DRMP

Diameter Routing Message Priority

Protocol →
Introduced in Rel-13

DRMP is a Diameter protocol attribute that allows a node to assign a priority level to a request, enabling routing agents to perform load balancing, overload control, and priority-based routing.

Category
Protocol
Introduced
Rel-13
Where
Core Network › Evolved Packet Core
Specifications
25 specs
DRMP Description Purpose Related Classification Detected Changes Specifications

Description

Diameter Routing Message Priority (DRMP) is a protocol extension defined in 3GPP to enhance the capabilities of Diameter-based signaling networks, particularly within the IP Multimedia Subsystem (IMS), Evolved Packet Core (EPC), and 5G Core (5GC). It is implemented as an Attribute-Value Pair (AVP) that can be included in Diameter request messages. The DRMP AVP carries an integer value representing the message's priority, with lower numerical values typically indicating higher priority (e.g., 0 for highest priority). The primary function of DRMP is to provide a standardized, in-band signaling mechanism for conveying priority information, allowing Diameter nodes to make more intelligent routing and processing decisions.

Architecturally, DRMP operates within the Diameter base protocol framework (RFC 6733). When a Diameter client or server generates a request (e.g., a Credit-Control-Request (CCR) or an AA-Request (AAR)), it can populate the DRMP AVP based on local policy, the type of service, or subscriber profile. This message is then sent into the Diameter network, often traversing one or more Diameter Routing Agents (DRAs). These intermediate DRAs, which are crucial for scalability and routing in large networks, inspect the DRMP value. Using this information, a DRA can implement priority-aware routing logic. For example, during periods of network congestion or node overload, the DRA can prioritize the forwarding of high-priority messages (like emergency service requests or messages for premium subscribers) while potentially delaying or rejecting lower-priority traffic. This is a key tool for implementing overload and congestion control mechanisms as specified in 3GPP.

The DRMP value influences behavior at multiple points. Beyond routing agents, the destination Diameter server can also use the DRMP to prioritize the order in which it processes incoming requests from its queue. The specifications define procedures for how DRMP values should be generated, forwarded, and potentially modified by trusted nodes. Its introduction formalized what was previously often handled via proprietary or network-local mechanisms, ensuring interoperability between equipment from different vendors in multi-vendor core networks. DRMP is a critical component for achieving carrier-grade reliability and service differentiation in all-IP core networks that rely heavily on Diameter signaling for authentication, authorization, accounting, and policy control.

Purpose & Motivation

DRMP was created to address the challenges of managing signaling load and ensuring service availability in increasingly complex and high-scale Diameter signaling networks. As 3GPP networks evolved to all-IP architectures (IMS, EPC), Diameter became the primary protocol for real-time AAA and policy functions. Without a standardized priority mechanism, all Diameter signaling messages were treated with equal importance by routing agents. This posed a significant problem during signaling storms or node failures, as critical messages (e.g., for emergency calls, handovers, or high-value customers) could be dropped indiscriminately alongside less important traffic, degrading essential services.

The development of DRMP in Release 13 provided a standardized solution to this problem. It was motivated by the need for explicit overload control mechanisms within the Diameter protocol itself. DRMP allows network functions and operators to implement policy-based priority marking. This enables the network to gracefully degrade under load by protecting high-priority sessions and services, a fundamental requirement for telecom-grade resilience. It addressed the limitations of previous ad-hoc approaches and provided a tool for fulfilling regulatory requirements for emergency service support and for implementing commercial service differentiation within the signaling plane.

Classification

Part ofIMS

Release Timeline

Detected Changes Across Releases

from 3GPP Change Requests

Specific changes extracted from the „Change history“ tables of 3GPP specifications (2 CRs across 1 releases). Complements the general historical overview above with the evidence-based evolution of this function.

Rel-15 2 changes

In Release 15, the standardization work focused on correcting the procedures for the Diameter Routing Message Priority (DRMP) function. The specific technical changes involved making necessary corrections to the defined DRMP procedures to ensure proper operation.

  • Correction of DRMP Procedures TS 29.272CR0736
  • Correction of DRMP Procedures TS 29.328CR0607

Explore further

Broader topics and technologies where DRMP plays a role.

Defining Specifications

3GPP specifications that define or reference DRMP, with the latest known release. Sourced from the 3GPP document catalog — see methodology.

SpecificationTitleRelease
TS 23.700 vk00 XR Services Application Enablement Layer Rel-20
TS 24.301 vj60 NAS protocol for Evolved Packet System Rel-19
TS 29.128 vj10 MME/SGSN-SCEF Diameter Interfaces for PDN Interworking Rel-19
TS 29.153 vj00 Ns Reference Point Protocol between SCEF and RCAF Rel-19
TS 29.154 vj00 Nt Reference Point Protocol Rel-19
TS 29.172 vj00 EPC LCS Protocol (ELP) specification Rel-19
TS 29.201 vj00 RESTful Rx Interface for AF-PC Communication Rel-19
TS 29.212 vj00 Gx/Gxx/Sd/St Diameter Protocol Rel-19
TS 29.213 vj20 PCC Signalling Flows and QoS Mapping Rel-19
TS 29.214 vj20 Policy and Charging Control over Rx Rel-19
TS 29.215 vj00 S9 Reference Point Stage 3 Specification Rel-19
TS 29.217 vj00 Policy and Charging Control (PCC) for Np Interface Rel-19
TS 29.219 vj00 Sy Reference Point Stage 3 Specification Rel-19
TS 29.228 vj20 Cx and Dx Interface Signaling Flows Rel-19
TS 29.229 vj10 Diameter Protocol for Cx/Dx Interfaces Rel-19
TS 29.272 vj40 Diameter Interfaces for MME/SGSN Rel-19
TS 29.273 vj10 AAA Protocols for Non-3GPP Access in EPS & 5GS NSWO Rel-19
TS 29.328 vj20 Sh and Dh Interfaces: HSS-AS Interactions Rel-19
TS 29.329 vj10 Diameter Protocol for Sh Interface Rel-19
TS 29.336 vj10 HSS Diameter Interfaces for PDN Interworking Rel-19
TS 29.337 vj00 Diameter T4 Interface for MTC Device Triggering Rel-19
TS 29.338 vj30 Diameter protocols for SMS in MME/5GS Rel-19
TS 29.344 vj00 Diameter-based PC4a interface specification Rel-19
TS 29.345 vj00 Diameter-based PC6/PC7 interfaces for ProSe Rel-19
TS 29.468 vj00 MB2 Reference Point Protocol Definition Rel-19
Patrick Zandl

About the author: Patrick Zandl (b. 1974)

Telecommunications specialist, technology journalist (founder of the Mobil server), and developer who has been running since 2025 — the largest Czech-language resource on AI-assisted programming. Formerly Chief Wizard Architect at Prusa3D and head of development for Turris at CZ.NIC; currently a consultant and instructor on AI implementation in companies.