ecritInternet Engineering Task Force (IETF) B. RosenInternet-DraftRequest for Comments: 6881 NeuStarIntended status: BCPBCP: 181 J. PolkExpires: March 10, 2012Category: Best Current Practice Cisco SystemsSeptember 7, 2011ISSN: 2070-1721 March 2013 Best Current Practice for Communications Services insupportSupport of Emergency Callingdraft-ietf-ecrit-phonebcp-20.txtAbstract The IETF and other standardsorganizationorganizations have efforts targeted at standardizing various aspects of placing emergency calls on IP networks. This memo describes best current practice on how devices,networksnetworks, and services using IETF protocols should use such standards to make emergency calls. Status ofthisThis Memo ThisInternet-Draft is submitted in full conformance with the provisions of BCP 78 and BCP 79. Internet-Drafts are workingmemo documents an Internet Best Current Practice. This document is a product of the Internet Engineering Task Force (IETF).Note that other groups may also distribute working documents as Internet-Drafts. The listIt represents the consensus ofcurrent Internet- Drafts is at http://datatracker.ietf.org/drafts/current/. Internet-Drafts are draft documents validthe IETF community. It has received public review and has been approved fora maximumpublication by the Internet Engineering Steering Group (IESG). Further information on BCPs is available in Section 2 ofsix monthsRFC 5741. Information about the current status of this document, any errata, and how to provide feedback on it may beupdated, replaced, or obsoleted by other documentsobtained atany time. It is inappropriate to use Internet-Drafts as reference material or to cite them other than as "work in progress." This Internet-Draft will expire on March 10, 2012.http://www.rfc-editor.org/info/rfc6881. Copyright Notice Copyright (c)20112013 IETF Trust and the persons identified as the document authors. All rights reserved. This document is subject to BCP 78 and the IETF Trust's Legal Provisions Relating to IETF Documents (http://trustee.ietf.org/license-info) in effect on the date of publication of this document. Please review these documents carefully, as they describe your rights and restrictions with respect to this document. Code Components extracted from this document must include Simplified BSD License text as described in Section 4.e of the Trust Legal Provisions and are provided without warranty as described in the Simplified BSD License. Table of Contents 1. Introduction. . . . . . . . . . . . . . . . . . . . . . . . . 4....................................................3 2. Terminology. . . . . . . . . . . . . . . . . . . . . . . . . 4.....................................................3 3. Overview ofhow emergency calls are placed . . . . . . . . . . 4How Emergency Calls Are Placed ......................3 4. WhichdevicesDevices andservices should support emergency calls . . 5Services Should Support Emergency Calls? ......4 5. Identifying anemergency call . . . . . . . . . . . . . . . . 5Emergency Call ...................................4 6. Location andits roleIts Role in anemergency call . . . . . . . . . . 6Emergency Call ......................5 6.1. Types oflocation information . . . . . . . . . . . . . . 7Location Information ..............................6 6.2. Location Determination. . . . . . . . . . . . . . . . . . 7.....................................6 6.2.1.User-entered location information . . . . . . . . . . 7User-Entered Location Information ...................6 6.2.2. Accessnetwork "wire database" location information . 7Network "Wire Database" Location Information .........................................6 6.2.3.End-system measured location information . . . . . . . 8End System Measured Location Information ............7 6.2.4.Network-measured location information . . . . . . . . 8Network Measured Location Information ...............7 6.3. Whoadds location, endpointAdds Location? The Endpoint, orproxy . . . . . . . . . . . 9the Proxy? ............8 6.4. Location andreferencesReferences tolocation . . . . . . . . . . . 9Location ........................8 6.5. Endsystem location configuration . . . . . . . . . . . . 9System Location Configuration ..........................8 6.6. Whenlocation should be configured . . . . . . . . . . . . 10Location Should Be Configured ........................10 6.7. Conveyinglocation . . . . . . . . . . . . . . . . . . . . 11Location ........................................11 6.8. Locationupdates . . . . . . . . . . . . . . . . . . . . . 12Updates ..........................................11 6.9. Multiplelocations . . . . . . . . . . . . . . . . . . . . 12Locations ........................................12 6.10. Locationvalidation . . . . . . . . . . . . . . . . . . . 13Validation ......................................12 6.11. Defaultlocation . . . . . . . . . . . . . . . . . . . . . 13Location .........................................13 6.12. Otherlocation considerations . . . . . . . . . . . . . . 13Location Considerations ............................13 7. LIS and LoST Discovery. . . . . . . . . . . . . . . . . . . . 14.........................................13 8. Routing thecallCall to the PSAP. . . . . . . . . . . . . . . . . 14...................................14 9. Signaling ofemergency calls . . . . . . . . . . . . . . . . . 15Emergency Calls ...................................15 9.1. Use of TLS. . . . . . . . . . . . . . . . . . . . . . . . 15................................................15 9.2. SIPsignaling requirementsSignaling Requirements for User Agents. . . . . . . . 16................16 9.3. SIPsignaling requirementsSignaling Requirements forproxy servers . . . . . . . 17Proxy Servers ..............17 10.Call backs . . . . . . . . . . . . . . . . . . . . . . . . . . 18Callbacks .....................................................18 11.Mid-call behavior . . . . . . . . . . . . . . . . . . . . . . 18Mid-Call Behavior .............................................19 12. Calltermination . . . . . . . . . . . . . . . . . . . . . . . 18Termination ..............................................19 13. Disabling offeatures . . . . . . . . . . . . . . . . . . . . 18Features .........................................19 14. Media. . . . . . . . . . . . . . . . . . . . . . . . . . . . 19.........................................................20 15. Testing. . . . . . . . . . . . . . . . . . . . . . . . . . . 20.......................................................21 16. Security Considerations. . . . . . . . . . . . . . . . . . . 21.......................................22 17. IANA Considerations. . . . . . . . . . . . . . . . . . . . . 21...........................................22 17.1.test service urn . . . . . . . . . . . . . . . . . . . . . 21Test Service URN .........................................22 17.2. 'test' Subregistry. . . . . . . . . . . . . . . . . . . . 21.......................................22 18. Acknowledgements. . . . . . . . . . . . . . . . . . . . . . . 22..............................................23 19. References. . . . . . . . . . . . . . . . . . . . . . . . . . 22....................................................23 19.1. Normative References. . . . . . . . . . . . . . . . . . . 22.....................................23 19.2. Informative References. . . . . . . . . . . . . . . . . . 25 Authors' Addresses . . . . . . . . . . . . . . . . . . . . . . . . 26...................................26 1. Introduction This document describes how access networks, Session Initiation Protocol [RFC3261] user agents, proxyserversservers, and Public SafetyAccessAnswering Points (PSAPs) support emergency calling, as outlined in[I-D.ietf-ecrit-framework],[RFC6443], which is designed to complement the present document in section headings,numberingnumbering, and content. Understanding[I-D.ietf-ecrit-framework][RFC6443] is necessary to understand this document. ThisBCPBest Current Practice (BCP) succinctly describes the requirements of end devices and applications (requirements prefaced by "ED-"), access networks (including enterprise access networks) (requirements prefaced by "AN-"), service providers (requirements prefaced by"SP-")"SP-"), and PSAPs to achieve globally interoperable emergency calling on the Internet. This document also defines requirements for"Intermediate""intermediate" deviceswhichthat exist between end devices or applications and the access network. For example, a home router is an"Intermediate"intermediate device. Reporting location on an emergency call (see Section 6) may depend on the ability of such intermediate devices to meet the requirements prefaced by "INT-". The access network requirements apply to those networkswhichthat may be used to place emergency calls using IETF protocols. Local regulations may impact the need to support this document's access network requirements. Other organizations, such as theNorth AmericanNational Emergency Number Association (NENA), define the PSAP interface. NENA's documents reference this document. 2. Terminology The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT", "SHOULD", "SHOULD NOT", "RECOMMENDED", "NOT RECOMMENDED", "MAY", and "OPTIONAL" in this document are to be interpreted as described in [RFC2119]. This document uses terms from [RFC3261],[RFC5012][RFC5012], and[I-D.ietf-ecrit-framework].[RFC6443]. 3. Overview ofhow emergency calls are placedHow Emergency Calls Are Placed An emergency call can be distinguished (Section 5) from any other call by a uniqueServiceservice URN[RFC5031], which[RFC5031] that is placed in the callset-upsetup signaling when a home or visited emergency dial string is detected. Because emergency services are local to specific geographic regions, a caller must obtain his location (Section 6) prior to making emergency calls. To get this location, either a form of measuring (e.g., GPS)(Section([RFC6443] Section 6.2.3) device location in the endpoint isdeployed,deployed or the endpoint is configured (Section 6.5) with its location from the access network's Location Information Server (LIS). The location is conveyed (Section 6.7) in the SIP signaling with the call. The call is routed (Section 8) based on location using the Location-to-Service Translation (LoST) protocol [RFC5222], which maps a location to a set of PSAP URIs. Each URI resolves to a PSAP or an Emergency Services Routing Proxy(ESRP), which(ESRP) that serves a group of PSAPs. The call arrives at the PSAP with the location included in the SIP INVITE request. 4. WhichdevicesDevices andservices should support emergency calls ED-1Services Should Support Emergency Calls? ED-1: A device or application that implements SIP calling SHOULD support emergency calling. Some jurisdictions have regulations governing which devices need to support emergencycallingcalling, and developers are encouraged to ensure that devices they develop meet relevant regulatory requirements. Unfortunately, the natural variation in those regulations also makes it impossible to accurately describe the cases when developers do or do not have to support emergency calling.SP-1SP-1: If a device or application expects to be able to place a call for help, the service provider that supports it MUST facilitate emergency calling. Some jurisdictions have regulations governing this.ED-2ED-2: Devices that create media sessions and exchange real-time audio,videovideo, and/ortext,text and that have the capability to establish sessions to a wide variety ofaddresses,addresses and communicate over private IP networks or theInternet,Internet SHOULD support emergency calls. Some jurisdictions have regulations governing this. 5. Identifying anemergency call ED-3Emergency Call ED-3: Endpoints SHOULD recognize dial strings of emergency calls. If the service provider always knows the location of the device (the correct dial string depends on which countryyou area caller is in), the service provider may recognizethem,them; see SP-2.SP-2SP-2: Proxy servers SHOULD recognize emergency dial strings if for some reason the endpoint does not recognize them.ED-4/SP-3ED-4/SP-3: Emergency calls MUST be marked with aServiceservice URN in the Request-URI of the INVITE.ED-5/SP-4ED-5/SP-4: Geographically local dial strings MUST be recognized.ED-6/SP-5ED-6/SP-5: Devices MUST be able to be configured with the home country from which the home dial string(s) can be determined.ED-7/SP-6ED-7/SP-6: Emergency dial strings SHOULD be determined from LoST [RFC5222]. DialStringsstrings MAY be configured directly into the device.AN-1AN-1: LoST servers MUST return dial strings for emergency services.ED-8ED-8: Endpointswhichthat do not recognize emergency dial strings SHOULD send dial strings as per [RFC4967].SP-7SP-7: If a proxy server recognizes dial strings on behalf of its clients, it MUST recognize emergency dial strings represented by [RFC4967] and SHOULD recognize the emergency dial strings represented by a tel URI [RFC3966].ED-9ED-9: Endpoints SHOULD be able to have home dial strings provisioned.SP-8SP-8: Service providers MAY provision home dial strings in devices.ED-10ED-10: Devices SHOULD NOT haveone buttonone-button emergency calling initiation.ED-11/SP-9ED-11/SP-9: All sub-services for the 'sos' service specified in[RFC5031].[RFC5031] MUST be recognized. 6. Location andits roleIts Role in anemergency callEmergency Call Handling location for emergency calling usually involves several steps toprocessprocess, and multiple entities are involved. In Internet emergency calling, where the endpoint is located is"determined"determined using a variety of measurement orwiretracingwire-tracing methods. Endpoints can be"configured"configured with their own location by the access network. In some circumstances, a proxy server can insert location into the signaling on behalf of the endpoint. The location is"mapped"mapped to the URI to send the call to, and the location is"conveyed"conveyed to the PSAP (and other entities) in the signaling. Likewise, we employ Location Configuration Protocols (LCPs), the Location-to-Service Mapping Protocol, and Location Conveyance Protocols for these functions. The Location-to-Service Translation protocol [RFC5222] is the Location Mapping Protocol defined by the IETF. 6.1. Types oflocation informationLocation Information There are several forms of location. All IETF location configuration and location conveyance protocols support both civic and geospatial (geo) forms. The civic forms include both postal and jurisdictional fields. A cell tower/sector can be represented as a point (geo or civic) or polygon. Endpoints,Intermediate Devicesintermediate devices, andService Providersservice providers receiving other forms of location representation MUST map them into either a geo or civic for use in emergency calls.ED-12/INT-1/SP-10ED-12/INT-1/SP-10: Endpoints,Intermediate Devicesintermediate devices, andService Providersservice providers MUST be prepared to handle location represented in either civic or geo form.ED-13/INT-2/SP-11/AN-2ED-13/INT-2/SP-11/AN-2: Entities MUST NOT convert (civic to geo or geo to civic) from the form of location that the determination mechanism (see SectionSection6.2) supplied prior to receipt by the PSAP. 6.2. Location DeterminationED-14/INT-3/AN-3ED-14/INT-3/AN-3: Any location determination mechanism MAY be used, provided the accuracy of the location meets local requirements. 6.2.1.User-entered location information ED-15/INT-4/AN-4User-Entered Location Information ED-15/INT-4/AN-4: Devices, intermediateDevicesdevices, and/or access networks SHOULD support a manual method to override the location the access network determines. When the override location is supplied in civic form, it MUST be possible for the resultant Presence Information Data Format-Location Object (PIDF-LO) received at the PSAP to contain any of the elements specified in [RFC4119] and [RFC5139]. 6.2.2. Accessnetwork "wire database" location information AN-5Network "Wire Database" Location Information AN-5: Access networks supporting copper,fiberfiber, or otherhard wiredhard-wired IP packetserviceservices SHOULD support location configuration. If the network does not support location configuration, it MUST require every device or intermediate device that connects to the network to support end system measured location.AN-6/INT-5AN-6/INT-5: Access networks and intermediate devices providing wire database location information SHOULD provide interior location data (building, floor, room, cubicle) where possible. It is RECOMMENDED that interior location be provided when spaces exceed approximately 650 square meters. See[I-D.ietf-ecrit-framework][RFC6443] Section 6.2.2 for a discussion of how this value was determined.AN-7/INT-6AN-7/INT-6: Access networks and intermediate devices (including enterprise networks)whichthat support intermediate range wireless connections (typically100m100 m or less of range) andwhichthat do not support a more accurate location determination mechanism such astriangulation,triangulation MUST support location configuration where the location of the access point is reflected as the location of the clients of that access point.AN-8/INT-7AN-8/INT-7: Where the access network provides location configuration, intermediate devices MUST either be transparent toit,it or provide an interconnected client for the supported configuration mechanism and a server for a configuration protocol supported by end devices downstream of the intermediate device such that the location provided by the access network is available to clients as if the intermediate device was not in the path. 6.2.3.End-system measured location information ED-16/INT-8End System Measured Location Information ED-16/INT-8: Devices MAY supportend-systemend system measured location. See[I-D.ietf-ecrit-framework][RFC6443] Section 6 for a discussion of accuracy of location.ED-17/INT-9/AN-9ED-17/INT-9/AN-9: Devices that support endpoint measuring of location MUST have at least a coarse location capability (typically<1km<1 km accuracy) for the routing of calls. The location mechanism MAY be a service provided by the access network. 6.2.4.Network-measured location information AN-10Network Measured Location Information AN-10: Access networks MAY providenetwork-measurednetwork measured location determination. Wireless access networks that do not supply network measured location MUST require every device or intermediate device connected to the network to supportend-systemend system measured location. Uncertainty and confidence may be specified by local regulation. Where not specified, uncertainty of less than 100 meters with 95% confidence is RECOMMENDED for dispatch location.AN-11AN-11: Access networks that provide network measured location MUST have at least a coarse location (typically<1km<1 km when not location hiding) capability at all times for the routing of calls.AN-12AN-12: Access networks with a range of <10 meters(e.g.(e.g., personal area networks such asBluetoothBluetooth) MUST provide a location to mobile devices connected to them. The location provided SHOULD be that reported by the upstream access network unless a more accurate mechanism is available. 6.3. Whoadds location, endpointAdds Location? The Endpoint, orproxy ED-18/INT-10the Proxy? ED-18/INT-10: Endpoints SHOULD attempt to configure their own location using the Location Configuration Protocols (LCPs) listed in ED-21.SP-12SP-12: Proxies MAY provide location on behalf of devices if: o The proxy has a relationship with all access networks the device could connect to, and the relationship allows it to obtain location. o The proxy has an identifier, such as an IP address, that can be used by the access network to determine the location of the endpoint, even in the presence of NAT and VPN tunnels that may obscure the identifier between the access network and the service provider.ED-19/INT-11/SP-13ED-19/INT-11/SP-13: Where proxies provide location on behalf of endpoints, the service provider MUST ensure that either the end device is provided with the local dial strings for its current location (where the end device recognizes dialstrings),strings) or the service provider proxy MUST detect the appropriate local dial strings at the time of the call. 6.4. Location andreferencesReferences tolocation ED-20/INT-12Location ED-20/INT-12: Devices SHOULD be able to accept and forwardlocation by valuelocation- by-value orby reference.location-by-reference. An end device that receiveslocation by referencelocation-by-reference (and does not also get the corresponding value) MUST be able to perform a dereference operation to obtain a value. 6.5. Endsystem location configurationSystem Location Configuration Obtaining location from the access network may be preferable even if the device can measure its own location, especially indoors where most measurement mechanisms are not accurate enough.This sectionsThe requirements listed in this section do not apply to devices that can accurately measure their own location.ED-21/INT-13ED-21/INT-13: Devices MUST support both the Dynamic Host Configuration Protocol (DHCP) location options[RFC4776],[RFC4776] [RFC6225] andHTTP EnabledHTTP-Enabled Location Delivery (HELD) [RFC5985]. When devices deploy a specific access network interface for which location configuration mechanisms such as Link Layer Discovery Protocol - Media Endpoint Discovery (LLDP-MED) [LLDP-MED] or 802.11v are specified, the device SHOULD support the additional respective access network specific location configuration mechanism.AN-13/INT-14AN-13/INT-14: The access network MUST support either DHCP location options or HELD. The access network SHOULD support other location configuration technologies that are specific to the type of access network.AN-14/INT-15AN-14/INT-15: Where a router is employed between a LAN and WAN in a small (less than approximately 650 square meters) area, the router MUST be transparent to the location provided by the WAN to the LAN. This may mean the router must obtain location as a client from theWAN,WAN and supply an LCP server to the LAN with the location it obtains. Where the area is larger, the LAN MUST have a location configuration mechanism satisfying the requirements of this document.ED-22/INT-16ED-22/INT-16: Endpoints SHOULD try all LCPs supported by the device in any order or in parallel. The first one that succeeds in supplying location MUST be used.AN-15/INT-17AN-15/INT-17: Access networks that support more than one LCP MUST reply with the same location information (within the limits of the data format for the specific LCP) for all LCPs it supports.ED-23/INT-18/SP-14ED-23/INT-18/SP-14: When HELD is the LCP, the request MUST specify a value of "emergencyRouting" for the "responseTime" parameter and use the resulting location for routing. If a value for dispatch location will be sent, another request with the "responseTime" parameter set to "emergencyDispatch" must be completed, with the result sent for dispatch purposes.ED-24ED-24: Where the operating system supporting application programswhichthat need location for emergency calls does not allow access to Layer 2 and Layer 3 functions necessary for a client application to use DHCP location options and/or other location technologies that are specific to the type of access network, the operating system MUST provide a published API conforming to ED-12 through ED-23 and ED-25 through ED-32. It is RECOMMENDED that all operating systems provide such an API. 6.6. Whenlocation should be configuredLocation Should Be Configured If an endpoint is manually configured, the requirements in this section are not applicable.ED-25/INT-19ED-25/INT-19: Endpoints SHOULD obtain location immediately after obtaining local network configuration information.ED-26/INT-20ED-26/INT-20: If the device is configured to use DHCP forbootstrapping,bootstrapping and does not use its own measurement to determine location, it MUST include both options for location acquisition (civic and geodetic), the option for LIS discovery, and the option for LoST discovery as defined in [RFC4776], [RFC6225],[RFC5986][RFC5986], and[RFC5223]. ED-27/INT-21[RFC5223], respectively. ED-27/INT-21: If the device sends a DHCPINFORM message, it MUST include both options for location acquisition (civic and geodetic), the option for LIS discovery, and the option for LoST discovery as defined in [RFC4776], [RFC6225],[RFC5986][RFC5986], and[RFC5223]. ED-28/INT-22[RFC5223], respectively. ED-28/INT-22: To minimize the effects of VPNs that do not allow packets to be sent via the native hardware interface rather than via the VPN tunnel, location configuration SHOULD be attempted before such tunnels are established.ED-29/INT-23ED-29/INT-23: Softwarewhichthat uses LCPs SHOULD locate and use the actual hardware network interface rather than a VPN tunnel interface to direct LCP requests to the LIS in the actual access network.AN-16AN-16: Network administrators MUST take care in assigning IP addresses such that VPN address assignments can be distinguished from local devices (by subnet choice, for example), and LISs SHOULD NOT attempt to provide location to addresses that arrive via VPN connections unlessitthey can accurately determine the location for such addresses.AN-17AN-17: Placement of NAT devices where an LCP uses an IP address for an identifier SHOULD consider the effect of the NAT on the LCP. The address used to query the LIS MUST be able to correctly identify the record in the LIS representing the location of the queryingdevice ED-30/INT-24device. ED-30/INT-24: For deviceswhichthat are not expected to change location, refreshing location on the order of once per day is RECOMMENDED.ED-31/INT-25ED-31/INT-25: For deviceswhichthat roam, refresh of location information SHOULD be more frequent, with the frequency related to the mobility of the device and the ability of the access network to support the refresh operation. If the device detects a link state change that might indicate having moved, forexampleexample, when it changes access points, the device SHOULD refresh its location.ED-32/INT-26/AN-18ED-32/INT-26/AN-18: It is RECOMMENDED that location determination not take longer than 250 ms to obtain routinglocationlocation, and systems SHOULD be designed such that the typical response time is under 100 ms. However, as much as 3 seconds to obtain routing location MAY be tolerated if location accuracy can be substantially improved over what can be obtained in 250 ms. 6.7. Conveyinglocation ED-33/SP-15Location ED-33/SP-15: Location sent between SIP entities MUST be conveyed using[I-D.ietf-sipcore-location-conveyance].the extension described in [RFC6442]. 6.8. Locationupdates ED-34/AN-19Updates ED-34/AN-19: Where the absolute location or the accuracy of location of the endpoint may change between the time the call is received at the PSAP and the time dispatch is completed, location update mechanisms MUST be implemented and used.ED-35/AN-20ED-35/AN-20: Mobile devices MUST be provided with a mechanism to get repeated location updates to track the motion of the device during the complete processing of the call.ED-36/AN-21ED-36/AN-21: The LIS SHOULD provide a location referencewhichthat permits a subscription with appropriate filtering.ED-37/AN-22ED-37/AN-22: For calls sent with location-by-reference, with a SIP orSIPSSession Initiation Protocol Secure (SIPS) scheme, the server resolving the reference MUST support a SUBSCRIBE[RFC3265][RFC6665] to the presence event [RFC3856]. For other location-by-reference schemes that do not support subscription, the PSAP will have to repeatedly dereference the URI to determine if the device moved.ED-38ED-38: If location was sent byvalue,value and the endpoint gets an updated location, it MUST send the updated location to the PSAP via a SIPre- INVITEre-INVITE or UPDATE request. Such updates SHOULD be limited to no more than one update every 10 seconds, a value selected to keep the load on a large PSAP manageable, and yet provide sufficient indication to the PSAP of motion. 6.9. Multiplelocations ED-39/SP-16Locations ED-39/SP-16: If the LIS has more than one location for anendpointendpoint, it MUST conform to the rules in Section 3 of[RFC5491] ED-40[RFC5491]. ED-40: If an endpoint has more than one location available to it, it MUST choose one location to route the call towards the PSAP. If multiple locations are in a single Presence Information Data Format (PIDF), the procedures in [RFC5491] MUST be followed. If the endpoint has multiplePIDFs,PIDFs and has no reasonable basis to choose from among them, a random choice is acceptable.SP-17SP-17: If a proxy inserts location on behalf of anendpoint,endpoint and it has multiple locations available for theendpointendpoint, it MUST choose one location to use to route the call towards the PSAP. If multiple locations are in a single PIDF, the procedures in [RFC5491] MUST be followed. If the proxy has multiplePIDFs,PIDFs and has no reasonable basis to choose from among them, a random choice is acceptable.SP-18SP-18: If a proxy is attempting to insert location but the endpoint conveyed a location to it, the proxy MUST use the endpoint's location for routing in the initial INVITE and MUST convey that location towards the PSAP. It MAY also include what it believes the location to be in a separate Geolocation header.SP-19SP-19: All location objects received by a proxy MUST be delivered to the PSAP.ED-41/SP-20ED-41/SP-20: Location objects MUST be created with information about the method by which the location was determined, such as GPS, manually entered, or based on access network topology included in aPIDF- LOPIDF-LO "method" element. In addition, the source of the location information MUST be included in a PIDF-LO "provided-by" element.ED-42/SP-21ED-42/SP-21: A location with a method of "derived" MUST NOT be used unless no other location is available. 6.10. Locationvalidation AN-23Validation AN-23: A LIS SHOULD perform location validation of civic locations via LoST before entering a location in its database.ED-44ED-43: Endpoints SHOULD validate civic locations when they receive them from their LCP. Validation SHOULD be performed in conjunction with the LoST route query to minimize load on the LoST server. 6.11. Defaultlocation AN-24Location AN-24: When the access network cannot determine the actual location of the caller, it MUST supply a default location. The default SHOULD be chosen to be as close to the probable location of the device as the network can determine. See[I-D.ietf-ecrit-framework] SP-22[RFC6443]. SP-22: Proxies handling emergency calls MUST insert a default location in the INVITE if the incoming INVITE does not contain a location and the proxy does not have a method for obtaining a better location.AN-25/SP-23AN-25/SP-23: Default locations MUST be marked withmethod=Defaultmethod=Default, and the proxy MUST be identified inprovided-by element of the PIDF-LO.a PIDF-LO "provided-by" element. 6.12. Otherlocation considerations ED-45Location Considerations ED-44: If the LCP does not return location in the form of a PIDF-LO [RFC4119], the endpoint MUST map the location information it receives from the configuration protocol to a PIDF-LO.ED-46/AN-26ED-45/AN-26: To prevent against spoofing of the DHCP server, entities implementing DHCP for location configuration SHOULD use[RFC3118],DHCPv4 message authentication [RFC3118] or DHCPv6 message authentication [RFC3315], although the difficulty in providing appropriate credentials is significant.ED-47ED-46: If S/MIME [RFC5751] is used, the INVITE message MUST provide enough information unencrypted for intermediate proxies to route the call based on the location information included. This would include the Geolocationheader,header and any bodies containing location information. Use of S/MIME with emergency calls is NOT RECOMMENDED for this reason.ED-48/SP-24 TLSED-47/SP-24: Transport Layer Security (TLS) [RFC5746] MUST be used to protect location (but see Section 9.1). All SIP implementations of this specification MUST support TLS. 7. LIS and LoST DiscoveryED-49ED-48: Endpoints MUST support one or more mechanisms that allow them to determine their public IP address, for example,STUNSession Traversal Utilities for NAT (STUN) [RFC5389].ED-50ED-49: Endpoints MUST support LIS discovery as described in[RFC5986],[RFC5986] andtheLoST discovery as described in [RFC5223].ED-51ED-50: The device MUST have a configurable default LoST server parameter.ED-52ED-51: DHCP LoST discovery MUST be used, if available, in preference to configured LoST servers. That is, the endpoint MUST send queries to this LoST server first, using other LoST servers only if these queries fail.AN-27AN-27: Access networkswhichthat support DHCP MUST implement the LIS and LoST discovery options in their DHCP servers and return suitable server addresses as appropriate. 8. Routing thecallCall to the PSAPED-53ED-52: Endpointswhothat obtain their own location SHOULD perform LoST mapping to the PSAP URI.ED-54ED-53: Mapping SHOULD be performed at boot time and whenever a location changes beyond the service boundary obtained from a prior LoST mappingoperationoperation, or when the time-to-live value of that response has expired. The value MUST be cached for possible later use.ED-55ED-54: The endpoint MUST attempt to update its location at the time of an emergency call. If it cannot obtain a new location quickly (see Section 6), it MUST use the cached value.ED-56ED-55: The endpoint SHOULD attempt to update the LoST mapping at the time of an emergency call. If it cannot obtain a new mapping quickly, it MUST use the cached value. If the device cannot update the LoST mapping and does not have a cached value, it MUST signal an emergency call without a Route header containing a PSAP URI.SP-25SP-25: Networks MUST be designed so that at least one proxy in the outbound path will recognize emergency calls with a Request URI of the service URN in the "sos" tree. An endpoint places a service URN in the Request URI to indicate that the endpoint understood the call was an emergency call. A proxy that processes such a call looks for the presence of a SIP Route header field with a URI of a PSAP.AbsenceThe absence of such a Route header indicates that the endpoint was unable to invokeLoSTLoST, and the proxy MUST perform the LoST mapping and insert a Route header field with the URI obtained.SP-26SP-26: To deal with old user agents that predate this specification and with endpoints that do not have access to their own location data, a proxy that recognizes a call as an emergency call that is not marked as such (see Section 5) MUST also perform this mapping, with the best location it has available for the endpoint. The resulting PSAP URI would be placed in a Route header with the service URN in the Request URI.SP-27SP-27: Proxy servers performing mapping SHOULD use location obtained from the access network for the mapping. If no location is available, a default location (see Section 6.11) MUST be supplied.SP-28SP-28: A proxy serverwhichthat attempts mapping and fails to get a mapping MUST provide a default mapping. A suitable default mapping would be the mapping obtained previously for the default location appropriate for the caller.ED-57/SP-29ED-56/SP-29: [RFC3261] and [RFC3263] procedures MUST be used to route an emergency call towards the PSAP's URI. 9. Signaling ofemergency callsEmergency Calls 9.1. Use of TLSED-58/SP-30ED-57/SP-30: TLS is the primary mechanism used to secure the signaling for emergency calls. IPsec [RFC4301] MAY be used instead of TLS for any hop. Either TLS orIPSECIPsec MUST be used when attempting to signal an emergency call.ED-59/SP-31ED-58/SP-31: If TLS session establishment is notavailable,available or fails, the call MUST be retried without TLS.ED-60/SP-32ED-59/SP-32: Following the procedures described in [RFC5626] is RECOMMENDED to maintain persistent TLS connections between entities when one of theentityentities is an endpoint. Persistent TLS connection between proxies is RECOMMENDED using any suitable mechanism.ED-61/AN-28ED-60/AN-28: TLS SHOULD be used when attempting to retrieve location (configuration or dereferencing) with HELD. The use of the mechanism described in [RFC5077] is RECOMMENDED to minimize the time to establish TLS sessions without keeping server-side state. IPsec MAY be used instead of TLS.ED-62/AN-29ED-61/AN-29: When TLS session establishment fails, the location retrieval MUST be retried without TLS. 9.2. SIPsignaling requirementsSignaling Requirements for User AgentsED-63ED-62: The initial SIP signaling method is an INVITE request: 1. The Request URI SHOULD be the service URN in the "sos" tree. If the device does not interpret local dial strings, theRequest- URIRequest-URI MUST be a dial string URI [RFC4967] with the dialed digits. 2. The To header field SHOULD be a service URN in the "sos" tree. If the device does not interpret local dial strings, the To: MUST be a dial string URI with the dialed digits. 3. The From header field SHOULD contain theAoRaddress of record (AoR) of the caller. 4. A Route header field SHOULD be present with a PSAP URI obtained from LoST (see Section 8). If the device does not interpret dialplans,plans or was unable to obtain a route from a LoST server, no such Route header field will be present. 5. A Contact header field MUST be globally routable, forexampleexample, aGRUUGlobally Routable User Agent URI (GRUU) [RFC5627], and be valid for several minutes following the termination of the call, provided that theUACUser Agent Client (UAC) remains registered with the same registrar, to permit an immediatecall- backcallback to the specific devicewhichthat placed the emergency call. It is acceptable if the UAC inserts a locally routable URI and a subsequentB2BUAback-to-back user agent (B2BUA) maps that to a globally routable URI. 6. Other header fields MAY be included as per normal SIP behavior. 7. If a geolocation URI is included in the INVITE, a Supported header field MUST be included with a 'geolocation-sip' or 'geolocation-http" option tag, asappropriate. [I-D.ietf-sipcore-location-conveyance].appropriate [RFC6442]. 8. If a device understands the SIP location conveyance[I-D.ietf-sipcore-location-conveyance][RFC6442] extension and has its location available, it MUST include location as eitherby-value, by-referencelocation-by-value or location-by-reference, orboth.both, according to the rules within RFC 6442. 9.AAn SDP offer SHOULD be included in the INVITE. If voice issupportedsupported, the offer SHOULD include the G.711codec,codec; see Section 14. As PSAPs may support a wide range of media types and codecs, sending an offerless INVITE may result in a lengthy returnoffer,offer but is permitted. Cautions in [RFC3261] on offerless INVITEs should be considered before such use. 10. If the device includes location-by-value, theUAuser agent (UA) MUST support multipart message bodies, since SDP will likely be also in the INVITE. 9.3. SIPsignaling requirementsSignaling Requirements forproxy servers SP-33 SIPProxy Servers SP-33: SIP proxy servers processing emergency calls: 1. If the proxy interprets dial plans on behalf of user agents, the proxy MUST look for the local emergency dial string at the location of the end device and MAY look for the home dial string. If it finds it, the proxy MUST: * Insert a Geolocation header field. Location-by-reference MUST be used because proxiesmustare not allowed to insert bodies. * Insert the Geolocation-Routing header with appropriateparameters .parameters. * Map the location to a PSAP URI using LoST. * Add a Route header with the PSAP URI. * Replace theRequest-URI (whichRequest-URI, which was the dialstring)string, with the service URN appropriate for the emergency dial string. * Route the call using normal SIP routing mechanisms. 2. If the proxy recognizes the service URN in the RequestURI,URI and does not find a Route header, it MUST query a LoST server immediately. If a location was provided (which should be the case), the proxy uses that location to query LoST. The proxy may have to dereference alocation by referencelocation-by-reference to get a value. If a location is notpresent,present and the proxy can query a LISwhichthat has the location of theUAUA, it MUST do so. If no location ispresent,present and the proxy does not have access to a LISwhichthat could provide location, the proxy MUST supply a default location(See(see Section 6.11). The location (in the signaling, obtained from a LIS, or default) MUST be used in a query to LoST with the service URN received with the call. The resulting URI MUST be placed in a Route header added to the call. 3. The proxy MAY add a Geolocation header field. Such an additional location SHOULD NOT be used for routing; the location provided by the UA should be used. 4. Either a P-Asserted-Identity [RFC3325] or an Identity header field [RFC4474], or both, SHOULD be included to identify the sender. For serviceswhichthat must support emergency calls from unauthenticated devices, valid identity may not be available. Proxies encountering a P-Asserted-Identity will need to pass the header to the PSAP, which is in a different domain. [RFC3325] requires a "spec(T)" to determine what happens if either the "id" privacyservice,service or a Privacy header is present and requests privacy. In the absence of another spec(T), such proxies should pass the header unmodified if and only if the connection between the proxy and the PSAP is, as far as the proxy can determine, protected by TLS with mutual authentication using keys reliably known by the parties, encrypted with no less strength thanAESAES, and the local regulations governing the PSAP do nototherwise specify.specify otherwise. 5. Proxies SHOULD NOT return a 424 error.ItThey should process the INVITE as bestas itthey can. 6. Proxies SHOULD NOT obey a Geolocation-Routing value of "no" or a missing value ifthe proxythey must query LoST to obtain a route. Emergency calls are always routed by location. 10.Call backs ED-64/SP-34Callbacks ED-63/SP-34: DevicesdeviceSHOULD have a globally routable URI in aContact:Contact header fieldwhichthat remains valid for several minutes past the time the original call containing the URIcompletescompletes, unless the device registration expires and is not renewed.SP-35 Call backsSP-35: Callbacks to theContact:Contact header URI received within 30 minutes of an emergency call must reach the device regardless of call features (e.g., do not disturb) or services (e.g., call forwarding) that would normally cause the call to be routed to some other entity.SP-36SP-36: Devices MUST have a persistentAORAoR URI either in aP-Asserted- IdentityP-Asserted-Identity header field or From protected by an Identity header field suitable for returning a callsome timesometime after the original call. Such acall backcallback would not necessarily reach the device that originally placed the call. 11.Mid-call behavior ED-65/SP-37Mid-Call Behavior ED-64/SP-37: During the course of an emergency call,devicesPSAPs andproxies MUST initiate aresponders may need to transfer the call to some other entity. The request for such a transferupon receipt ofis signaled by a REFER request within the dialog with method=INVITE andthe Referred-bya Refer-To header field[RFC3515] in that request.[RFC3515]. Devices MUST react to such a transfer request with the appropriate INVITE. 12. Calltermination ED-66Termination ED-65: Normal [RFC3261] procedures for termination MUST be used for termination of the call. 13. Disabling offeatures ED-67/SP-38Features ED-66/SP-38: UserAgentsagents and proxies MUST disable features that will interrupt an ongoing emergency call, such as: o CallWaitingwaiting o CallTransfertransfer oThree Way CallThree-way call o Hold o OutboundCall Blockingcall blocking when an emergency call is established, but seeED-66ED-65 with respect toCall Waiting.call waiting. Also seeED-74ED-73 in Section 14.ED-68/SP-39ED-67/SP-39: The emergency dial strings SHOULD NOT be permitted inCall Forwardcall forward numbers or speed dial lists.ED-69/SP-40ED-68/SP-40: TheUser Agentuser agent andProxiesproxies MUST disable call featureswhichthat would interfere with the ability ofcall backscallbacks from the PSAP to becompletedcompleted, such as: o DoNot Disturbnot disturb o CallForwardforward (all kinds) These features SHOULD be disabled for approximately 30 minutes following termination of an emergency call.ED-70 Call backsED-69: Callbacks SHOULD be determined by retaining the domain of the PSAPwhichthat answers an outgoing emergency call and instantiating a timerwhichthat starts when the call is terminated. If a call is received from the same domain and within the timer period, and it is sent to theContact:URI in a Contact header or the AoR used in the emergency call, then it should be assumed to be acall back.callback. The suggested timer period is 5 minutes. The mechanism described in [RFC4916]maycan be used by the PSAP to inform the endpoint of thedomain of the PSAP.PSAP's domain. Recognizing acall backcallback from the domain of the PSAP will not always work, and further standardization will be required to give the endpoint the ability to recognize acall back.callback. 14. MediaED-71ED-70: Endpoints MUST send and receive media streams on RTP [RFC3550].ED-72ED-71: Normal SIP offer/answer [RFC3264] negotiations MUST be used to agree on the media streams to be used.ED-73/SP-41ED-72/SP-41: G.711A lawA-law (andmu Lawmu-law if they are intended to be used in North America) encoded voice as described in [RFC3551] MUST be supported. If the endpoint cannot support G.711, a transcoder MUST be used so that the offer received at the PSAP contains G.711. It is desirable to include wideband codecs such as G.722 andAMR-WBAdaptive Multi-Rate - WideBand (AMR-WB) in the offer. PSAPs SHOULD support narrowband codecs common on endpoints in their area to avoid transcoding.ED-74ED-73: Silence suppression (Voice Activity Detection methods) MUST NOT be used on emergency calls. PSAP call takers sometimes get information on what is happening in the background to determine how to process the call.ED-75ED-74: Endpoints supporting Instant Messaging (IM) MUST support either [RFC3428]andor [RFC4975].ED-76ED-75: Endpoints supporting real-time text MUSTusecomply with [RFC4103]. The expectations for emergency service support for the real-time text medium are described in[RFC5194],[RFC5194] Section 7.1.ED-77ED-76: Endpoints supporting video MUST support H.264 per [RFC6184]. 15. TestingED-78ED-77: INVITE requests to a service URN starting with "test."indicatesindicate a request for an automatedtest. Fortest, for example, "urn:service:test.sos.fire". As in standard SIP, a 200 (OK) response indicates that the address was recognized and a 404(Not(not found) that it was not. A 486(Busy Here)(busy here) MUST be returned if the test service is busy, and a 404(Not(not found) MUST be returned if the PSAP does not support the test mechanism.ED-79ED-78: In its response to the test, the PSAP MAY include a text body (text/plain) indicating the identity of the PSAP, the requested service, and the location reported with the call. For the latter, the PSAP SHOULD return location-by-value even if the original location delivered with the test wasby-reference.location-by-reference. If thelocation- by-referencelocation-by-reference wassupplied,supplied and the dereference requires credentials, the PSAP SHOULD use credentials supplied by the LIS for test purposes. This alerts the LIS that the dereference is not for an actual emergencycallcall, andlocation hidingtherefore location-hiding techniques, if they are being used, may be employed for this dereference. Use of SIPS for the request would assure that the response containing the location is keptprivate ED-80private. ED-79: A PSAP accepting a test call SHOULD accept a media loopback [RFC6849] test[I-D.ietf-mmusic-media-loopback]and SHOULD support the"rtp- pkt-loopback""rtp-pkt-loopback" and"rtp-start-loopback""rtp-media-loopback" options. The user agent would specify a loopback attribute of "loopback-source", the PSAP being the mirror. UserAgentsagents should expect the PSAP to loop back no more than 3 packets of each media type accepted (which limits the duration of the test), after which the PSAP would normally send BYE.ED-81ED-80: User agents SHOULD perform a full call test, including media loopback, after a disconnect and subsequent change in IP address not due to a reboot. After an initial test, a full test SHOULD be repeated approximately every 30 days with a random interval.ED-82ED-81: User agents MUST NOT place a test call immediately after booting. If the IP address changes after booting, the endpoint should wait a random amount of time (in perhaps a30 minute30-minute period, sufficient for anyavalanche restartavalanche-restart event to complete) and then test.ED-83ED-82: PSAPs MAY refuse repeated requests for test from the same device in a short period of time. Any refusal is signaled with a 486 (busy here) or 488 (not acceptable here) response. 16. Security Considerations Security considerations for emergency calling have been documented in[RFC5069],[RFC5069] and [RFC6280]. This document suggests that security (TLS or IPsec) be used hop by hop on a SIP call to protect location information, identity, etc. It also suggests that if the attempt to create a security associationfails,fails the call be retried without the security. It's more important to get an emergency call through than to protect the data; indeed, in many jurisdictions privacy is explicitly waived when making emergency calls. Placing a call without security may reveal user information, including location. The alternative--- failing the call if security cannot beestablished,established -- is considered unacceptable. 17. IANA Considerations This document registers service URNs in the Service URN Labels registry per [RFC5031] for testing. 17.1.test service urnTest Service URN A new entry in the URN Service Label registryishas been added. The new service is "test", the reference is this document, and the description is"self test"."self-test". 17.2. 'test' Subregistry A newSubregistry is created, the "'test' Sub-Service.subregistry has been created: 'test' Sub-Services. The registration process is Expert Review per [RFC5226]. The expert review should consider that the entries in this registry nominally track the entries in thesos sub registry,'sos' subregistry, although it is not required that every entry insos'sos' have an entry intest,'test', and it is possible that entries in thetest sub-registry'test' subregistry may not necessarily be in thesos sub registry.'sos' subregistry. For example, testing of non-emergency URNs may be allowed. TheReferencereference is this document. The initial content of the subregistry is: Service Reference Description-------------------------------------------------------------------------------------------------------------------------------------- test.sos[this document]RFC 6881 test for sos test.sos.ambulance[this document]RFC 6881 test for sos.ambulance test.sos.animal-control[this document]RFC 6881 test for sos.animal-control test.sos.fire[this document]RFC 6881 test for sos.fire test.sos.gas[this document]RFC 6881 test for sos.gas test.sos.marine[this document]RFC 6881 test for sos.marine test.sos.mountain[this document]RFC 6881 test for sos.mountain test.sos.physician[this document]RFC 6881 test for sos.physician test.sos.poison[this document]RFC 6881 test for sos.poison test.sos.police[this document]RFC 6881 test for sos.police 18. AcknowledgementsWorkWorking group members participating in the creation and review of this document include Hannes Tschofenig, Ted Hardie, Marc Linsner, Roger Marshall, Stu Goldman, Shida Schubert, James Winterbottom, Barbara Stark, RichardBarnesBarnes, and Peter Blatherwick. 19. References 19.1. Normative References[I-D.ietf-mmusic-media-loopback] Sivachelvan, C., Venna, N., Jones, P., Stratton, N., Roychowdhury, A., and K. Hedayat, "An Extension to the Session Description Protocol (SDP) for Media Loopback", draft-ietf-mmusic-media-loopback-15 (work in progress), March 2011. [I-D.ietf-sipcore-location-conveyance] Polk, J., Rosen, B., and J. Peterson, "Location Conveyance for the Session Initiation Protocol", draft-ietf-sipcore-location-conveyance-09 (work in progress), September 2011.[LLDP-MED]TIA, "ANSI/TIA-1057 LinkANSI/TIA, "Link Layer Discovery Protocol - Media EndpointDiscovery".Discovery", TIA Standard, TIA-1057, April 2006. [RFC2119] Bradner, S., "Key words for use in RFCs to Indicate Requirement Levels", BCP 14, RFC 2119, March 1997. [RFC3118] Droms, R. and W. Arbaugh, "Authentication for DHCP Messages", RFC 3118, June 2001. [RFC3261] Rosenberg, J., Schulzrinne, H., Camarillo, G., Johnston, A., Peterson, J., Sparks, R., Handley, M., and E. Schooler, "SIP: Session Initiation Protocol", RFC 3261, June 2002. [RFC3263] Rosenberg, J. and H. Schulzrinne, "Session Initiation Protocol (SIP): Locating SIP Servers", RFC 3263, June 2002. [RFC3264] Rosenberg, J. and H. Schulzrinne, "An Offer/Answer Model with Session Description Protocol (SDP)", RFC 3264, June 2002.[RFC3265] Roach, A., "Session Initiation[RFC3315] Droms, R., Bound, J., Volz, B., Lemon, T., Perkins, C., and M. Carney, "Dynamic Host Configuration Protocol(SIP)-Specific Event Notification",for IPv6 (DHCPv6)", RFC3265, June 2002.3315, July 2003. [RFC3428] Campbell, B., Rosenberg, J., Schulzrinne, H., Huitema, C., and D. Gurle, "Session Initiation Protocol (SIP) Extension for Instant Messaging", RFC 3428, December 2002. [RFC3515] Sparks, R., "The Session Initiation Protocol (SIP) Refer Method", RFC 3515, April 2003. [RFC3550] Schulzrinne, H., Casner, S., Frederick, R., and V. Jacobson, "RTP: A Transport Protocol for Real-Time Applications", STD 64, RFC 3550, July 2003. [RFC3551] Schulzrinne, H. and S. Casner, "RTP Profile for Audio and Video Conferences with Minimal Control", STD 65, RFC 3551, July 2003. [RFC3856] Rosenberg, J., "A Presence Event Package for the Session Initiation Protocol (SIP)", RFC 3856, August 2004. [RFC3966] Schulzrinne, H., "The tel URI for Telephone Numbers", RFC 3966, December 2004. [RFC4103] Hellstrom, G. and P. Jones, "RTP Payload for Text Conversation", RFC 4103, June 2005. [RFC4119] Peterson, J., "A Presence-based GEOPRIV Location Object Format", RFC 4119, December 2005. [RFC4301] Kent, S. and K. Seo, "Security Architecture for the Internet Protocol", RFC 4301, December 2005. [RFC4474] Peterson, J. and C. Jennings, "Enhancements for Authenticated Identity Management in the Session Initiation Protocol (SIP)", RFC 4474, August 2006. [RFC4776] Schulzrinne, H., "Dynamic Host Configuration Protocol (DHCPv4 and DHCPv6) Option for Civic Addresses Configuration Information", RFC 4776, November 2006. [RFC4916] Elwell, J., "Connected Identity in the Session Initiation Protocol (SIP)", RFC 4916, June 2007. [RFC4967] Rosen, B., "Dial String Parameter for the Session Initiation Protocol Uniform Resource Identifier", RFC 4967, July 2007. [RFC4975] Campbell, B., Mahy, R., and C. Jennings, "The Message Session Relay Protocol (MSRP)", RFC 4975, September 2007. [RFC5031] Schulzrinne, H., "A Uniform Resource Name (URN) for Emergency and Other Well-Known Services", RFC 5031, January 2008. [RFC5139] Thomson, M. and J. Winterbottom, "Revised Civic Location Format for Presence Information Data Format Location Object (PIDF-LO)", RFC 5139, February 2008. [RFC5222] Hardie, T., Newton, A., Schulzrinne, H., and H. Tschofenig, "LoST: A Location-to-Service Translation Protocol", RFC 5222, August 2008. [RFC5223] Schulzrinne, H., Polk, J., and H. Tschofenig, "Discovering Location-to-Service Translation (LoST) Servers Using the Dynamic Host Configuration Protocol (DHCP)", RFC 5223, August 2008. [RFC5226] Narten, T. and H. Alvestrand, "Guidelines for Writing an IANA Considerations Section in RFCs", BCP 26, RFC 5226, May 2008. [RFC5389] Rosenberg, J., Mahy, R., Matthews, P., and D. Wing, "Session Traversal Utilities for NAT (STUN)", RFC 5389, October 2008. [RFC5491] Winterbottom, J., Thomson, M., and H. Tschofenig, "GEOPRIV Presence Information Data Format Location Object (PIDF-LO) Usage Clarification, Considerations, and Recommendations", RFC 5491, March 2009. [RFC5626] Jennings, C., Mahy, R., and F. Audet, "Managing Client- Initiated Connections in the Session Initiation Protocol (SIP)", RFC 5626, October 2009. [RFC5627] Rosenberg, J., "Obtaining and Using Globally Routable User Agent URIs (GRUUs) in the Session Initiation Protocol (SIP)", RFC 5627, October 2009. [RFC5746] Rescorla, E., Ray, M., Dispensa, S., and N. Oskov, "Transport Layer Security (TLS) Renegotiation Indication Extension", RFC 5746, February 2010. [RFC5751] Ramsdell, B. and S. Turner, "Secure/Multipurpose Internet Mail Extensions (S/MIME) Version 3.2 Message Specification", RFC 5751, January 2010. [RFC5985] Barnes, M., "HTTP-Enabled Location Delivery (HELD)", RFC 5985, September 2010. [RFC5986] Thomson, M. and J. Winterbottom, "Discovering the Local Location Information Server (LIS)", RFC 5986, September 2010. [RFC6184] Wang, Y., Even, R., Kristensen, T., and R. Jesup, "RTP Payload Format for H.264 Video", RFC 6184, May 2011. [RFC6225] Polk, J., Linsner, M., Thomson, M., and B. Aboba, "Dynamic Host Configuration Protocol Options for Coordinate-Based Location Configuration Information", RFC 6225, July 2011.19.2. Informative References [I-D.ietf-ecrit-framework][RFC6442] Polk, J., Rosen, B.,Schulzrinne,and J. Peterson, "Location Conveyance for the Session Initiation Protocol", RFC 6442, December 2011. [RFC6665] Roach, A., "SIP-Specific Event Notification", RFC 6665, July 2012. [RFC6849] Kaplan, H.,Polk, J.,Ed., Hedayat, K., Venna, N., Jones, P., andA. Newton, "FrameworkN. Stratton, "An Extension to the Session Description Protocol (SDP) and Real-time Transport Protocol (RTP) forEmergency Calling using Internet Multimedia", draft-ietf-ecrit-framework-12 (work in progress), October 2010.Media Loopback", RFC 6849, February 2013. 19.2. Informative References [RFC3325] Jennings, C., Peterson, J., and M. Watson, "Private Extensions to the Session Initiation Protocol (SIP) for Asserted Identity within Trusted Networks", RFC 3325, November 2002. [RFC5012] Schulzrinne, H. and R. Marshall, "Requirements for Emergency Context Resolution with Internet Technologies", RFC 5012, January 2008. [RFC5069] Taylor, T., Tschofenig, H., Schulzrinne, H., and M. Shanmugam, "Security Threats and Requirements for Emergency Call Marking and Mapping", RFC 5069, January 2008. [RFC5077] Salowey, J., Zhou, H., Eronen, P., and H. Tschofenig, "Transport Layer Security (TLS) Session Resumption without Server-Side State", RFC 5077, January 2008. [RFC5194] van Wijk, A. and G. Gybels, "Framework for Real-Time Text over IP Using the Session Initiation Protocol (SIP)", RFC 5194, June 2008. [RFC6280] Barnes, R., Lepinski, M., Cooper, A., Morris, J., Tschofenig, H., and H. Schulzrinne, "An Architecture for Location and Location Privacy in Internet Applications", BCP 160, RFC 6280, July 2011. [RFC6443] Rosen, B., Schulzrinne, H., Polk, J., and A. Newton, "Framework for Emergency Calling Using Internet Multimedia", RFC 6443, December 2011. Authors' Addresses Brian Rosen NeuStar 470 Conrad Dr. Mars, PA 16046 USA Phone: +1 724 382 1051Email:EMail: br@brianrosen.net James Polk Cisco Systems 3913 Treemont Circle Colleyville, TX 76034 USA Phone: +1-817-271-3552Email:EMail: jmpolk@cisco.com