AEVS vs sizeless: Features, Pricing & Which Is Better (2026)
A side-by-side comparison of AEVS and sizeless — features, pricing, and ideal use cases — to help you decide which AI tool fits your workflow.
AEVS
Fetch.ai
Open-source SDK that creates tamper-evident, cryptographically signed receipts for every tool call an AI agent makes.
Key features
- Signed Receipts: Records every tool call and seals it with an ECDSA P-256 signature backed by KMS.
- Hash-Chained Logs: Links each receipt to the previous one so tampering or skipped steps are detectable.
- Independent Verification: Confirms signatures via a public API or explorer using only a reference ID.
- Drop-In SDK: Installs with pip and wraps existing tools without changing them.
- Framework Auto-Detection: Automatically integrates with LangChain and MCP-based agents.
- Open Source: Released as fetchai/AEVS-sdk for Python 3.10–3.13.
Best for
- Agent Auditing: Keep a verifiable record of exactly what an agent did and when.
- High-Stakes Actions: Prove execution of sensitive operations such as payments or refunds.
- Compliance Evidence: Provide tamper-evident logs for regulated or accountable workflows.
- Debugging Agents: Inspect tool inputs, outputs, timing, and errors for each call.
- Third-Party Verification: Let external parties confirm an action occurred without sharing source code.
sizeless
sizeless
Turns a smartphone video of an open trench into a centimetre-accurate 3D point cloud, CAD as-built plan and GIS-ready digital twin of buried utilities.
Key features
- Smartphone capture: Field crews record an open trench with a standard iPhone Pro — no specialist scanning hardware and no separate surveying appointment
- Centimetre-accurate point clouds: Reconstruction algorithms developed at ETH Zurich build a high-resolution 3D point cloud of the excavation from the video alone
- Standards-compliant CAD output: Generates as-built plans in DWG and DXF, with couplings and pipe runs identified and measurements simplified
- 3D digital twin and GIS export: Produces a model of the pipe route including building entries that drops into existing GIS systems
- Works without GPS: Captures basement sections and building entry points where GNSS-based surveying fails
- Immediate backfilling: Because capture takes minutes, trenches close right after filming instead of waiting on a survey crew
- Documentation in about 72 hours: Complete records arrive weeks earlier than conventional surveying, enabling prompt connection billing
- Third-party utility capture: Records crossing utilities and as-laid geometry as unbroken 3D evidence, replacing hand sketches
Best for
- A utility network operator documenting residential service connections without booking a surveyor for every site
- A contractor closing a trench the same day instead of leaving it open pending a survey appointment
- Capturing a building entry point in a basement where GPS-based surveying cannot get a fix
- A district heating project producing as-built DWG plans for regulatory sign-off
- Spotting a laying error in the 3D point cloud before backfilling, while the fix is still cheap
- Feeding as-built pipe geometry into a GIS system for long-term network maintenance planning
