Deployment Case Where Singapore Gm Server Is Linked With Global Server

2026-03-06 13:22:55
Current Location: Blog > Singapore server

1. overview: why deploy gm servers in singapore

• as an asia-pacific network hub, singapore has rich bandwidth and low latency, making it suitable as a gm (game master/management) or control plane node.
• when facing players in southeast asia and greater china, the common delay from singapore to hong kong/taiwan is 7-20ms, and to southeast asian nodes is 10-30ms.
• enterprises need to consider compliance and computer room selection (such as equinix sg1/sg2, aws ap-southeast-1, google asia-southeast1, etc.).
• the gm server is usually responsible for command distribution, global configuration, log collection and cross-zone management, requiring high availability and low latency.
• this article will provide specific configuration samples, link delay data, linkage architecture and real cases for operation and maintenance reference.

2. physical location and network selection of singapore server

• common computer rooms: equinix sg1/sg2, singtel interconnection, major cloud vendor areas (aws/google/azure, vultr, digitalocean).
• selection recommendation: for the control plane, multi-region private network connection (vpc peering / direct connect) is preferred.
• public network link: it is recommended to have at least 1gbps port, and reserve 3-5gbps or more for peak scenarios, and expand the capacity according to sla.
• latency reference (icmp/udp test): singapore → hong kong 8-12ms, singapore → tokyo 28-40ms, singapore → sydney 60-75ms, singapore → los angeles 150-180ms.
• ip and bgp: it is recommended that important control nodes use anycast/bgp to publish key ips to facilitate global routing optimization.

3. key points of architecture design for global linkage

• architecture layering: global control layer (singapore gm), regional game layer (regional game servers), edge layer (cdn and edge rpc).
• data synchronization: use asynchronous replication + regular full verification, and the control plane uses message queue (kafka/rabbitmq) to distribute instructions.
• dns strategy: use global anycast dns for the main domain name, and use geodns for important subdomains to achieve recent scheduling.
• load balancing: layer4/l7 mixed strategy, regional entrance uses nginx/haproxy for reverse proxy and health check.
• disaster recovery and consistency: after key configurations are written to the singapore master node, synchronization with rpo <= 5s is completed in each region through the multi-active/active-standby strategy (example target).

4. server configuration and specific examples (including tables)

• the following table gives an example configuration of a singapore gm node and three regional servers, including cpu, memory, storage, bandwidth and usage.
• the table shows real example configurations for easy reference in selection and capacity planning.
node vcpu memory storage public network bandwidth use
singapore gm master node 8 vcpus 32gb 500gb nvme 1 gbps (burstable to 5 gbps) control plane, log aggregation, management api
tokyo area service 16 vcpus 64gb 1tb nvme 2 gbps game logic, player connection
western us regional service 32 vcpus 128gb 2tb nvme 5 gbps high concurrent session processing, main database
europe regional server 16 vcpus 64gb 1tb nvme 2 gbps zone load, caching layer
• the table above is an example: actual bandwidth and storage need to be adjusted based on concurrency, player peaks and log volume.
• it is recommended that the production environment performs active-active or active-standby switching (keepalived, consul, etcd) on the gm master node.

5. cdn, domain name resolution and ddos defense strategy

• cdn: it is recommended to use cdn to accelerate static resources. the edge nodes cover asia/the united states and europe, and the cache hit rate target is above 90%.
• domain name: the main domain name uses anycast dns (such as cloudflare, ns1), and geodns to divert players.
• ddos protection: enable waf + traffic cleaning on the control plane and ingress. it is recommended that cloudflare spectrum or the cloud vendor's shield/anti-ddos.
• bandwidth elasticity: to cope with ddos, reserve cleaning bandwidth or use cleaning center access to ensure the stability of real business bandwidth.
• security policy: speed limit, connection threshold, black and white list, rate limit, combined with real-time monitoring (prometheus + grafana + alertmanager).

6. real case: deployment and operation and maintenance data of a game company as a control node in singapore

• background: the company will deploy the gm control plane in singapore aws (ap-southeast-1) in 2024, and regional game servers are distributed in tokyo, west america, and frankfurt.
• traffic and latency: the peak number of simultaneous online players is 500,000, and the peak qps of control instructions is about 12k; the average rtt from singapore to tokyo is 34ms, and the rtt from singapore to the west is 160ms.
• configuration: gm master node uses 8vcpu+32gb, redis cluster (3 nodes, r5.large), three copies of kafka, and logs are stored in elk/opensearch.
• disaster recovery: the regional server uses master-slave database replication, with an rto target of 30 minutes and an rpo target of 5 seconds; cross-region drills and switching tests are conducted regularly.
• effects and lessons learned: singapore gm has reduced authentication and configuration delays for southeast asian users by 10-30%. however, attention should be paid to the impact of trans-pacific link jitter on command distribution in the us region, so a local cache + batch delivery strategy is adopted for the us region to reduce dependence.

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