Demo listing. This page uses illustrative seed metadata to demonstrate the Atlas. Claims shown here are not verified product facts.
Loopwright
Sample-room workflow that turns a photograph of a knitted swatch into a draft machine program for a V-bed whole-garment knitting machine,…
A sample-room workflow that turns a photograph of a knitted swatch into a draft machine program for a V-bed whole-garment knitting machine, with per-cell confidence and a knittability gate, so a scarce machine programmer edits and approves a draft instead of writing stitch-level code from scratch.
Last verified 15 Sept 2026 · Updated 23 Sept 2026 · Metadata v1
Problem
Knitwear and technical-textile factories running V-bed whole-garment machines — socks, gloves, sportswear, shoe uppers and automotive seat covers — whose sample rooms are bottlenecked on a handful of programmers converting customer swatches, archive samples and pattern-book motifs into machine programs.
Outcome
A design-complete foundation in the active pipeline — engineering scaffold planned to complete this month.
Who uses it
- Operations Analyst
- Solution Architect
Key capabilities
Capabilities are defined during customer configuration.
Typical workflow
Primary operating flow
Trigger: An operator starts the primary use case
Task
Stage 1: Capture inputs
Operator
AI-assisted
Stage 2: Assist with draft
System
Human checkpoint
Stage 3: Human approval
Approver
Task Automated AI-assisted Human checkpoint Decision
About this foundation
Program synthesis for machine knitting, positioned as draft-and-verify rather than lights-out conversion. Existing digital design tools for whole-garment knitting still require the user to specify patterns at stitch level, which the source compares to assembly-level programming; hand-knitting pattern libraries are largely incompatible with industrial machine operations. Loopwright starts from the artefact a factory already receives — a physical swatch — and produces a machine-parseable draft whose weak cells are named up front, because an inverse-design model that is right on 94% of cells is a productivity tool and a disaster if sold as an oracle.
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Primary operating flow
Trigger: An operator starts the primary use case
Task
Stage 1: Capture inputs
Operator
AI-assisted
Stage 2: Assist with draft
System
Human checkpoint
Stage 3: Human approval
Approver
Actors
Operator, Approver
Outputs
- Completed work item
Evidence generated
- Audit trail
Exceptions
- Incomplete inputs returned to operator
Task Automated AI-assisted Human checkpoint Decision
Included ships in the foundation · Configurable is switched or tuned per customer · Extension is customer-specific build scope · Planned is on the roadmap and not available today.
Core workflow
AI-assistedPlannedPrimary operating workflow for this foundation.
Document intelligence
AI-assistedPlannedExtract and ground decisions from operating documents.
- Architecture class
- Domain-driven design, OpenAPI-first
- Bounded contexts
- 3
- API-first
- Yes — OpenAPI contracts are authoritative
- Identity
- Enterprise OIDC / SAML via the fazeZERO identity blueprint; tenant-aware role-based access.
- Multi-tenancy
- Tenant-aware
- Service boundaries
- Bounded contexts behind one API server.
- Integration approach
- Ports-and-adapters: every external system sits behind an adapter; OpenAPI contracts for inbound APIs.
- Eventing
- Integration events via transactional outbox.
- Storage abstraction
- Repository interfaces; DynamoDB or relational adapters.
- Deployment pattern
- Containerized API + web application; infrastructure as code per cloud profile.
- Architecture version
- 1.0
Approved domain names
- identity
- catalog
- workflows
- Web Application
- API Server
- Application Services
- Domain / Generated Core
- Adapters
- Customer Systems
Generator source, templates and factory orchestration are proprietary and are not part of this listing.
Reference Adapter: shipped and tested · Previously Integrated: delivered before · Standard API Pattern: integrates via a documented pattern · Customer-Specific: built in your implementation.
APIs
| Integration | Status | Direction | Method |
|---|---|---|---|
| Customer systems of record | Standard API Pattern | bidirectional | REST API |
Deployment
- Deployment models
- Customer Cloud, Private Cloud
- Cloud profiles
- Azure Profile, Cloud-Neutral
- Containerized
- Yes
- Regions
- GLOBAL
Cloud profiles describe approved deployment patterns. They are not formal marketplace certifications.
Data handling
- Stores customer data
- Configurable
- Data leaves customer environment
- Configurable
- Uses external AI provider
- Configurable
- Sends logs externally
- No
- PII expected
- Determined during customer configuration
- Data-residency support
- Yes
- Subprocessors required
- Determined during customer configuration
Identity & access
- Authentication
- OIDC, Entra ID, SAML
- Authorization
- Role-Based, Tenant-Aware
- Source availability
- Proprietary
Support
- Implementation
- Delivered by fazeZERO or a certified partner during the Solution Definition and AI Production Sprints.
- Production support
- Production support available under a separate support agreement.
- Contact
- support@fazezero.com
Badges
fazeZERO Verified
Listing metadata and published technical claims have been reviewed by fazeZERO.
Issued 23 Sept 2026
Evidence shows that this listing represents real engineering. Internal metrics are only published when fazeZERO has approved them for publication.
Build
Automated tests
Deployment validation
- Last verification
- 15 Sept 2026
- Release
- 1.0.0
- Architecture version
- 1.0
- Listing metadata version
- 1
- Last published
- 23 Sept 2026