cargo-tangle 0.5.0-alpha.11

A command-line tool to create and deploy blueprints on Tangle Network
Documentation

Tangle CLI

Create, run, and operate blueprints on the Tangle EVM and EigenLayer.

Table of Contents

Overview

The CLI bundles every workflow needed for the EVM-only SDK:

  • cargo tangle blueprint create scaffolds a new blueprint from the templates.
  • cargo tangle blueprint run --protocol tangle boots a manager connected to the Tangle v2 contracts.
  • cargo tangle blueprint register-tangle registers an operator against ITangle, MultiAssetDelegation, and OperatorStatusRegistry.
  • cargo tangle key * manages local and remote k256 keys via blueprint-keystore.

All Substrate helpers have been removed; the CLI now targets EVM-first flows only.

Installation

Linux, macOS, and Windows (WSL2) are supported.

cargo install cargo-tangle --git https://github.com/tangle-network/blueprint --force

Feature flags

The CLI supports optional features that can be enabled at build time:

remote-providers - Enables cloud deployment functionality

Adds support for deploying blueprints to AWS, GCP, Azure, DigitalOcean, and Vultr. This enables the cargo tangle cloud subcommand and the --remote flag for blueprint deployment.

cargo install cargo-tangle --git https://github.com/tangle-network/blueprint \
  --features remote-providers --force

Without this feature, cloud commands are not available and using --remote will show:

❌ Remote deployment requires the 'remote-providers' feature.
   Build with: cargo build --features remote-providers

vm-debug - Enables VM sandbox debugging (Linux only)

cargo build --features vm-debug

Creating a New Blueprint

cargo tangle blueprint create --name my_blueprint

The scaffold asks for a source template, optional variables, and whether to skip prompts. The generated workspace already depends on blueprint-sdk with the tangle feature.

For Tangle blueprints, the scaffold also includes a metadata/blueprint-metadata.json file. Publish that JSON to IPFS or HTTPS, then set the resulting URI as metadata_uri in your deploy definition. Add either metadata_hash or metadata_file as well so the deploy manifest pins the expected payload digest onchain. The URI is what lands onchain; the full JSON stays offchain and is what tangle-cloud ingests to render tier-2 hosted blueprint surfaces.

For production tier-2 hosting, publish to ipfs:// and include an owner-signed metadata attestation. If the shared host cannot verify provenance, it falls back to the protocol-controlled generic blueprint UI.

Running a Blueprint on Tangle

The runner expects RPC URLs, a keystore, and the EVM contract coordinates. You can provide them via CLI flags or a settings.env file that the command loads before boot.

BLUEPRINT_ID=0 \
SERVICE_ID=0 \
TANGLE_CONTRACT=0xDc64a140Aa3E981100a9becA4E685f962f0cF6C9 \
STAKING_CONTRACT=0x9fE46736679d2D9a65F0992F2272dE9f3c7fa6e0 \
STATUS_REGISTRY_CONTRACT=0x5f3f1dBD7B74C6B46e8c44f98792A1dAf8d69154 \
cargo tangle blueprint run \
  --protocol tangle \
  --http-rpc-url http://127.0.0.1:8545 \
  --ws-rpc-url ws://127.0.0.1:8546 \
  --keystore-path ./keystore \
  --settings-file ./settings.env
Variable Description
BLUEPRINT_ID Blueprint registered on ITangle.
SERVICE_ID Optional fixed service (leave unset to process all).
TANGLE_CONTRACT ITangle contract address.
STAKING_CONTRACT MultiAssetDelegation staking contract.
STATUS_REGISTRY_CONTRACT OperatorStatusRegistry heartbeat contract.

The CLI automatically ensures an ECDSA key exists under --keystore-path and derives the operator address from it.

Registering an Operator

register-tangle performs the on-chain registration + announcement flow in one command:

cargo tangle blueprint register-tangle \
  --http-rpc-url https://rpc.tangle.tools \
  --ws-rpc-url wss://rpc.tangle.tools \
  --keystore-path ./keystore \
  --tangle-contract 0xDc64a140Aa3E981100a9becA4E685f962f0cF6C9 \
  --staking-contract 0x9fE46736679d2D9a65F0992F2272dE9f3c7fa6e0 \
  --status-registry-contract 0x5f3f1dBD7B74C6B46e8c44f98792A1dAf8d69154 \
  --blueprint-id 0 \
  --registration-inputs ./registration.tlv

You can optionally set --rpc-endpoint to push metadata to a remote operator directory service during registration.

Service Lifecycle Commands

The cargo tangle blueprint service namespace mirrors everything exposed in Tangle.sol:

  • service request submits a pending service with per-operator exposures, rich config payloads, and optional asset security requirements.
  • service approve / service reject lets operators respond to a request; approvals can include explicit asset commitments when the request included requirements.
  • service join / service leave let operators participate in dynamic membership services; leaving succeeds when the service's exit queue allows the legacy helper.
  • service list and service requests surface active services vs. pending requests, with a --json toggle for scripting.

Requesting a Service

cargo tangle blueprint service request \
  --blueprint-id 1 \
  --operator 0x... --operator 0x... \
  --operator-exposure-bps 7000 --operator-exposure-bps 3000 \
  --permitted-caller 0xdeadbeef... \
  --config-file ./service-config.bin \
  --ttl 86400 \
  --payment-token 0x0000000000000000000000000000000000000000 \
  --payment-amount 1000000000000000000 \
  --security-requirement native:_ :5000:10000
  • Provide one --operator-exposure-bps per operator (basis points, 10_000 = 100%). Leave unset to fall back to the default BPS of 100% per operator.
  • Security requirements use the format KIND:TOKEN:MIN:MAX where KIND is native or erc20. Use _/0 for the native token placeholder.
  • TTLs are expressed in seconds to match the Tangle.sol schema.

Approving or Rejecting

# Simple staking approval
cargo tangle blueprint service approve \
  --request-id 42 \
  --staking-percent 50

# Approval that matches request-level security requirements
cargo tangle blueprint service approve \
  --request-id 42 \
  --security-commitment native:_ :6000
  • --security-commitment mirrors the KIND:TOKEN:EXPOSURE structure expected by approveServiceWithCommitments.
  • Use service reject --request-id <ID> to decline participation.

Listing Services/Requests

cargo tangle blueprint service list --json
cargo tangle blueprint service requests --json

Both commands read via TangleClient::{list_services,list_service_requests} and print either friendly tables or JSON for automation.

Blueprint Upgrade Flow

Shipping a new build of a blueprint touches three actors. The CLI gives each of them a first-class subcommand surface so nobody has to hand-craft calldata.

            ┌─────────────────────┐
            │  blueprint owner    │  publish-version → set-active-version
            └─────────┬───────────┘
                      │
                      ▼
            ┌─────────────────────┐
            │  auditor / scanner  │  attest submit → (optional) attest revoke
            └─────────┬───────────┘
                      │
                      ▼
            ┌─────────────────────┐
            │  service operator   │  service set-policy → service ack-version
            └─────────────────────┘

1. Publish a new version (blueprint owner)

# Hash the artifact locally, pin to IPFS, and submit publishBinaryVersion.
cargo tangle blueprint publish-version \
  --blueprint-id 7 \
  --binary ./target/release/my-blueprint \
  --pin-to-ipfs \
  --attestation-bundle ./dist/sigstore-bundle.json \
  --json
  • --binary <path> is hashed (sha256) locally; the digest becomes sha256Hash on-chain.
  • Provide either --binary-uri ipfs://<cid> (you've already pinned) or --pin-to-ipfs (the CLI pins via IPFS_API_URL+IPFS_API_TOKEN if set, or PINATA_JWT as a fallback).
  • --attestation-bundle <path> is hashed and stored as attestationHash. Pass --attestation-hash <hex> to override directly (e.g. when the bundle lives off-disk).

The command prints the new version_id and tx hash. In JSON mode the output is a single line you can pipe to jq:

{ "event": "binary_version_published",
  "blueprint_id": 7, "version_id": 3,
  "sha256_hash": "0x...", "binary_uri": "ipfs://...",
  "attestation_hash": "0x...", "tx_hash": "0x...", "block_number": 12345 }

Promote (or roll back) the active pointer once you're ready:

cargo tangle blueprint set-active-version --blueprint-id 7 --version-id 3
cargo tangle blueprint deprecate-version  --blueprint-id 7 --version-id 1
cargo tangle blueprint list-versions      --blueprint-id 7        # table view
cargo tangle blueprint show-version       --blueprint-id 7 --version-id 3

2. Attest as an auditor

# Hash the audit report locally, pin it, and emit attestBinaryVersion.
cargo tangle attest submit \
  --blueprint-id 7 \
  --version-id 3 \
  --report ./audits/2026-05-tangle-bp-7-v3.pdf \
  --pin-report-to-ipfs \
  --kind AUDIT \
  --severity low \
  --expires-in 6m \
  --json
  • --report accepts either a local file (which is hashed; optionally pinned via --pin-report-to-ipfs) or a remote URL (https://..., ipfs://...). When passing a URL, pre-compute the hash and feed it via --report-hash <hex>.
  • --kind is one of AUDIT, FUZZ, FORMAL, BUG_BOUNTY, SELF.
  • --severity maps to the on-chain uint8 ladder: none/info/low/med/high/critical.
  • --expires-in accepts human durations (6m, 30d, 1y, 90d12h); omit for non-expiring.

Other attest commands:

cargo tangle attest list   --blueprint-id 7 --version-id 3 --json
cargo tangle attest revoke --blueprint-id 7 --version-id 3 \
  --attestation-id 2 \
  --reason ipfs://bafy.../revocation-note.json

3. Adopt the upgrade as an operator

Set the policy once, then ack each new version under APPROVE:

# Pick a policy: AUTO (follow blueprint owner), APPROVE (opt-in), MANUAL (pin to genesis).
cargo tangle blueprint service set-policy --service-id 42 --policy APPROVE

# Opt in to a specific version.
cargo tangle blueprint service ack-version --service-id 42 --version-id 3

# Inspect what's actually running and how far ahead the upstream is.
cargo tangle blueprint service effective-version --service-id 42 --blueprint-id 7 --json
cargo tangle blueprint service upgrade-status     --service-id 42 --blueprint-id 7 --json

upgrade-status prints the policy, the operator's acked version, the blueprint's active version, the effective version the manager will dispatch against, and the latest published version — exactly what an operator-facing dashboard needs.

CI gating: trust score

# Compute the weighted trust score the dapp would render for version 3.
cargo tangle blueprint trust-score \
  --blueprint-id 7 --version-id 3 \
  --auditors-contract 0xAud1tors... \
  --min-score 80           # exits non-zero if score < 80; great for CI

The score walks every non-revoked, non-expired attestation, looks each attester up in BlueprintAuditors, and produces a normalized 0..=100 number plus per-attestation diagnostics. Without --auditors-contract the score collapses to zero (all attesters treated as anonymous) — the flag should always be set in production.

IPFS configuration

Two environment knobs:

# Generic (Kubo / w3up / any service that accepts multipart/form-data + Bearer):
IPFS_API_URL=https://api.web3.storage/upload   IPFS_API_TOKEN=eyJ...

# Pinata fallback (only used if IPFS_API_URL is unset):
PINATA_JWT=eyJhbGciOi...

Pin endpoints must return JSON containing one of cid, Hash, or IpfsHash; the resulting ipfs://<cid> URI is what lands on-chain.

One-command shipping (cargo tangle blueprint ship)

For the common case — "I just landed a feature, build the binary, pin it, publish the new version, and promote it" — there is cargo tangle blueprint ship. It composes all the above steps into a single interactive flow:

$ cargo tangle blueprint ship
🚀 Shipping blueprint:  blueprintId=7  (/home/me/my-blueprint)
  RPC     https://sepolia.base.org
  Wallet  0xAbC...123 ✓ blueprint owner

? Build a release binary now?              › Yes
  > Building: cargo build --release -p my-blueprint
  sha256       0x9af3…                       (6.21 MB)
? Pin binary to IPFS?                       › Yes
  binaryUri    ipfs://bafyb…
? Publish v? on-chain (blueprint=7)?        › Yes
  ✓ Published v3 (block 184221)
? Promote to active version?                › Yes
  ✓ Promoted v3 (tx 0x…)

── Shipped v3 ─────────────────────────────
  sha256     0x9af3…
  binaryUri  ipfs://bafyb…
  promoted   true
  block      184221
  tx_hash    0x…

Auto-detection

The wizard tries (in order) --blueprint-id, BLUEPRINT_ID= in ./settings.env, then blueprintId in ./metadata/blueprint-metadata.json. It picks the first non-zero value.

CI mode

Skip all prompts with --yes:

cargo tangle blueprint ship --yes --pin-ipfs --promote \
  --blueprint-id 7 \
  --binary ./target/release/my-blueprint \
  --attestation-bundle ./dist/sigstore-bundle.json \
  --policy-services 42,43

In --yes mode the wizard prints one JSON event per phase, with the final ship_complete event carrying the new version_id, the publish tx, and whether setActiveBinaryVersion ran. The tangle-network/blueprint/.github/actions/ship-release composite action consumes that JSON to populate its outputs.

Common flag matrix

Flag Effect
--yes Accept every prompt; switch output to JSON
--dry-run Hash + (optionally) pin + report; submit nothing
--no-build --binary <path> Skip cargo build; ship a pre-built artifact
--binary-uri ipfs://… Skip IPFS pin; assume URI is already addressable
--no-promote Publish but don't setActiveBinaryVersion
--policy-services 42,43 Bulk-flip listed services into AUTO policy
--attestation-bundle <path> Hash the bundle and store its sha256 on-chain
--attestation-hash 0x… Use a pre-computed attestationHash

Manual-with-assist (operator local-authz)

For operators on MANUAL policy who want the manager to swap into specific versions but don't want to (a) move out of MANUAL on-chain or (b) spend gas on ackBinaryVersion, the manager exposes a local authorization layer. Pre-authorized swaps still run the full sha256+attestation gate — the only thing the operator is sidestepping is the audit-trail tx.

# List what versions the manager sees on-chain (no chain calls — talks to the
# local manager's /upgrades/{service_id}/available).
cargo tangle blueprint service upgrades --service-id 42

# Pre-authorize a single one-shot swap to v3 the next time it becomes effective.
cargo tangle blueprint service upgrade-local --service-id 42 --version-id 3

# Stage a fleet-wide rollout: every version in this list is acceptable.
cargo tangle blueprint service upgrade-whitelist --service-id 42 --versions 2,4,5

# Explicitly skip v3 (canary regression). Reason lands in the manager's audit log.
cargo tangle blueprint service upgrade-skip --service-id 42 --version-id 3 \
  --reason "Failed latency canary; waiting for v4"

# Show what local-authz state the manager is holding for this service.
cargo tangle blueprint service upgrade-authz --service-id 42 --json

Manager URL resolution (highest wins): --manager-urlBLUEPRINT_MANAGER_URL env → http://127.0.0.1:9000. The pre-authorization persists in <manager-data-dir>/upgrade-authz/<serviceId>.json, so the operator can stage a pin/whitelist during a maintenance window and walk away — a restart of the manager rebuilds the state cleanly.

Cloud Deployment

Note: Cloud deployment requires the remote-providers feature flag. See Feature flags for installation instructions.

The Tangle CLI supports deploying blueprints to cloud providers for scalable, distributed execution:

Configure Cloud Provider

# Configure AWS
cargo tangle cloud configure aws --region us-east-1 --set-default

# Configure GCP
cargo tangle cloud configure gcp --region us-central1

# Configure other providers
cargo tangle cloud configure digitalocean --region nyc1
cargo tangle cloud configure vultr --region ewr
cargo tangle cloud configure azure --region eastus

Cost Estimation

# Compare costs across all providers
cargo tangle cloud estimate --compare --cpu 4 --memory 16

# Estimate for specific provider with spot pricing
cargo tangle cloud estimate --provider aws --spot --duration 30d

# GPU-enabled instances
cargo tangle cloud estimate --provider gcp --gpu 1 --cpu 8 --memory 32

Deploy Blueprint to Cloud

# Deploy with remote deployment flag
cargo tangle blueprint deploy tangle --remote --package my_blueprint

# Deploy with specific policy
cargo tangle cloud policy --gpu-providers gcp,aws --cost-providers vultr,do
cargo tangle blueprint deploy tangle --remote --package my_blueprint

Monitor Cloud Deployments

# Check status of all deployments
cargo tangle cloud status

# Check specific deployment
cargo tangle cloud status --deployment-id dep-abc123

# Terminate deployment
cargo tangle cloud terminate --deployment-id dep-abc123

Preflight and TEE Readiness

# Validate credentials/provider readiness and print manager bootstrap env
cargo tangle cloud preflight --bootstrap-env

# Validate fail-closed TEE readiness (including cryptographic verifier requirements)
cargo tangle cloud preflight --tee-required --bootstrap-env

# Write bootstrap env directly to file
cargo tangle cloud preflight --tee-required --write-env-file .env.remote

Spawning a Service Runtime

Kick off the blueprint manager using a specific runtime without re-running the full deploy flow:

cargo tangle blueprint service spawn \
  --http-rpc-url https://rpc.tangle.tools \
  --ws-rpc-url wss://rpc.tangle.tools \
  --keystore-path ./keystore \
  --tangle-contract 0xCf7E... \
  --staking-contract 0xe7f1... \
  --status-registry-contract 0xdC64... \
  --blueprint-id 1 \
  --service-id 2 \
  --spawn-method vm \
  --data-dir ./data \
  --allow-unchecked-attestations

The command reuses the same manager wiring as cargo tangle blueprint run, so any RPC endpoint + runtime combo works (VM/native/container). For devnet, omit the overrides and the defaults point at the local harness.

Key Management

All keys are EVM-native. Use the cargo tangle key subcommands to handle k256 material:

# Generate a new operator key
cargo tangle key generate --key-type ecdsa --output ./keystore

# Import an existing hex secret into the keystore
cargo tangle key import --key-type ecdsa \
  --secret 0x0123... \
  --keystore-path ./keystore \
  --protocol tangle

# List local keys
cargo tangle key list --keystore-path ./keystore

The keystore supports filesystem, in-memory, and remote HSM backends through blueprint-keystore.

EigenLayer Helpers

EigenLayer support remains available under cargo tangle blueprint eigenlayer <subcommand>. Use it to register AVSs, list allocations, or run the EigenLayer manager by supplying the addresses exported from the EigenLayer contracts.

Operator Status

Inspect the latest heartbeat/online status from OperatorStatusRegistry:

cargo tangle operator status \
  --http-rpc-url https://rpc.tangle.tools \
  --ws-rpc-url wss://rpc.tangle.tools \
  --keystore-path ./keystore \
  --tangle-contract 0xCf7E... \
  --staking-contract 0xe7f1... \
  --status-registry-contract 0xdC64... \
  --blueprint-id 1 \
  --service-id 2 \
  --operator 0xdeadbeef... \
  --json

Omit --operator to query the locally configured operator. Add --json for machine-friendly output (timestamp, raw status code, online boolean).

Need More?

  • End-to-end demos and advanced options live on the CLI reference.
  • For pricing/QoS flows, combine the CLI with crates/pricing-engine and the new OPERATOR_* env vars described in that README.
cargo tangle blueprint run \
  --protocol eigenlayer \
  --config ./config.toml

The manager will:

  • Read all active AVS registrations from ~/.tangle/eigenlayer_registrations.json
  • Spawn a separate blueprint instance for each AVS
  • Monitor rewards and slashing events
  • Auto-restart failed blueprints

5. Deregister from an AVS

cargo tangle blueprint eigenlayer deregister \
  --service-manager 0x... \
  --keystore-uri ./keystore

EigenLayer Command Reference

eigenlayer register

Register with a new EigenLayer AVS.

cargo tangle blueprint eigenlayer register \
  --config <CONFIG_FILE> \
  --keystore-uri <KEYSTORE_PATH> \
  [--runtime <RUNTIME>] \
  [--verify]

Arguments:

  • --config: Path to JSON configuration file
  • --keystore-uri: Keystore path (default: ./keystore)
  • --runtime: Runtime target (native, hypervisor, container) - overrides config file
  • --verify: Perform on-chain verification (optional)

Aliases: reg

eigenlayer deregister

Deregister from an EigenLayer AVS.

cargo tangle blueprint eigenlayer deregister \
  --service-manager <ADDRESS> \
  --keystore-uri <KEYSTORE_PATH>

Arguments:

  • --service-manager: Service manager contract address
  • --keystore-uri: Keystore path (default: ./keystore)

Aliases: dereg

eigenlayer list

List all registered AVS services.

cargo tangle blueprint eigenlayer list \
  [--active-only] \
  [--format <FORMAT>]

Arguments:

  • --active-only: Show only active registrations
  • --format: Output format: table (default) or json

Aliases: ls

eigenlayer sync

Synchronize local registrations with on-chain state.

cargo tangle blueprint eigenlayer sync \
  --http-rpc-url <URL> \
  --keystore-uri <KEYSTORE_PATH> \
  [--settings-file <FILE>]

Arguments:

  • --http-rpc-url: HTTP RPC endpoint (default: http://127.0.0.1:8545)
  • --keystore-uri: Keystore path (default: ./keystore)
  • --settings-file: Protocol settings file (optional)

Runtime Targets

Each AVS can specify its execution runtime:

  • native - Bare process (no sandbox)

    • Fastest startup and lowest overhead
    • For testing only - no isolation
    • Direct process execution
  • hypervisor - cloud-hypervisor VM (default)

    • Production-ready VM isolation
    • Strong security boundaries
    • Resource limits enforced
    • Recommended for production
  • container - Docker/Kata containers (Coming Soon)

    • Not yet implemented
    • For now, use native for testing or hypervisor for production

Set via config file or override via CLI --runtime flag.

Generating Keys from the Command Line

The following command will generate a keypair for a given key type:

cargo tangle blueprint generate-keys -k <KEY_TYPE> -p <PATH> -s <SURI/SEED> --show-secret

where it is optional to include the path, seed, or the show-secret flags.

Flags

  • -k or --key-type: Required flag. The key type to generate (sr25519, ecdsa, bls_bn254, ed25519, bls381).
  • -p or --path: The path to write the generated keypair to. If not provided, the keypair will be written solely to stdout.
  • -s or --seed: The suri/seed to generate the keypair from. If not provided, a random keypair will be generated.
  • --show-secret: Denotes that the Private Key should also be printed to stdout. If not provided, only the public key will be printed.

For all of our features for created and using keys, see the key management section of our CLI docs.