ECS container network latency
Add a configurable amount of network latency on a specific interface inside a percentage of running ECS tasks (EC2 launch type) for a configurable duration so you can test how the workload behaves whe
ECS container network latency is an AWS chaos fault that adds NETWORK_LATENCY milliseconds of one-way latency on the network interface NETWORK_INTERFACE inside a percentage of running ECS tasks (EC2 launch type) for a configurable duration. The fault uses AWS Systems Manager Run Command on the EC2 host of each selected task and applies the latency inside the affected container, scoped via ECS container metadata.
Use this fault to test how a workload behaves when network latency rises between an ECS task and its dependencies: whether timeouts and retries are sized correctly, whether circuit breakers engage, and whether latency-sensitive features (synchronous calls, streaming) degrade gracefully or fail outright.
Use cases
Run this fault when you want to answer concrete questions like:
Timeout sizing: When the network slows by
NETWORK_LATENCYms, do client timeouts fire correctly without cascading failures?Retry storms: Do retries amplify the latency into an outage, or does an exponential backoff calm the system?
User-perceived latency: Does the application surface user-visible latency increases, and do dashboards reflect them?
Synchronous-call chains: For services with deep synchronous call graphs, does the added latency push end-to-end latency over SLO?
Streaming workloads: Do long-lived streams (gRPC, WebSocket) tolerate the latency change, or do they drop?
Prerequisites
Kubernetes version: 1.21 or later for the chaos infrastructure cluster. Go to What's supported to confirm distribution support.
Target ECS service or cluster:
CLUSTER_NAMEexists inREGIONand uses the EC2 launch type.Container instances are SSM-managed: Every EC2 container instance is registered with AWS Systems Manager.
ECS container metadata enabled.
AWS credentials available: Either an AWS credentials file uploaded as a File Secret in Harness Secret Manager (see Authentication below) or an IAM role for service accounts (IRSA) bound to the chaos infrastructure service account.
IAM permissions granted: The credentials or role include the permissions listed below.
Supported environments
Amazon ECS on EC2 launch type
Supported
Amazon ECS on Fargate launch type
Not supported
Linux container instances
Supported
Windows container instances
Not supported
AWS regions
Supported in every commercial region; pass the region in REGION
Permissions required
The IAM principal that the chaos pod uses (the credentials mounted from the Harness Secret Manager file secret, the IRSA role on the chaos service account, or the role assumed via ASSUME_ROLE_ARN) needs the following AWS actions.
Go to common policy for all AWS faults to use a single superset IAM policy across every AWS fault.
Authentication
The fault supports three credential delivery models. Pick one based on how your chaos infrastructure is deployed.
Harness Secret Manager file secret
Chaos infrastructure runs outside EKS, or you want explicit static credentials
Upload the AWS credentials file as a File Secret in Harness Secret Manager and reference its identifier via AWS_AUTHENTICATION_SECRET
IAM Roles for Service Accounts (IRSA)
Chaos infrastructure runs in EKS and uses an OIDC-bound service account
No tunable changes; the chaos pod inherits the role automatically. Go to AWS IAM integration to set it up
Assume role
The fault needs to act in a different account or with elevated permissions
Set ASSUME_ROLE_ARN to the role ARN; the chaos pod assumes the role on top of its base credentials
When using the Harness Secret Manager method, the contents of the File Secret should be the AWS credentials file in the standard ~/.aws/credentials format:
Upload this file as a File Secret in Harness Secret Manager (Project Setup → Secrets → New File Secret), and pass the secret identifier in AWS_AUTHENTICATION_SECRET when configuring the fault.
Go to AWS named profile for chaos to switch between profiles inside a single credentials file.
Fault tunables
Configure the following fault parameters when you add ECS container network latency to an experiment in Chaos Studio. Defaults are shown for reference.
Required parameters
CLUSTER_NAME
Name of the target ECS cluster.
(required)
REGION
AWS region that hosts the ECS cluster (for example us-east-1).
(required)
Targeting parameters
SERVICE_NAME
Name of the target ECS service. When set, the fault selects TASK_REPLICA_AFFECTED_PERC of the service's running tasks.
""
TASK_REPLICA_AFFECTED_PERC
Percentage of running tasks to affect when SERVICE_NAME is set.
100
Chaos parameters
NETWORK_LATENCY
Amount of one-way latency to inject (in milliseconds).
2000
NETWORK_INTERFACE
Network interface to apply the latency on, inside the container. auto discovers the primary egress interface automatically.
auto
TOTAL_CHAOS_DURATION
Duration of the fault in seconds.
30
INSTALL_DEPENDENCIES
Install the networking tooling on each container instance if missing.
true
DEFAULT_HEALTH_CHECK
When true, the fault runs additional checks against ECS to verify task health.
false
SEQUENCE
Order in which multiple tasks are stressed: parallel issues the rule on all selected tasks at once; serial does so one at a time.
parallel
RAMP_TIME
Wait period in seconds before and after the fault. Go to ramp time to read how it is applied.
0
Authentication
ASSUME_ROLE_ARN
ARN of an IAM role to assume on top of the base credentials. Leave empty to use the base credentials directly.
""
AWS_AUTHENTICATION_SECRET
Identifier of the File Secret in Harness Secret Manager that contains the AWS credentials file. Not required when using IRSA.
""
Tunables that apply to every fault are documented in common tunables for all faults. AWS-specific shared tunables are documented in common AWS fault tunables.
Fault execution in brief
Resolves the running tasks for SERVICE_NAME (or all tasks in CLUSTER_NAME), picks TASK_REPLICA_AFFECTED_PERC of them, and dispatches a network-latency rule via AWS Systems Manager Run Command to the EC2 host of each selected task. The rule is applied inside the target container on NETWORK_INTERFACE and held for TOTAL_CHAOS_DURATION seconds, then reversed.
Expected behavior during fault execution
New network packets leaving the affected containers via
NETWORK_INTERFACEare delayed byNETWORK_LATENCYms.End-to-end request latency rises by approximately
NETWORK_LATENCYms per hop traversed by the affected interface.Application timeouts that were sized below the added latency begin to fire.
CloudWatch latency metrics (where exported) rise on the affected service.
Signals to watch
Attach resilience probes to assert each layer:
Application latency: Use an HTTP probe and assert percentile latency rises by approximately
NETWORK_LATENCYms during the fault.Timeout failures: Use a Prometheus probe on application-level timeout counters.
Network metrics: Use a Prometheus probe on
aws_ecs_network_tx_bytesandaws_ecs_network_rx_bytesto confirm traffic continues but slowly.Downstream dependency calls: Use a Prometheus probe on retry counters to detect retry storms.
Verify the fault execution effect
While the experiment is running, confirm latency rose and recovered:
Probe from a peer.
Request time should rise by approximately
NETWORK_LATENCYms during the chaos window.Inspect the latency rule on the host (via SSM).
Output should show a netem rule during the chaos window and no chaos rule afterwards.
Inspect SSM command status.
Recovery and cleanup
End of duration: The chaos pod removes the latency rule on each host.
Abort the experiment: Stopping the experiment from Chaos Studio cancels the SSM command and removes the rule.
Manual recovery: If the fault exits before the rule is removed, send an SSM command to clear the rule on the affected interface.
Workload recovery: Long-lived TCP connections may benefit from a reset after the latency disappears if congestion windows are stuck at the higher RTT estimate.
Limitations
EC2 launch type only: The fault uses SSM Run Command against the underlying EC2 host. Fargate is not supported.
Container metadata must be enabled.
SSM-managed hosts only.
Linux-only.
One direction only: Latency is applied on egress from the container on
NETWORK_INTERFACE; return-path delays from peers are unaffected. Combine with a peer-side fault for round-trip emulation.Cross-region targeting: A single experiment targets one region (the value of
REGION).
Troubleshooting
Related faults
ECS container network loss: Drop packets instead of adding latency.
ECS container HTTP latency: Add latency only to HTTP traffic on a specific port.
EC2 network latency: Add latency at the EC2 host level instead of the container.
Common AWS fault tunables: Shared environment variables for AWS faults.
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