,
7347 { &hf_ulp_ganssUTCModel
,
7348 { "ganssUTCModel", "ulp.ganssUTCModel",
7349 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7350 "BOOLEAN", HFILL
}},
7351 { &hf_ulp_ganssAdditionalDataChoices
,
7352 { "ganssAdditionalDataChoices", "ulp.ganssAdditionalDataChoices_element",
7353 FT_NONE
, BASE_NONE
, NULL
, 0,
7355 { &hf_ulp_ganssAuxiliaryInformation
,
7356 { "ganssAuxiliaryInformation", "ulp.ganssAuxiliaryInformation",
7357 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7358 "BOOLEAN", HFILL
}},
7359 { &hf_ulp_ganssExtendedEphemeris
,
7360 { "ganssExtendedEphemeris", "ulp.ganssExtendedEphemeris_element",
7361 FT_NONE
, BASE_NONE
, NULL
, 0,
7362 "ExtendedEphemeris", HFILL
}},
7363 { &hf_ulp_ganssExtendedEphemerisCheck
,
7364 { "ganssExtendedEphemerisCheck", "ulp.ganssExtendedEphemerisCheck_element",
7365 FT_NONE
, BASE_NONE
, NULL
, 0,
7366 "GanssExtendedEphCheck", HFILL
}},
7367 { &hf_ulp_ganssWeek
,
7368 { "ganssWeek", "ulp.ganssWeek",
7369 FT_UINT32
, BASE_DEC
, NULL
, 0,
7370 "INTEGER_0_4095", HFILL
}},
7372 { "ganssToe", "ulp.ganssToe",
7373 FT_UINT32
, BASE_DEC
, NULL
, 0,
7374 "INTEGER_0_167", HFILL
}},
7375 { &hf_ulp_t_toeLimit
,
7376 { "t-toeLimit", "ulp.t_toeLimit",
7377 FT_UINT32
, BASE_DEC
, NULL
, 0,
7378 "INTEGER_0_15", HFILL
}},
7379 { &hf_ulp_satellitesListRelatedDataList
,
7380 { "satellitesListRelatedDataList", "ulp.satellitesListRelatedDataList",
7381 FT_UINT32
, BASE_DEC
, NULL
, 0,
7383 { &hf_ulp_SatellitesListRelatedDataList_item
,
7384 { "SatellitesListRelatedData", "ulp.SatellitesListRelatedData_element",
7385 FT_NONE
, BASE_NONE
, NULL
, 0,
7389 FT_UINT32
, BASE_DEC
, NULL
, 0,
7390 "INTEGER_0_1023", HFILL
}},
7391 { &hf_ulp_ganssTODmin
,
7392 { "ganssTODmin", "ulp.ganssTODmin",
7393 FT_UINT32
, BASE_DEC
, NULL
, 0,
7394 "INTEGER_0_59", HFILL
}},
7395 { &hf_ulp_reqDataBitAssistanceList
,
7396 { "reqDataBitAssistanceList", "ulp.reqDataBitAssistanceList_element",
7397 FT_NONE
, BASE_NONE
, NULL
, 0,
7399 { &hf_ulp_gnssSignals
,
7400 { "gnssSignals", "ulp.gnssSignals",
7401 FT_BYTES
, BASE_NONE
, NULL
, 0,
7402 "GANSSSignals", HFILL
}},
7403 { &hf_ulp_ganssDataBitInterval
,
7404 { "ganssDataBitInterval", "ulp.ganssDataBitInterval",
7405 FT_UINT32
, BASE_DEC
, NULL
, 0,
7406 "INTEGER_0_15", HFILL
}},
7407 { &hf_ulp_ganssDataBitSatList
,
7408 { "ganssDataBitSatList", "ulp.ganssDataBitSatList",
7409 FT_UINT32
, BASE_DEC
, NULL
, 0,
7411 { &hf_ulp_ganssDataBitSatList_item
,
7412 { "ganssDataBitSatList item", "ulp.ganssDataBitSatList_item",
7413 FT_UINT32
, BASE_DEC
, NULL
, 0,
7414 "INTEGER_0_63", HFILL
}},
7415 { &hf_ulp_orbitModelID
,
7416 { "orbitModelID", "ulp.orbitModelID",
7417 FT_UINT32
, BASE_DEC
, NULL
, 0,
7418 "INTEGER_0_7", HFILL
}},
7419 { &hf_ulp_clockModelID
,
7420 { "clockModelID", "ulp.clockModelID",
7421 FT_UINT32
, BASE_DEC
, NULL
, 0,
7422 "INTEGER_0_7", HFILL
}},
7423 { &hf_ulp_utcModelID
,
7424 { "utcModelID", "ulp.utcModelID",
7425 FT_UINT32
, BASE_DEC
, NULL
, 0,
7426 "INTEGER_0_7", HFILL
}},
7427 { &hf_ulp_almanacModelID
,
7428 { "almanacModelID", "ulp.almanacModelID",
7429 FT_UINT32
, BASE_DEC
, NULL
, 0,
7430 "INTEGER_0_7", HFILL
}},
7432 { "validity", "ulp.validity",
7433 FT_UINT32
, BASE_DEC
, NULL
, 0,
7434 "INTEGER_1_256", HFILL
}},
7435 { &hf_ulp_beginTime
,
7436 { "beginTime", "ulp.beginTime_element",
7437 FT_NONE
, BASE_NONE
, NULL
, 0,
7438 "GPSTime", HFILL
}},
7440 { "endTime", "ulp.endTime_element",
7441 FT_NONE
, BASE_NONE
, NULL
, 0,
7442 "GPSTime", HFILL
}},
7443 { &hf_ulp_beginTime_01
,
7444 { "beginTime", "ulp.beginTime_element",
7445 FT_NONE
, BASE_NONE
, NULL
, 0,
7446 "GANSSextEphTime", HFILL
}},
7447 { &hf_ulp_endTime_01
,
7448 { "endTime", "ulp.endTime_element",
7449 FT_NONE
, BASE_NONE
, NULL
, 0,
7450 "GANSSextEphTime", HFILL
}},
7452 { "gPSWeek", "ulp.gPSWeek",
7453 FT_UINT32
, BASE_DEC
, NULL
, 0,
7454 "INTEGER_0_1023", HFILL
}},
7455 { &hf_ulp_gPSTOWhour
,
7456 { "gPSTOWhour", "ulp.gPSTOWhour",
7457 FT_UINT32
, BASE_DEC
, NULL
, 0,
7458 "INTEGER_0_167", HFILL
}},
7460 { "gANSSday", "ulp.gANSSday",
7461 FT_UINT32
, BASE_DEC
, NULL
, 0,
7462 "INTEGER_0_8191", HFILL
}},
7463 { &hf_ulp_gANSSTODhour
,
7464 { "gANSSTODhour", "ulp.gANSSTODhour",
7465 FT_UINT32
, BASE_DEC
, NULL
, 0,
7466 "INTEGER_0_23", HFILL
}},
7467 { &hf_ulp_lPPPayload
,
7468 { "lPPPayload", "ulp.lPPPayload",
7469 FT_UINT32
, BASE_DEC
, NULL
, 0,
7471 { &hf_ulp_lPPPayload_item
,
7472 { "lPPPayload item", "ulp.lPPPayload_item",
7473 FT_BYTES
, BASE_NONE
, NULL
, 0,
7475 { &hf_ulp_tIA801Payload
,
7476 { "tIA801Payload", "ulp.tIA801Payload",
7477 FT_UINT32
, BASE_DEC
, NULL
, 0,
7479 { &hf_ulp_tIA801Payload_item
,
7480 { "tIA801Payload item", "ulp.tIA801Payload_item",
7481 FT_BYTES
, BASE_NONE
, NULL
, 0,
7482 "OCTET_STRING_SIZE_1_60000", HFILL
}},
7485 FT_UINT32
, BASE_DEC
, NULL
, 0,
7486 "INTEGER_0_255", HFILL
}},
7489 FT_UINT32
, BASE_DEC
, NULL
, 0,
7490 "INTEGER_0_255", HFILL
}},
7492 { "servind", "ulp.servind",
7493 FT_UINT32
, BASE_DEC
, NULL
, 0,
7494 "INTEGER_0_255", HFILL
}},
7495 { &hf_ulp_setSessionID
,
7496 { "setSessionID", "ulp.setSessionID_element",
7497 FT_NONE
, BASE_NONE
, NULL
, 0,
7499 { &hf_ulp_slpSessionID
,
7500 { "slpSessionID", "ulp.slpSessionID_element",
7501 FT_NONE
, BASE_NONE
, NULL
, 0,
7503 { &hf_ulp_sessionId
,
7504 { "sessionId", "ulp.sessionId",
7505 FT_UINT32
, BASE_DEC
, NULL
, 0,
7506 "INTEGER_0_65535", HFILL
}},
7508 { "setId", "ulp.setId",
7509 FT_UINT32
, BASE_DEC
, VALS(ulp_SETId_vals
), 0,
7512 { "msisdn", "ulp.msisdn",
7513 FT_BYTES
, BASE_NONE
, NULL
, 0,
7514 "OCTET_STRING_SIZE_8", HFILL
}},
7517 FT_BYTES
, BASE_NONE
, NULL
, 0,
7518 "OCTET_STRING_SIZE_8", HFILL
}},
7521 FT_BYTES
, BASE_NONE
, NULL
, 0,
7522 "BIT_STRING_SIZE_34", HFILL
}},
7524 { "imsi", "ulp.imsi",
7525 FT_BYTES
, BASE_NONE
, NULL
, 0,
7526 "OCTET_STRING_SIZE_8", HFILL
}},
7529 FT_STRING
, BASE_NONE
, NULL
, 0,
7530 "IA5String_SIZE_1_1000", HFILL
}},
7531 { &hf_ulp_iPAddress
,
7532 { "iPAddress", "ulp.iPAddress",
7533 FT_UINT32
, BASE_DEC
, VALS(ulp_IPAddress_vals
), 0,
7535 { &hf_ulp_sessionSlpID
,
7536 { "sessionID", "ulp.sessionID",
7537 FT_BYTES
, BASE_NONE
, NULL
, 0,
7538 "OCTET_STRING_SIZE_4", HFILL
}},
7540 { "slpId", "ulp.slpId",
7541 FT_UINT32
, BASE_DEC
, VALS(ulp_SLPAddress_vals
), 0,
7542 "SLPAddress", HFILL
}},
7543 { &hf_ulp_ipv4Address
,
7544 { "ipv4Address", "ulp.ipv4Address",
7545 FT_IPv4
, BASE_NONE
, NULL
, 0,
7546 "OCTET_STRING_SIZE_4", HFILL
}},
7547 { &hf_ulp_ipv6Address
,
7548 { "ipv6Address", "ulp.ipv6Address",
7549 FT_IPv6
, BASE_NONE
, NULL
, 0,
7550 "OCTET_STRING_SIZE_16", HFILL
}},
7552 { "fQDN", "ulp.fQDN",
7553 FT_STRING
, BASE_NONE
, NULL
, 0,
7556 { "cellInfo", "ulp.cellInfo",
7557 FT_UINT32
, BASE_DEC
, VALS(ulp_CellInfo_vals
), 0,
7560 { "status", "ulp.status",
7561 FT_UINT32
, BASE_DEC
, VALS(ulp_Status_vals
), 0,
7564 { "gsmCell", "ulp.gsmCell_element",
7565 FT_NONE
, BASE_NONE
, NULL
, 0,
7566 "GsmCellInformation", HFILL
}},
7567 { &hf_ulp_wcdmaCell
,
7568 { "wcdmaCell", "ulp.wcdmaCell_element",
7569 FT_NONE
, BASE_NONE
, NULL
, 0,
7570 "WcdmaCellInformation", HFILL
}},
7572 { "cdmaCell", "ulp.cdmaCell_element",
7573 FT_NONE
, BASE_NONE
, NULL
, 0,
7574 "CdmaCellInformation", HFILL
}},
7575 { &hf_ulp_ver2_CellInfo_extension
,
7576 { "ver2-CellInfo-extension", "ulp.ver2_CellInfo_extension",
7577 FT_UINT32
, BASE_DEC
, VALS(ulp_Ver2_CellInfo_extension_vals
), 0,
7579 { &hf_ulp_timestamp_01
,
7580 { "timestamp", "ulp.timestamp",
7581 FT_STRING
, BASE_NONE
, NULL
, 0,
7582 "UTCTime", HFILL
}},
7583 { &hf_ulp_positionEstimate
,
7584 { "positionEstimate", "ulp.positionEstimate_element",
7585 FT_NONE
, BASE_NONE
, NULL
, 0,
7587 { &hf_ulp_latitudeSign
,
7588 { "latitudeSign", "ulp.latitudeSign",
7589 FT_UINT32
, BASE_DEC
, VALS(ulp_T_latitudeSign_vals
), 0,
7592 { "latitude", "ulp.latitude",
7593 FT_UINT32
, BASE_DEC
, NULL
, 0,
7594 "INTEGER_0_8388607", HFILL
}},
7595 { &hf_ulp_longitude
,
7596 { "longitude", "ulp.longitude",
7597 FT_INT32
, BASE_DEC
, NULL
, 0,
7598 "INTEGER_M8388608_8388607", HFILL
}},
7599 { &hf_ulp_uncertainty
,
7600 { "uncertainty", "ulp.uncertainty_element",
7601 FT_NONE
, BASE_NONE
, NULL
, 0,
7603 { &hf_ulp_uncertaintySemiMajor
,
7604 { "uncertaintySemiMajor", "ulp.uncertaintySemiMajor",
7605 FT_UINT32
, BASE_DEC
, NULL
, 0,
7606 "INTEGER_0_127", HFILL
}},
7607 { &hf_ulp_uncertaintySemiMinor
,
7608 { "uncertaintySemiMinor", "ulp.uncertaintySemiMinor",
7609 FT_UINT32
, BASE_DEC
, NULL
, 0,
7610 "INTEGER_0_127", HFILL
}},
7611 { &hf_ulp_orientationMajorAxis
,
7612 { "orientationMajorAxis", "ulp.orientationMajorAxis",
7613 FT_UINT32
, BASE_DEC
, NULL
, 0,
7614 "INTEGER_0_180", HFILL
}},
7615 { &hf_ulp_confidence
,
7616 { "confidence", "ulp.confidence",
7617 FT_UINT32
, BASE_DEC
, NULL
, 0,
7618 "INTEGER_0_100", HFILL
}},
7619 { &hf_ulp_altitudeInfo
,
7620 { "altitudeInfo", "ulp.altitudeInfo_element",
7621 FT_NONE
, BASE_NONE
, NULL
, 0,
7623 { &hf_ulp_altitudeDirection
,
7624 { "altitudeDirection", "ulp.altitudeDirection",
7625 FT_UINT32
, BASE_DEC
, VALS(ulp_T_altitudeDirection_vals
), 0,
7628 { "altitude", "ulp.altitude",
7629 FT_UINT32
, BASE_DEC
, NULL
, 0,
7630 "INTEGER_0_32767", HFILL
}},
7631 { &hf_ulp_altUncertainty
,
7632 { "altUncertainty", "ulp.altUncertainty",
7633 FT_UINT32
, BASE_DEC
, NULL
, 0,
7634 "INTEGER_0_127", HFILL
}},
7635 { &hf_ulp_refNID_01
,
7636 { "refNID", "ulp.refNID",
7637 FT_UINT32
, BASE_DEC
, NULL
, 0,
7638 "INTEGER_0_65535", HFILL
}},
7639 { &hf_ulp_refSID_01
,
7640 { "refSID", "ulp.refSID",
7641 FT_UINT32
, BASE_DEC
, NULL
, 0,
7642 "INTEGER_0_32767", HFILL
}},
7643 { &hf_ulp_refBASELAT
,
7644 { "refBASELAT", "ulp.refBASELAT",
7645 FT_UINT32
, BASE_DEC
, NULL
, 0,
7646 "INTEGER_0_4194303", HFILL
}},
7647 { &hf_ulp_reBASELONG
,
7648 { "reBASELONG", "ulp.reBASELONG",
7649 FT_UINT32
, BASE_DEC
, NULL
, 0,
7650 "INTEGER_0_8388607", HFILL
}},
7652 { "refREFPN", "ulp.refREFPN",
7653 FT_UINT32
, BASE_DEC
, NULL
, 0,
7654 "INTEGER_0_511", HFILL
}},
7655 { &hf_ulp_refWeekNumber
,
7656 { "refWeekNumber", "ulp.refWeekNumber",
7657 FT_UINT32
, BASE_DEC
, NULL
, 0,
7658 "INTEGER_0_65535", HFILL
}},
7659 { &hf_ulp_refSeconds
,
7660 { "refSeconds", "ulp.refSeconds",
7661 FT_UINT32
, BASE_DEC
, NULL
, 0,
7662 "INTEGER_0_4194303", HFILL
}},
7665 FT_UINT32
, BASE_DEC
, NULL
, 0,
7669 FT_UINT32
, BASE_DEC
, NULL
, 0,
7670 "INTEGER_0_255", HFILL
}},
7671 { &hf_ulp_frequencyInfo
,
7672 { "frequencyInfo", "ulp.frequencyInfo_element",
7673 FT_NONE
, BASE_NONE
, NULL
, 0,
7675 { &hf_ulp_primaryScramblingCode
,
7676 { "primaryScramblingCode", "ulp.primaryScramblingCode",
7677 FT_UINT32
, BASE_DEC
, NULL
, 0,
7678 "INTEGER_0_511", HFILL
}},
7679 { &hf_ulp_measuredResultsList
,
7680 { "measuredResultsList", "ulp.measuredResultsList",
7681 FT_UINT32
, BASE_DEC
, NULL
, 0,
7683 { &hf_ulp_cellParametersId
,
7684 { "cellParametersId", "ulp.cellParametersId",
7685 FT_UINT32
, BASE_DEC
, NULL
, 0,
7686 "INTEGER_0_127", HFILL
}},
7687 { &hf_ulp_timingAdvance
,
7688 { "timingAdvance", "ulp.timingAdvance_element",
7689 FT_NONE
, BASE_NONE
, NULL
, 0,
7693 FT_UINT32
, BASE_DEC
, NULL
, 0,
7694 "INTEGER_0_8191", HFILL
}},
7695 { &hf_ulp_tAResolution
,
7696 { "tAResolution", "ulp.tAResolution",
7697 FT_UINT32
, BASE_DEC
, VALS(ulp_TAResolution_vals
), 0,
7700 { "chipRate", "ulp.chipRate",
7701 FT_UINT32
, BASE_DEC
, VALS(ulp_ChipRate_vals
), 0,
7703 { &hf_ulp_modeSpecificFrequencyInfo
,
7704 { "modeSpecificInfo", "ulp.modeSpecificInfo",
7705 FT_UINT32
, BASE_DEC
, VALS(ulp_FrequencySpecificInfo_vals
), 0,
7706 "FrequencySpecificInfo", HFILL
}},
7708 { "fdd", "ulp.fdd_element",
7709 FT_NONE
, BASE_NONE
, NULL
, 0,
7710 "FrequencyInfoFDD", HFILL
}},
7712 { "tdd", "ulp.tdd_element",
7713 FT_NONE
, BASE_NONE
, NULL
, 0,
7714 "FrequencyInfoTDD", HFILL
}},
7715 { &hf_ulp_uarfcn_UL
,
7716 { "uarfcn-UL", "ulp.uarfcn_UL",
7717 FT_UINT32
, BASE_DEC
, NULL
, 0,
7719 { &hf_ulp_uarfcn_DL
,
7720 { "uarfcn-DL", "ulp.uarfcn_DL",
7721 FT_UINT32
, BASE_DEC
, NULL
, 0,
7723 { &hf_ulp_uarfcn_Nt
,
7724 { "uarfcn-Nt", "ulp.uarfcn_Nt",
7725 FT_UINT32
, BASE_DEC
, NULL
, 0,
7728 { "NMRelement", "ulp.NMRelement_element",
7729 FT_NONE
, BASE_NONE
, NULL
, 0,
7732 { "aRFCN", "ulp.aRFCN",
7733 FT_UINT32
, BASE_DEC
, NULL
, 0,
7734 "INTEGER_0_1023", HFILL
}},
7736 { "bSIC", "ulp.bSIC",
7737 FT_UINT32
, BASE_DEC
, NULL
, 0,
7738 "INTEGER_0_63", HFILL
}},
7740 { "rxLev", "ulp.rxLev",
7741 FT_UINT32
, BASE_DEC
, NULL
, 0,
7742 "INTEGER_0_63", HFILL
}},
7743 { &hf_ulp_MeasuredResultsList_item
,
7744 { "MeasuredResults", "ulp.MeasuredResults_element",
7745 FT_NONE
, BASE_NONE
, NULL
, 0,
7747 { &hf_ulp_utra_CarrierRSSI
,
7748 { "utra-CarrierRSSI", "ulp.utra_CarrierRSSI",
7749 FT_UINT32
, BASE_DEC
, NULL
, 0,
7751 { &hf_ulp_cellMeasuredResultsList
,
7752 { "cellMeasuredResultsList", "ulp.cellMeasuredResultsList",
7753 FT_UINT32
, BASE_DEC
, NULL
, 0,
7755 { &hf_ulp_CellMeasuredResultsList_item
,
7756 { "CellMeasuredResults", "ulp.CellMeasuredResults_element",
7757 FT_NONE
, BASE_NONE
, NULL
, 0,
7759 { &hf_ulp_cellIdentity
,
7760 { "cellIdentity", "ulp.cellIdentity",
7761 FT_UINT32
, BASE_DEC
, NULL
, 0,
7762 "INTEGER_0_268435455", HFILL
}},
7763 { &hf_ulp_modeSpecificInfo
,
7764 { "modeSpecificInfo", "ulp.modeSpecificInfo",
7765 FT_UINT32
, BASE_DEC
, VALS(ulp_T_modeSpecificInfo_vals
), 0,
7768 { "fdd", "ulp.fdd_element",
7769 FT_NONE
, BASE_NONE
, NULL
, 0,
7771 { &hf_ulp_primaryCPICH_Info
,
7772 { "primaryCPICH-Info", "ulp.primaryCPICH_Info_element",
7773 FT_NONE
, BASE_NONE
, NULL
, 0,
7775 { &hf_ulp_cpich_Ec_N0
,
7776 { "cpich-Ec-N0", "ulp.cpich_Ec_N0",
7777 FT_UINT32
, BASE_DEC
, NULL
, 0,
7779 { &hf_ulp_cpich_RSCP
,
7780 { "cpich-RSCP", "ulp.cpich_RSCP",
7781 FT_UINT32
, BASE_DEC
, NULL
, 0,
7784 { "pathloss", "ulp.pathloss",
7785 FT_UINT32
, BASE_DEC
, NULL
, 0,
7788 { "tdd", "ulp.tdd_element",
7789 FT_NONE
, BASE_NONE
, NULL
, 0,
7791 { &hf_ulp_cellParametersID
,
7792 { "cellParametersID", "ulp.cellParametersID",
7793 FT_UINT32
, BASE_DEC
, NULL
, 0,
7795 { &hf_ulp_proposedTGSN
,
7796 { "proposedTGSN", "ulp.proposedTGSN",
7797 FT_UINT32
, BASE_DEC
, NULL
, 0,
7799 { &hf_ulp_primaryCCPCH_RSCP
,
7800 { "primaryCCPCH-RSCP", "ulp.primaryCCPCH_RSCP",
7801 FT_UINT32
, BASE_DEC
, NULL
, 0,
7803 { &hf_ulp_timeslotISCP_List
,
7804 { "timeslotISCP-List", "ulp.timeslotISCP_List",
7805 FT_UINT32
, BASE_DEC
, NULL
, 0,
7807 { &hf_ulp_TimeslotISCP_List_item
,
7808 { "TimeslotISCP", "ulp.TimeslotISCP",
7809 FT_UINT32
, BASE_DEC
, NULL
, 0,
7812 { "horacc", "ulp.horacc",
7813 FT_UINT32
, BASE_DEC
, NULL
, 0,
7814 "INTEGER_0_127", HFILL
}},
7816 { "veracc", "ulp.veracc",
7817 FT_UINT32
, BASE_DEC
, NULL
, 0,
7818 "INTEGER_0_127", HFILL
}},
7819 { &hf_ulp_maxLocAge
,
7820 { "maxLocAge", "ulp.maxLocAge",
7821 FT_UINT32
, BASE_DEC
, NULL
, 0,
7822 "INTEGER_0_65535", HFILL
}},
7824 { "delay", "ulp.delay",
7825 FT_UINT32
, BASE_DEC
, NULL
, 0,
7826 "INTEGER_0_7", HFILL
}},
7828 { "horvel", "ulp.horvel_element",
7829 FT_NONE
, BASE_NONE
, NULL
, 0,
7831 { &hf_ulp_horandvervel
,
7832 { "horandvervel", "ulp.horandvervel_element",
7833 FT_NONE
, BASE_NONE
, NULL
, 0,
7835 { &hf_ulp_horveluncert
,
7836 { "horveluncert", "ulp.horveluncert_element",
7837 FT_NONE
, BASE_NONE
, NULL
, 0,
7839 { &hf_ulp_horandveruncert
,
7840 { "horandveruncert", "ulp.horandveruncert_element",
7841 FT_NONE
, BASE_NONE
, NULL
, 0,
7844 { "bearing", "ulp.bearing",
7845 FT_BYTES
, BASE_NONE
, NULL
, 0,
7846 "BIT_STRING_SIZE_9", HFILL
}},
7848 { "horspeed", "ulp.horspeed",
7849 FT_BYTES
, BASE_NONE
, NULL
, 0,
7850 "BIT_STRING_SIZE_16", HFILL
}},
7851 { &hf_ulp_verdirect
,
7852 { "verdirect", "ulp.verdirect",
7853 FT_BYTES
, BASE_NONE
, NULL
, 0,
7854 "BIT_STRING_SIZE_1", HFILL
}},
7856 { "verspeed", "ulp.verspeed",
7857 FT_BYTES
, BASE_NONE
, NULL
, 0,
7858 "BIT_STRING_SIZE_8", HFILL
}},
7859 { &hf_ulp_uncertspeed
,
7860 { "uncertspeed", "ulp.uncertspeed",
7861 FT_BYTES
, BASE_NONE
, NULL
, 0,
7862 "BIT_STRING_SIZE_8", HFILL
}},
7863 { &hf_ulp_horuncertspeed
,
7864 { "horuncertspeed", "ulp.horuncertspeed",
7865 FT_BYTES
, BASE_NONE
, NULL
, 0,
7866 "BIT_STRING_SIZE_8", HFILL
}},
7867 { &hf_ulp_veruncertspeed
,
7868 { "veruncertspeed", "ulp.veruncertspeed",
7869 FT_BYTES
, BASE_NONE
, NULL
, 0,
7870 "BIT_STRING_SIZE_8", HFILL
}},
7871 { &hf_ulp_MultipleLocationIds_item
,
7872 { "LocationIdData", "ulp.LocationIdData_element",
7873 FT_NONE
, BASE_NONE
, NULL
, 0,
7875 { &hf_ulp_relativetimestamp
,
7876 { "relativetimestamp", "ulp.relativetimestamp",
7877 FT_UINT32
, BASE_DEC
, NULL
, 0,
7878 "RelativeTime", HFILL
}},
7879 { &hf_ulp_servingFlag
,
7880 { "servingFlag", "ulp.servingFlag",
7881 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7882 "BOOLEAN", HFILL
}},
7884 { "wLAN", "ulp.wLAN",
7885 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7886 "BOOLEAN", HFILL
}},
7887 { &hf_ulp_supportedWLANInfo
,
7888 { "supportedWLANInfo", "ulp.supportedWLANInfo_element",
7889 FT_NONE
, BASE_NONE
, NULL
, 0,
7891 { &hf_ulp_supportedWLANApsList
,
7892 { "supportedWLANApsList", "ulp.supportedWLANApsList_element",
7893 FT_NONE
, BASE_NONE
, NULL
, 0,
7897 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7898 "BOOLEAN", HFILL
}},
7900 { "wCDMA", "ulp.wCDMA",
7901 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7902 "BOOLEAN", HFILL
}},
7903 { &hf_ulp_supportedWCDMAInfo
,
7904 { "supportedWCDMAInfo", "ulp.supportedWCDMAInfo_element",
7905 FT_NONE
, BASE_NONE
, NULL
, 0,
7908 { "cDMA", "ulp.cDMA",
7909 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7910 "BOOLEAN", HFILL
}},
7912 { "hRDP", "ulp.hRDP",
7913 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7914 "BOOLEAN", HFILL
}},
7917 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7918 "BOOLEAN", HFILL
}},
7921 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7922 "BOOLEAN", HFILL
}},
7924 { "wIMAX", "ulp.wIMAX",
7925 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7926 "BOOLEAN", HFILL
}},
7928 { "historic", "ulp.historic",
7929 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7930 "BOOLEAN", HFILL
}},
7931 { &hf_ulp_nonServing
,
7932 { "nonServing", "ulp.nonServing",
7933 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7934 "BOOLEAN", HFILL
}},
7935 { &hf_ulp_uTRANGPSReferenceTime
,
7936 { "uTRANGPSReferenceTime", "ulp.uTRANGPSReferenceTime",
7937 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7938 "BOOLEAN", HFILL
}},
7939 { &hf_ulp_uTRANGANSSReferenceTime
,
7940 { "uTRANGANSSReferenceTime", "ulp.uTRANGANSSReferenceTime",
7941 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7942 "BOOLEAN", HFILL
}},
7944 { "apTP", "ulp.apTP",
7945 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7946 "BOOLEAN", HFILL
}},
7948 { "apAG", "ulp.apAG",
7949 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7950 "BOOLEAN", HFILL
}},
7952 { "apSN", "ulp.apSN",
7953 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7954 "BOOLEAN", HFILL
}},
7955 { &hf_ulp_apDevType
,
7956 { "apDevType", "ulp.apDevType",
7957 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7958 "BOOLEAN", HFILL
}},
7960 { "apRSSI", "ulp.apRSSI",
7961 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7962 "BOOLEAN", HFILL
}},
7963 { &hf_ulp_apChanFreq
,
7964 { "apChanFreq", "ulp.apChanFreq",
7965 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7966 "BOOLEAN", HFILL
}},
7968 { "apRTD", "ulp.apRTD",
7969 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7970 "BOOLEAN", HFILL
}},
7972 { "setTP", "ulp.setTP",
7973 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7974 "BOOLEAN", HFILL
}},
7976 { "setAG", "ulp.setAG",
7977 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7978 "BOOLEAN", HFILL
}},
7980 { "setSN", "ulp.setSN",
7981 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7982 "BOOLEAN", HFILL
}},
7984 { "setRSSI", "ulp.setRSSI",
7985 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7986 "BOOLEAN", HFILL
}},
7988 { "apRepLoc", "ulp.apRepLoc",
7989 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
7990 "BOOLEAN", HFILL
}},
7991 { &hf_ulp_supportedWLANApDataList
,
7992 { "supportedWLANApDataList", "ulp.supportedWLANApDataList",
7993 FT_UINT32
, BASE_DEC
, NULL
, 0,
7994 "SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData", HFILL
}},
7995 { &hf_ulp_supportedWLANApDataList_item
,
7996 { "SupportedWLANApData", "ulp.SupportedWLANApData_element",
7997 FT_NONE
, BASE_NONE
, NULL
, 0,
7999 { &hf_ulp_supportedWLANapsChannel11a
,
8000 { "supportedWLANapsChannel11a", "ulp.supportedWLANapsChannel11a_element",
8001 FT_NONE
, BASE_NONE
, NULL
, 0,
8003 { &hf_ulp_supportedWLANapsChannel11bg
,
8004 { "supportedWLANapsChannel11bg", "ulp.supportedWLANapsChannel11bg_element",
8005 FT_NONE
, BASE_NONE
, NULL
, 0,
8008 { "ch34", "ulp.ch34",
8009 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8010 "BOOLEAN", HFILL
}},
8012 { "ch36", "ulp.ch36",
8013 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8014 "BOOLEAN", HFILL
}},
8016 { "ch38", "ulp.ch38",
8017 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8018 "BOOLEAN", HFILL
}},
8020 { "ch40", "ulp.ch40",
8021 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8022 "BOOLEAN", HFILL
}},
8024 { "ch42", "ulp.ch42",
8025 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8026 "BOOLEAN", HFILL
}},
8028 { "ch44", "ulp.ch44",
8029 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8030 "BOOLEAN", HFILL
}},
8032 { "ch46", "ulp.ch46",
8033 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8034 "BOOLEAN", HFILL
}},
8036 { "ch48", "ulp.ch48",
8037 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8038 "BOOLEAN", HFILL
}},
8040 { "ch52", "ulp.ch52",
8041 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8042 "BOOLEAN", HFILL
}},
8044 { "ch56", "ulp.ch56",
8045 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8046 "BOOLEAN", HFILL
}},
8048 { "ch60", "ulp.ch60",
8049 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8050 "BOOLEAN", HFILL
}},
8052 { "ch64", "ulp.ch64",
8053 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8054 "BOOLEAN", HFILL
}},
8056 { "ch149", "ulp.ch149",
8057 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8058 "BOOLEAN", HFILL
}},
8060 { "ch153", "ulp.ch153",
8061 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8062 "BOOLEAN", HFILL
}},
8064 { "ch157", "ulp.ch157",
8065 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8066 "BOOLEAN", HFILL
}},
8068 { "ch161", "ulp.ch161",
8069 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8070 "BOOLEAN", HFILL
}},
8073 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8074 "BOOLEAN", HFILL
}},
8077 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8078 "BOOLEAN", HFILL
}},
8081 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8082 "BOOLEAN", HFILL
}},
8085 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8086 "BOOLEAN", HFILL
}},
8089 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8090 "BOOLEAN", HFILL
}},
8093 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8094 "BOOLEAN", HFILL
}},
8097 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8098 "BOOLEAN", HFILL
}},
8101 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8102 "BOOLEAN", HFILL
}},
8105 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8106 "BOOLEAN", HFILL
}},
8108 { "ch10", "ulp.ch10",
8109 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8110 "BOOLEAN", HFILL
}},
8112 { "ch11", "ulp.ch11",
8113 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8114 "BOOLEAN", HFILL
}},
8116 { "ch12", "ulp.ch12",
8117 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8118 "BOOLEAN", HFILL
}},
8120 { "ch13", "ulp.ch13",
8121 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8122 "BOOLEAN", HFILL
}},
8124 { "ch14", "ulp.ch14",
8125 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8126 "BOOLEAN", HFILL
}},
8127 { &hf_ulp_apDevType_01
,
8128 { "apDevType", "ulp.apDevType",
8129 FT_UINT32
, BASE_DEC
, VALS(ulp_T_apDevType_vals
), 0,
8133 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8134 "BOOLEAN", HFILL
}},
8136 { "hrpdCell", "ulp.hrpdCell_element",
8137 FT_NONE
, BASE_NONE
, NULL
, 0,
8138 "HrpdCellInformation", HFILL
}},
8140 { "umbCell", "ulp.umbCell_element",
8141 FT_NONE
, BASE_NONE
, NULL
, 0,
8142 "UmbCellInformation", HFILL
}},
8144 { "lteCell", "ulp.lteCell_element",
8145 FT_NONE
, BASE_NONE
, NULL
, 0,
8146 "LteCellInformation", HFILL
}},
8148 { "wlanAP", "ulp.wlanAP_element",
8149 FT_NONE
, BASE_NONE
, NULL
, 0,
8150 "WlanAPInformation", HFILL
}},
8152 { "wimaxBS", "ulp.wimaxBS_element",
8153 FT_NONE
, BASE_NONE
, NULL
, 0,
8154 "WimaxBSInformation", HFILL
}},
8155 { &hf_ulp_cellGlobalIdEUTRA
,
8156 { "cellGlobalIdEUTRA", "ulp.cellGlobalIdEUTRA_element",
8157 FT_NONE
, BASE_NONE
, NULL
, 0,
8159 { &hf_ulp_physCellId
,
8160 { "physCellId", "ulp.physCellId",
8161 FT_UINT32
, BASE_DEC
, NULL
, 0,
8163 { &hf_ulp_trackingAreaCode
,
8164 { "trackingAreaCode", "ulp.trackingAreaCode",
8165 FT_BYTES
, BASE_NONE
, NULL
, 0,
8167 { &hf_ulp_rsrpResult
,
8168 { "rsrpResult", "ulp.rsrpResult",
8169 FT_UINT32
, BASE_DEC
, NULL
, 0,
8170 "RSRP_Range", HFILL
}},
8171 { &hf_ulp_rsrqResult
,
8172 { "rsrqResult", "ulp.rsrqResult",
8173 FT_UINT32
, BASE_DEC
, NULL
, 0,
8174 "RSRQ_Range", HFILL
}},
8177 FT_UINT32
, BASE_DEC
, NULL
, 0,
8178 "INTEGER_0_1282", HFILL
}},
8179 { &hf_ulp_measResultListEUTRA
,
8180 { "measResultListEUTRA", "ulp.measResultListEUTRA",
8181 FT_UINT32
, BASE_DEC
, NULL
, 0,
8183 { &hf_ulp_MeasResultListEUTRA_item
,
8184 { "MeasResultEUTRA", "ulp.MeasResultEUTRA_element",
8185 FT_NONE
, BASE_NONE
, NULL
, 0,
8188 { "cgi-Info", "ulp.cgi_Info_element",
8189 FT_NONE
, BASE_NONE
, NULL
, 0,
8191 { &hf_ulp_cellGlobalId
,
8192 { "cellGlobalId", "ulp.cellGlobalId_element",
8193 FT_NONE
, BASE_NONE
, NULL
, 0,
8194 "CellGlobalIdEUTRA", HFILL
}},
8195 { &hf_ulp_measResult
,
8196 { "measResult", "ulp.measResult_element",
8197 FT_NONE
, BASE_NONE
, NULL
, 0,
8199 { &hf_ulp_plmn_Identity
,
8200 { "plmn-Identity", "ulp.plmn_Identity_element",
8201 FT_NONE
, BASE_NONE
, NULL
, 0,
8203 { &hf_ulp_cellIdentity_01
,
8204 { "cellIdentity", "ulp.cellIdentity",
8205 FT_BYTES
, BASE_NONE
, NULL
, 0,
8209 FT_UINT32
, BASE_DEC
, NULL
, 0,
8213 FT_UINT32
, BASE_DEC
, NULL
, 0,
8216 { "MCC-MNC-Digit", "ulp.MCC_MNC_Digit",
8217 FT_UINT32
, BASE_DEC
, NULL
, 0,
8220 { "MCC-MNC-Digit", "ulp.MCC_MNC_Digit",
8221 FT_UINT32
, BASE_DEC
, NULL
, 0,
8223 { &hf_ulp_apTransmitPower
,
8224 { "apTransmitPower", "ulp.apTransmitPower",
8225 FT_INT32
, BASE_DEC
, NULL
, 0,
8226 "INTEGER_M127_128", HFILL
}},
8227 { &hf_ulp_apAntennaGain
,
8228 { "apAntennaGain", "ulp.apAntennaGain",
8229 FT_INT32
, BASE_DEC
, NULL
, 0,
8230 "INTEGER_M127_128", HFILL
}},
8231 { &hf_ulp_apSignaltoNoise
,
8232 { "apSignaltoNoise", "ulp.apSignaltoNoise",
8233 FT_INT32
, BASE_DEC
, NULL
, 0,
8234 "INTEGER_M127_128", HFILL
}},
8235 { &hf_ulp_apDeviceType
,
8236 { "apDeviceType", "ulp.apDeviceType",
8237 FT_UINT32
, BASE_DEC
, VALS(ulp_T_apDeviceType_vals
), 0,
8239 { &hf_ulp_apSignalStrength
,
8240 { "apSignalStrength", "ulp.apSignalStrength",
8241 FT_INT32
, BASE_DEC
, NULL
, 0,
8242 "INTEGER_M127_128", HFILL
}},
8243 { &hf_ulp_apChannelFrequency
,
8244 { "apChannelFrequency", "ulp.apChannelFrequency",
8245 FT_UINT32
, BASE_DEC
, NULL
, 0,
8246 "INTEGER_0_256", HFILL
}},
8247 { &hf_ulp_apRoundTripDelay
,
8248 { "apRoundTripDelay", "ulp.apRoundTripDelay_element",
8249 FT_NONE
, BASE_NONE
, NULL
, 0,
8251 { &hf_ulp_setTransmitPower
,
8252 { "setTransmitPower", "ulp.setTransmitPower",
8253 FT_INT32
, BASE_DEC
, NULL
, 0,
8254 "INTEGER_M127_128", HFILL
}},
8255 { &hf_ulp_setAntennaGain
,
8256 { "setAntennaGain", "ulp.setAntennaGain",
8257 FT_INT32
, BASE_DEC
, NULL
, 0,
8258 "INTEGER_M127_128", HFILL
}},
8259 { &hf_ulp_setSignaltoNoise
,
8260 { "setSignaltoNoise", "ulp.setSignaltoNoise",
8261 FT_INT32
, BASE_DEC
, NULL
, 0,
8262 "INTEGER_M127_128", HFILL
}},
8263 { &hf_ulp_setSignalStrength
,
8264 { "setSignalStrength", "ulp.setSignalStrength",
8265 FT_INT32
, BASE_DEC
, NULL
, 0,
8266 "INTEGER_M127_128", HFILL
}},
8267 { &hf_ulp_apReportedLocation
,
8268 { "apReportedLocation", "ulp.apReportedLocation_element",
8269 FT_NONE
, BASE_NONE
, NULL
, 0,
8270 "ReportedLocation", HFILL
}},
8272 { "rTDValue", "ulp.rTDValue",
8273 FT_UINT32
, BASE_DEC
, NULL
, 0,
8274 "INTEGER_0_16777216", HFILL
}},
8276 { "rTDUnits", "ulp.rTDUnits",
8277 FT_UINT32
, BASE_DEC
, VALS(ulp_RTDUnits_vals
), 0,
8279 { &hf_ulp_rTDAccuracy
,
8280 { "rTDAccuracy", "ulp.rTDAccuracy",
8281 FT_UINT32
, BASE_DEC
, NULL
, 0,
8282 "INTEGER_0_255", HFILL
}},
8283 { &hf_ulp_locationEncodingDescriptor
,
8284 { "locationEncodingDescriptor", "ulp.locationEncodingDescriptor",
8285 FT_UINT32
, BASE_DEC
, VALS(ulp_LocationEncodingDescriptor_vals
), 0,
8287 { &hf_ulp_locationData
,
8288 { "locationData", "ulp.locationData_element",
8289 FT_NONE
, BASE_NONE
, NULL
, 0,
8291 { &hf_ulp_locationAccuracy
,
8292 { "locationAccuracy", "ulp.locationAccuracy",
8293 FT_UINT32
, BASE_DEC
, NULL
, 0,
8294 "INTEGER_0_4294967295", HFILL
}},
8295 { &hf_ulp_locationValue
,
8296 { "locationValue", "ulp.locationValue",
8297 FT_BYTES
, BASE_NONE
, NULL
, 0,
8298 "OCTET_STRING_SIZE_1_128", HFILL
}},
8299 { &hf_ulp_wimaxBsID
,
8300 { "wimaxBsID", "ulp.wimaxBsID_element",
8301 FT_NONE
, BASE_NONE
, NULL
, 0,
8304 { "wimaxRTD", "ulp.wimaxRTD_element",
8305 FT_NONE
, BASE_NONE
, NULL
, 0,
8307 { &hf_ulp_wimaxNMRList
,
8308 { "wimaxNMRList", "ulp.wimaxNMRList",
8309 FT_UINT32
, BASE_DEC
, NULL
, 0,
8313 FT_UINT32
, BASE_DEC
, NULL
, 0,
8314 "INTEGER_0_65535", HFILL
}},
8316 { "rTDstd", "ulp.rTDstd",
8317 FT_UINT32
, BASE_DEC
, NULL
, 0,
8318 "INTEGER_0_1023", HFILL
}},
8319 { &hf_ulp_WimaxNMRList_item
,
8320 { "WimaxNMR", "ulp.WimaxNMR_element",
8321 FT_NONE
, BASE_NONE
, NULL
, 0,
8324 { "relDelay", "ulp.relDelay",
8325 FT_INT32
, BASE_DEC
, NULL
, 0,
8326 "INTEGER_M32768_32767", HFILL
}},
8327 { &hf_ulp_relDelaystd
,
8328 { "relDelaystd", "ulp.relDelaystd",
8329 FT_UINT32
, BASE_DEC
, NULL
, 0,
8330 "INTEGER_0_1023", HFILL
}},
8332 { "rSSI", "ulp.rSSI",
8333 FT_UINT32
, BASE_DEC
, NULL
, 0,
8334 "INTEGER_0_255", HFILL
}},
8336 { "rSSIstd", "ulp.rSSIstd",
8337 FT_UINT32
, BASE_DEC
, NULL
, 0,
8338 "INTEGER_0_63", HFILL
}},
8339 { &hf_ulp_bSTxPower
,
8340 { "bSTxPower", "ulp.bSTxPower",
8341 FT_UINT32
, BASE_DEC
, NULL
, 0,
8342 "INTEGER_0_255", HFILL
}},
8344 { "cINR", "ulp.cINR",
8345 FT_UINT32
, BASE_DEC
, NULL
, 0,
8346 "INTEGER_0_255", HFILL
}},
8348 { "cINRstd", "ulp.cINRstd",
8349 FT_UINT32
, BASE_DEC
, NULL
, 0,
8350 "INTEGER_0_63", HFILL
}},
8351 { &hf_ulp_bSLocation
,
8352 { "bSLocation", "ulp.bSLocation_element",
8353 FT_NONE
, BASE_NONE
, NULL
, 0,
8354 "ReportedLocation", HFILL
}},
8355 { &hf_ulp_utran_GPSReferenceTime
,
8356 { "utran-GPSReferenceTime", "ulp.utran_GPSReferenceTime_element",
8357 FT_NONE
, BASE_NONE
, NULL
, 0,
8359 { &hf_ulp_gpsReferenceTimeUncertainty
,
8360 { "gpsReferenceTimeUncertainty", "ulp.gpsReferenceTimeUncertainty",
8361 FT_UINT32
, BASE_DEC
, NULL
, 0,
8362 "INTEGER_0_127", HFILL
}},
8363 { &hf_ulp_utranGPSDriftRate
,
8364 { "utranGPSDriftRate", "ulp.utranGPSDriftRate",
8365 FT_UINT32
, BASE_DEC
, VALS(ulp_UTRANGPSDriftRate_vals
), 0,
8367 { &hf_ulp_utran_GPSTimingOfCell
,
8368 { "utran-GPSTimingOfCell", "ulp.utran_GPSTimingOfCell_element",
8369 FT_NONE
, BASE_NONE
, NULL
, 0,
8372 { "ms-part", "ulp.ms_part",
8373 FT_UINT32
, BASE_DEC
, NULL
, 0,
8374 "INTEGER_0_1023", HFILL
}},
8376 { "ls-part", "ulp.ls_part",
8377 FT_UINT32
, BASE_DEC
, NULL
, 0,
8378 "INTEGER_0_4294967295", HFILL
}},
8379 { &hf_ulp_modeSpecificInfo_01
,
8380 { "modeSpecificInfo", "ulp.modeSpecificInfo",
8381 FT_UINT32
, BASE_DEC
, VALS(ulp_T_modeSpecificInfo_01_vals
), 0,
8382 "T_modeSpecificInfo_01", HFILL
}},
8384 { "fdd", "ulp.fdd_element",
8385 FT_NONE
, BASE_NONE
, NULL
, 0,
8386 "T_fdd_01", HFILL
}},
8387 { &hf_ulp_referenceIdentity
,
8388 { "referenceIdentity", "ulp.referenceIdentity_element",
8389 FT_NONE
, BASE_NONE
, NULL
, 0,
8390 "PrimaryCPICH_Info", HFILL
}},
8392 { "tdd", "ulp.tdd_element",
8393 FT_NONE
, BASE_NONE
, NULL
, 0,
8394 "T_tdd_01", HFILL
}},
8395 { &hf_ulp_referenceIdentity_01
,
8396 { "referenceIdentity", "ulp.referenceIdentity",
8397 FT_UINT32
, BASE_DEC
, NULL
, 0,
8398 "CellParametersID", HFILL
}},
8401 FT_UINT32
, BASE_DEC
, NULL
, 0,
8402 "INTEGER_0_4095", HFILL
}},
8403 { &hf_ulp_set_GPSTimingOfCell
,
8404 { "set-GPSTimingOfCell", "ulp.set_GPSTimingOfCell_element",
8405 FT_NONE
, BASE_NONE
, NULL
, 0,
8406 "T_set_GPSTimingOfCell", HFILL
}},
8407 { &hf_ulp_ms_part_01
,
8408 { "ms-part", "ulp.ms_part",
8409 FT_UINT32
, BASE_DEC
, NULL
, 0,
8410 "INTEGER_0_16383", HFILL
}},
8411 { &hf_ulp_modeSpecificInfo_02
,
8412 { "modeSpecificInfo", "ulp.modeSpecificInfo",
8413 FT_UINT32
, BASE_DEC
, VALS(ulp_T_modeSpecificInfo_02_vals
), 0,
8414 "T_modeSpecificInfo_02", HFILL
}},
8416 { "fdd", "ulp.fdd_element",
8417 FT_NONE
, BASE_NONE
, NULL
, 0,
8418 "T_fdd_02", HFILL
}},
8420 { "tdd", "ulp.tdd_element",
8421 FT_NONE
, BASE_NONE
, NULL
, 0,
8422 "T_tdd_02", HFILL
}},
8424 { "ganssDay", "ulp.ganssDay",
8425 FT_UINT32
, BASE_DEC
, NULL
, 0,
8426 "INTEGER_0_8191", HFILL
}},
8427 { &hf_ulp_ganssTimeID
,
8428 { "ganssTimeID", "ulp.ganssTimeID",
8429 FT_UINT32
, BASE_DEC
, NULL
, 0,
8430 "INTEGER_0_15", HFILL
}},
8431 { &hf_ulp_utran_GANSSReferenceTime
,
8432 { "utran-GANSSReferenceTime", "ulp.utran_GANSSReferenceTime_element",
8433 FT_NONE
, BASE_NONE
, NULL
, 0,
8435 { &hf_ulp_utranGANSSDriftRate
,
8436 { "utranGANSSDriftRate", "ulp.utranGANSSDriftRate",
8437 FT_UINT32
, BASE_DEC
, VALS(ulp_UTRANGANSSDriftRate_vals
), 0,
8440 { "ganssTOD", "ulp.ganssTOD",
8441 FT_UINT32
, BASE_DEC
, NULL
, 0,
8442 "INTEGER_0_86399", HFILL
}},
8443 { &hf_ulp_utran_GANSSTimingOfCell
,
8444 { "utran-GANSSTimingOfCell", "ulp.utran_GANSSTimingOfCell",
8445 FT_UINT32
, BASE_DEC
, NULL
, 0,
8446 "INTEGER_0_3999999", HFILL
}},
8447 { &hf_ulp_modeSpecificInfo_03
,
8448 { "modeSpecificInfo", "ulp.modeSpecificInfo",
8449 FT_UINT32
, BASE_DEC
, VALS(ulp_T_modeSpecificInfo_03_vals
), 0,
8450 "T_modeSpecificInfo_03", HFILL
}},
8452 { "fdd", "ulp.fdd_element",
8453 FT_NONE
, BASE_NONE
, NULL
, 0,
8454 "T_fdd_03", HFILL
}},
8456 { "tdd", "ulp.tdd_element",
8457 FT_NONE
, BASE_NONE
, NULL
, 0,
8458 "T_tdd_03", HFILL
}},
8459 { &hf_ulp_ganss_TODUncertainty
,
8460 { "ganss-TODUncertainty", "ulp.ganss_TODUncertainty",
8461 FT_UINT32
, BASE_DEC
, NULL
, 0,
8462 "INTEGER_0_127", HFILL
}},
8463 { &hf_ulp_set_GANSSReferenceTime
,
8464 { "set-GANSSReferenceTime", "ulp.set_GANSSReferenceTime_element",
8465 FT_NONE
, BASE_NONE
, NULL
, 0,
8467 { &hf_ulp_set_GANSSTimingOfCell
,
8468 { "set-GANSSTimingOfCell", "ulp.set_GANSSTimingOfCell_element",
8469 FT_NONE
, BASE_NONE
, NULL
, 0,
8470 "T_set_GANSSTimingOfCell", HFILL
}},
8471 { &hf_ulp_ms_part_02
,
8472 { "ms-part", "ulp.ms_part",
8473 FT_UINT32
, BASE_DEC
, NULL
, 0,
8474 "INTEGER_0_80", HFILL
}},
8475 { &hf_ulp_modeSpecificInfo_04
,
8476 { "modeSpecificInfo", "ulp.modeSpecificInfo",
8477 FT_UINT32
, BASE_DEC
, VALS(ulp_T_modeSpecificInfo_04_vals
), 0,
8478 "T_modeSpecificInfo_04", HFILL
}},
8480 { "fdd", "ulp.fdd_element",
8481 FT_NONE
, BASE_NONE
, NULL
, 0,
8482 "T_fdd_04", HFILL
}},
8484 { "tdd", "ulp.tdd_element",
8485 FT_NONE
, BASE_NONE
, NULL
, 0,
8486 "T_tdd_04", HFILL
}},
8489 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8490 "BOOLEAN", HFILL
}},
8492 { "galileo", "ulp.galileo",
8493 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8494 "BOOLEAN", HFILL
}},
8496 { "sbas", "ulp.sbas",
8497 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8498 "BOOLEAN", HFILL
}},
8499 { &hf_ulp_modernized_gps
,
8500 { "modernized-gps", "ulp.modernized_gps",
8501 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8502 "BOOLEAN", HFILL
}},
8504 { "qzss", "ulp.qzss",
8505 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8506 "BOOLEAN", HFILL
}},
8508 { "glonass", "ulp.glonass",
8509 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8510 "BOOLEAN", HFILL
}},
8512 { "rAND", "ulp.rAND",
8513 FT_BYTES
, BASE_NONE
, NULL
, 0,
8514 "BIT_STRING_SIZE_128", HFILL
}},
8516 { "slpFQDN", "ulp.slpFQDN",
8517 FT_STRING
, BASE_NONE
, NULL
, 0,
8519 { &hf_ulp_ThirdParty_item
,
8520 { "ThirdPartyID", "ulp.ThirdPartyID",
8521 FT_UINT32
, BASE_DEC
, VALS(ulp_ThirdPartyID_vals
), 0,
8523 { &hf_ulp_logicalName
,
8524 { "logicalName", "ulp.logicalName",
8525 FT_STRING
, BASE_NONE
, NULL
, 0,
8526 "IA5String_SIZE_1_1000", HFILL
}},
8527 { &hf_ulp_emailaddr
,
8528 { "emailaddr", "ulp.emailaddr",
8529 FT_STRING
, BASE_NONE
, NULL
, 0,
8530 "IA5String_SIZE_1_1000", HFILL
}},
8532 { "sip-uri", "ulp.sip_uri",
8533 FT_STRING
, BASE_NONE
, NULL
, 0,
8535 { &hf_ulp_ims_public_identity
,
8536 { "ims-public-identity", "ulp.ims_public_identity",
8537 FT_STRING
, BASE_NONE
, NULL
, 0,
8541 FT_BYTES
, BASE_NONE
, NULL
, 0,
8542 "BIT_STRING_SIZE_34", HFILL
}},
8545 FT_STRING
, BASE_NONE
, NULL
, 0,
8547 { &hf_ulp_appProvider
,
8548 { "appProvider", "ulp.appProvider",
8549 FT_STRING
, BASE_NONE
, NULL
, 0,
8550 "IA5String_SIZE_1_24", HFILL
}},
8552 { "appName", "ulp.appName",
8553 FT_STRING
, BASE_NONE
, NULL
, 0,
8554 "IA5String_SIZE_1_32", HFILL
}},
8555 { &hf_ulp_appVersion
,
8556 { "appVersion", "ulp.appVersion",
8557 FT_STRING
, BASE_NONE
, NULL
, 0,
8558 "IA5String_SIZE_1_8", HFILL
}},
8560 { "minInt", "ulp.minInt",
8561 FT_UINT32
, BASE_DEC
, NULL
, 0,
8562 "INTEGER_1_3600", HFILL
}},
8564 { "maxInt", "ulp.maxInt",
8565 FT_UINT32
, BASE_DEC
, NULL
, 0,
8566 "INTEGER_1_1440", HFILL
}},
8567 { &hf_ulp_repMode_01
,
8568 { "repMode", "ulp.repMode_element",
8569 FT_NONE
, BASE_NONE
, NULL
, 0,
8570 "RepMode_cap", HFILL
}},
8571 { &hf_ulp_batchRepCap
,
8572 { "batchRepCap", "ulp.batchRepCap_element",
8573 FT_NONE
, BASE_NONE
, NULL
, 0,
8576 { "realtime", "ulp.realtime",
8577 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8578 "BOOLEAN", HFILL
}},
8579 { &hf_ulp_quasirealtime
,
8580 { "quasirealtime", "ulp.quasirealtime",
8581 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8582 "BOOLEAN", HFILL
}},
8584 { "batch", "ulp.batch",
8585 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8586 "BOOLEAN", HFILL
}},
8587 { &hf_ulp_report_position
,
8588 { "report-position", "ulp.report_position",
8589 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8590 "BOOLEAN", HFILL
}},
8591 { &hf_ulp_report_measurements
,
8592 { "report-measurements", "ulp.report_measurements",
8593 FT_BOOLEAN
, BASE_NONE
, NULL
, 0,
8594 "BOOLEAN", HFILL
}},
8595 { &hf_ulp_max_num_positions
,
8596 { "max-num-positions", "ulp.max_num_positions",
8597 FT_UINT32
, BASE_DEC
, NULL
, 0,
8598 "INTEGER_1_1024", HFILL
}},
8599 { &hf_ulp_max_num_measurements
,
8600 { "max-num-measurements", "ulp.max_num_measurements",
8601 FT_UINT32
, BASE_DEC
, NULL
, 0,
8602 "INTEGER_1_1024", HFILL
}},
8603 { &hf_ulp_latitudeSign_01
,
8604 { "latitudeSign", "ulp.latitudeSign",
8605 FT_UINT32
, BASE_DEC
, VALS(ulp_T_latitudeSign_01_vals
), 0,
8606 "T_latitudeSign_01", HFILL
}},
8607 { &hf_ulp_coordinate
,
8608 { "coordinate", "ulp.coordinate_element",
8609 FT_NONE
, BASE_NONE
, NULL
, 0,
8612 { "radius", "ulp.radius",
8613 FT_UINT32
, BASE_DEC
, NULL
, 0,
8614 "INTEGER_1_1000000", HFILL
}},
8615 { &hf_ulp_radius_min
,
8616 { "radius-min", "ulp.radius_min",
8617 FT_UINT32
, BASE_DEC
, NULL
, 0,
8618 "INTEGER_1_1000000", HFILL
}},
8619 { &hf_ulp_radius_max
,
8620 { "radius-max", "ulp.radius_max",
8621 FT_UINT32
, BASE_DEC
, NULL
, 0,
8622 "INTEGER_1_1500000", HFILL
}},
8623 { &hf_ulp_semiMajor
,
8624 { "semiMajor", "ulp.semiMajor",
8625 FT_UINT32
, BASE_DEC
, NULL
, 0,
8626 "INTEGER_1_1000000", HFILL
}},
8627 { &hf_ulp_semiMajor_min
,
8628 { "semiMajor-min", "ulp.semiMajor_min",
8629 FT_UINT32
, BASE_DEC
, NULL
, 0,
8630 "INTEGER_1_1000000", HFILL
}},
8631 { &hf_ulp_semiMajor_max
,
8632 { "semiMajor-max", "ulp.semiMajor_max",
8633 FT_UINT32
, BASE_DEC
, NULL
, 0,
8634 "INTEGER_1_1500000", HFILL
}},
8635 { &hf_ulp_semiMinor
,
8636 { "semiMinor", "ulp.semiMinor",
8637 FT_UINT32
, BASE_DEC
, NULL
, 0,
8638 "INTEGER_1_1000000", HFILL
}},
8639 { &hf_ulp_semiMinor_min
,
8640 { "semiMinor-min", "ulp.semiMinor_min",
8641 FT_UINT32
, BASE_DEC
, NULL
, 0,
8642 "INTEGER_1_1000000", HFILL
}},
8643 { &hf_ulp_semiMinor_max
,
8644 { "semiMinor-max", "ulp.semiMinor_max",
8645 FT_UINT32
, BASE_DEC
, NULL
, 0,
8646 "INTEGER_1_1500000", HFILL
}},
8648 { "angle", "ulp.angle",
8649 FT_UINT32
, BASE_DEC
, NULL
, 0,
8650 "INTEGER_0_179", HFILL
}},
8651 { &hf_ulp_polygonDescription
,
8652 { "polygonDescription", "ulp.polygonDescription",
8653 FT_UINT32
, BASE_DEC
, NULL
, 0,
8655 { &hf_ulp_polygonHysteresis
,
8656 { "polygonHysteresis", "ulp.polygonHysteresis",
8657 FT_UINT32
, BASE_DEC
, NULL
, 0,
8658 "INTEGER_1_100000", HFILL
}},
8659 { &hf_ulp_PolygonDescription_item
,
8660 { "Coordinate", "ulp.Coordinate_element",
8661 FT_NONE
, BASE_NONE
, NULL
, 0,
8663 { &hf_ulp_GANSSSignals_signal1
,
8664 { "signal1", "ulp.signal1",
8665 FT_BOOLEAN
, 8, NULL
, 0x80,
8667 { &hf_ulp_GANSSSignals_signal2
,
8668 { "signal2", "ulp.signal2",
8669 FT_BOOLEAN
, 8, NULL
, 0x40,
8671 { &hf_ulp_GANSSSignals_signal3
,
8672 { "signal3", "ulp.signal3",
8673 FT_BOOLEAN
, 8, NULL
, 0x20,
8675 { &hf_ulp_GANSSSignals_signal4
,
8676 { "signal4", "ulp.signal4",
8677 FT_BOOLEAN
, 8, NULL
, 0x10,
8679 { &hf_ulp_GANSSSignals_signal5
,
8680 { "signal5", "ulp.signal5",
8681 FT_BOOLEAN
, 8, NULL
, 0x08,
8683 { &hf_ulp_GANSSSignals_signal6
,
8684 { "signal6", "ulp.signal6",
8685 FT_BOOLEAN
, 8, NULL
, 0x04,
8687 { &hf_ulp_GANSSSignals_signal7
,
8688 { "signal7", "ulp.signal7",
8689 FT_BOOLEAN
, 8, NULL
, 0x02,
8691 { &hf_ulp_GANSSSignals_signal8
,
8692 { "signal8", "ulp.signal8",
8693 FT_BOOLEAN
, 8, NULL
, 0x01,
8696 /*--- End of included file: packet-ulp-hfarr.c ---*/
8697 #line 100 "../../asn1/ulp/packet-ulp-template.c"
8700 /* List of subtrees */
8701 static gint
*ett
[] = {
8704 /*--- Included file: packet-ulp-ettarr.c ---*/
8705 #line 1 "../../asn1/ulp/packet-ulp-ettarr.c"
8707 &ett_ulp_UlpMessage
,
8709 &ett_ulp_Notification
,
8711 &ett_ulp_SETCapabilities
,
8712 &ett_ulp_PosTechnology
,
8713 &ett_ulp_PosProtocol
,
8714 &ett_ulp_SUPLRESPONSE
,
8715 &ett_ulp_SETAuthKey
,
8716 &ett_ulp_SUPLPOSINIT
,
8717 &ett_ulp_RequestedAssistData
,
8718 &ett_ulp_NavigationModel
,
8719 &ett_ulp_SatelliteInfo
,
8720 &ett_ulp_SatelliteInfoElement
,
8722 &ett_ulp_PosPayLoad
,
8724 &ett_ulp_SUPLAUTHREQ
,
8725 &ett_ulp_SUPLAUTHRESP
,
8726 &ett_ulp_Ver2_SUPLNOTIFY
,
8727 &ett_ulp_Ver2_SUPLNOTIFYRESPONSE
,
8728 &ett_ulp_Ver2_SUPLSETINIT
,
8729 &ett_ulp_Ver2_SUPLTRIGGEREDSTART
,
8730 &ett_ulp_TriggerParams
,
8731 &ett_ulp_PeriodicParams
,
8732 &ett_ulp_AreaEventParams
,
8733 &ett_ulp_SEQUENCE_SIZE_1_maxAreaIdList_OF_AreaIdList
,
8734 &ett_ulp_RepeatedReportingParams
,
8735 &ett_ulp_GeographicTargetAreaList
,
8736 &ett_ulp_GeographicTargetArea
,
8737 &ett_ulp_AreaIdList
,
8741 &ett_ulp_WCDMAAreaId
,
8742 &ett_ulp_CDMAAreaId
,
8743 &ett_ulp_HRPDAreaId
,
8746 &ett_ulp_WLANAreaId
,
8747 &ett_ulp_WimaxAreaId
,
8748 &ett_ulp_GeoAreaMappingList
,
8749 &ett_ulp_Ver2_SUPLTRIGGEREDRESPONSE
,
8750 &ett_ulp_ReportingMode
,
8751 &ett_ulp_BatchRepConditions
,
8752 &ett_ulp_BatchRepType
,
8753 &ett_ulp_Ver2_SUPLREPORT
,
8754 &ett_ulp_SessionList
,
8755 &ett_ulp_SessionInformation
,
8756 &ett_ulp_ReportDataList
,
8757 &ett_ulp_ReportData
,
8758 &ett_ulp_PositionData
,
8759 &ett_ulp_GANSSsignalsInfo
,
8760 &ett_ulp_GANSSSignalsDescription
,
8762 &ett_ulp_Ver2_SUPLTRIGGEREDSTOP
,
8763 &ett_ulp_Ver2_SUPL_INIT_extension
,
8764 &ett_ulp_HistoricReporting
,
8765 &ett_ulp_ReportingCriteria
,
8766 &ett_ulp_TimeWindow
,
8767 &ett_ulp_ProtectionLevel
,
8768 &ett_ulp_BasicProtectionParams
,
8769 &ett_ulp_Ver2_SUPL_START_extension
,
8770 &ett_ulp_Ver2_SUPL_RESPONSE_extension
,
8771 &ett_ulp_Ver2_SUPL_POS_INIT_extension
,
8772 &ett_ulp_Ver2_SUPL_POS_extension
,
8773 &ett_ulp_Ver2_SUPL_END_extension
,
8774 &ett_ulp_Ver2_Notification_extension
,
8775 &ett_ulp_Ver2_SETCapabilities_extension
,
8776 &ett_ulp_ServiceCapabilities
,
8777 &ett_ulp_ServicesSupported
,
8778 &ett_ulp_EventTriggerCapabilities
,
8779 &ett_ulp_GeoAreaShapesSupported
,
8780 &ett_ulp_SessionCapabilities
,
8781 &ett_ulp_SupportedBearers
,
8782 &ett_ulp_Ver2_PosProtocol_extension
,
8783 &ett_ulp_PosProtocolVersion3GPP
,
8784 &ett_ulp_PosProtocolVersion3GPP2
,
8785 &ett_ulp_Supported3GPP2PosProtocolVersion
,
8786 &ett_ulp_Ver2_PosTechnology_extension
,
8787 &ett_ulp_GANSSPositionMethods
,
8788 &ett_ulp_GANSSPositionMethod
,
8789 &ett_ulp_GANSSPositioningMethodTypes
,
8790 &ett_ulp_Ver2_RequestedAssistData_extension
,
8791 &ett_ulp_GanssRequestedCommonAssistanceDataList
,
8792 &ett_ulp_GanssRequestedGenericAssistanceDataList
,
8793 &ett_ulp_GanssReqGenericData
,
8794 &ett_ulp_GanssNavigationModelData
,
8795 &ett_ulp_SatellitesListRelatedDataList
,
8796 &ett_ulp_SatellitesListRelatedData
,
8797 &ett_ulp_GanssDataBits
,
8798 &ett_ulp_ReqDataBitAssistanceList
,
8799 &ett_ulp_T_ganssDataBitSatList
,
8800 &ett_ulp_GanssAdditionalDataChoices
,
8801 &ett_ulp_ExtendedEphemeris
,
8802 &ett_ulp_ExtendedEphCheck
,
8803 &ett_ulp_GanssExtendedEphCheck
,
8805 &ett_ulp_GANSSextEphTime
,
8806 &ett_ulp_Ver2_PosPayLoad_extension
,
8807 &ett_ulp_T_lPPPayload
,
8808 &ett_ulp_T_tIA801Payload
,
8811 &ett_ulp_SetSessionID
,
8813 &ett_ulp_SlpSessionID
,
8815 &ett_ulp_SLPAddress
,
8816 &ett_ulp_LocationId
,
8819 &ett_ulp_PositionEstimate
,
8820 &ett_ulp_T_uncertainty
,
8821 &ett_ulp_AltitudeInfo
,
8822 &ett_ulp_CdmaCellInformation
,
8823 &ett_ulp_GsmCellInformation
,
8824 &ett_ulp_WcdmaCellInformation
,
8825 &ett_ulp_TimingAdvance
,
8826 &ett_ulp_FrequencyInfo
,
8827 &ett_ulp_FrequencySpecificInfo
,
8828 &ett_ulp_FrequencyInfoFDD
,
8829 &ett_ulp_FrequencyInfoTDD
,
8831 &ett_ulp_NMRelement
,
8832 &ett_ulp_MeasuredResultsList
,
8833 &ett_ulp_MeasuredResults
,
8834 &ett_ulp_CellMeasuredResultsList
,
8835 &ett_ulp_CellMeasuredResults
,
8836 &ett_ulp_T_modeSpecificInfo
,
8839 &ett_ulp_TimeslotISCP_List
,
8840 &ett_ulp_PrimaryCPICH_Info
,
8844 &ett_ulp_Horandvervel
,
8845 &ett_ulp_Horveluncert
,
8846 &ett_ulp_Horandveruncert
,
8847 &ett_ulp_MultipleLocationIds
,
8848 &ett_ulp_LocationIdData
,
8849 &ett_ulp_SupportedNetworkInformation
,
8850 &ett_ulp_SupportedWLANInfo
,
8851 &ett_ulp_SupportedWLANApsList
,
8852 &ett_ulp_SEQUENCE_SIZE_1_maxWLANApDataSize_OF_SupportedWLANApData
,
8853 &ett_ulp_SupportedWLANApsChannel11a
,
8854 &ett_ulp_SupportedWLANApsChannel11bg
,
8855 &ett_ulp_SupportedWLANApData
,
8856 &ett_ulp_SupportedWCDMAInfo
,
8857 &ett_ulp_Ver2_CellInfo_extension
,
8858 &ett_ulp_HrpdCellInformation
,
8859 &ett_ulp_UmbCellInformation
,
8860 &ett_ulp_LteCellInformation
,
8861 &ett_ulp_MeasResultListEUTRA
,
8862 &ett_ulp_MeasResultEUTRA
,
8863 &ett_ulp_T_cgi_Info
,
8864 &ett_ulp_T_measResult
,
8865 &ett_ulp_CellGlobalIdEUTRA
,
8866 &ett_ulp_PLMN_Identity
,
8869 &ett_ulp_WlanAPInformation
,
8871 &ett_ulp_ReportedLocation
,
8872 &ett_ulp_LocationData
,
8873 &ett_ulp_WimaxBSInformation
,
8876 &ett_ulp_WimaxNMRList
,
8878 &ett_ulp_UTRAN_GPSReferenceTimeAssistance
,
8879 &ett_ulp_UTRAN_GPSReferenceTime
,
8880 &ett_ulp_T_utran_GPSTimingOfCell
,
8881 &ett_ulp_T_modeSpecificInfo_01
,
8884 &ett_ulp_UTRAN_GPSReferenceTimeResult
,
8885 &ett_ulp_T_set_GPSTimingOfCell
,
8886 &ett_ulp_T_modeSpecificInfo_02
,
8889 &ett_ulp_UTRAN_GANSSReferenceTimeAssistance
,
8890 &ett_ulp_UTRAN_GANSSReferenceTime
,
8891 &ett_ulp_T_modeSpecificInfo_03
,
8894 &ett_ulp_UTRAN_GANSSReferenceTimeResult
,
8895 &ett_ulp_SET_GANSSReferenceTime
,
8896 &ett_ulp_T_set_GANSSTimingOfCell
,
8897 &ett_ulp_T_modeSpecificInfo_04
,
8900 &ett_ulp_GNSSPosTechnology
,
8901 &ett_ulp_GANSSSignals
,
8903 &ett_ulp_ThirdParty
,
8904 &ett_ulp_ThirdPartyID
,
8905 &ett_ulp_ApplicationID
,
8906 &ett_ulp_ReportingCap
,
8907 &ett_ulp_RepMode_cap
,
8908 &ett_ulp_BatchRepCap
,
8909 &ett_ulp_Coordinate
,
8910 &ett_ulp_CircularArea
,
8911 &ett_ulp_EllipticalArea
,
8912 &ett_ulp_PolygonArea
,
8913 &ett_ulp_PolygonDescription
,
8915 /*--- End of included file: packet-ulp-ettarr.c ---*/
8916 #line 106 "../../asn1/ulp/packet-ulp-template.c"
8919 module_t
*ulp_module
;
8922 /* Register protocol */
8923 proto_ulp
= proto_register_protocol(PNAME
, PSNAME
, PFNAME
);
8924 new_register_dissector("ulp", dissect_ulp_tcp
, proto_ulp
);
8926 /* Register fields and subtrees */
8927 proto_register_field_array(proto_ulp
, hf
, array_length(hf
));
8928 proto_register_subtree_array(ett
, array_length(ett
));
8930 ulp_module
= prefs_register_protocol(proto_ulp
,proto_reg_handoff_ulp
);
8932 prefs_register_bool_preference(ulp_module
, "desegment_ulp_messages",
8933 "Reassemble ULP messages spanning multiple TCP segments",
8934 "Whether the ULP dissector should reassemble messages spanning multiple TCP segments."
8935 " To use this option, you must also enable \"Allow subdissectors to reassemble TCP streams\" in the TCP protocol settings.",
8938 /* Register a configuration option for port */
8939 prefs_register_uint_preference(ulp_module
, "tcp.port",
8941 "Set the TCP port for ULP messages(IANA registered port is 7275)",
8948 /*--- proto_reg_handoff_ulp ---------------------------------------*/
8950 proto_reg_handoff_ulp(void)
8952 static gboolean initialized
= FALSE
;
8953 static dissector_handle_t ulp_handle
;
8954 static guint local_ulp_port
;
8957 ulp_handle
= find_dissector("ulp");
8958 dissector_add_string("media_type","application/oma-supl-ulp", ulp_handle
);
8959 rrlp_handle
= find_dissector("rrlp");
8960 lpp_handle
= find_dissector("lpp");
8963 dissector_delete_uint("tcp.port", local_ulp_port
, ulp_handle
);
8966 local_ulp_port
= gbl_ulp_port
;
8967 dissector_add_uint("tcp.port", gbl_ulp_port
, ulp_handle
);