All Systems - Mythos Systems Portfolio
Complete portfolio index across flagship platforms, active engineering, focused tools, research, and lineage.
GEN I · Portfolio Generation
Focused Operational Tools
Narrow, repetitive operational workflows replaced by structured, concurrent, evidence-producing tools.
PA-DIAG
Historical; preserved as engineering lineage.
Palo Alto firewall and VPN diagnostic engine replacing repetitive manual troubleshooting with structured, concurrent analysis. PA-DIAG executed 60+ diagnostic operations in parallel, correlated anomalies, and generated TAC-ready evidence packages.
- Rust
- Tokio async
- Tauri
- SvelteKit
- TypeScript
- PAN-OS APIs
- SSH
- Structured logging
- Anomaly correlation
- Report generation
GP-MEDIC
Active development; not publicly released.
GlobalProtect troubleshooting companion for authentication, portal, gateway, endpoint, routing, certificate, policy, and connectivity failures through a repeatable diagnostic workflow.
- Palo Alto / GlobalProtect APIs
- Rust + Python diagnostic components
- Tauri
- SvelteKit
- Network-testing utilities
- Log parsing
- Structured reports
PanOS Evaluator
Historical; preserved as engineering lineage.
Firewall-policy analysis for security rules, address and service objects, shadowing, redundancy, overlap, risk, and configuration hygiene.
- PAN-OS XML parsing
- Rust
- TypeScript
- Tauri
- SvelteKit
- Rule-analysis engines
- Normalized object models
- Local persistence
- Reporting
Layers
Historical; preserved as engineering lineage.
Structured Layer 1-7 troubleshooting suite organized around the OSI model rather than disconnected commands.
- Rust
- Python
- ICMP/socket testing
- DNS
- Routing/transport validation
- HTTP/TLS inspection
- Packet-analysis integrations
- Diagnostic reporting
Surveyor
Historical; preserved as engineering lineage.
Environment-inspection utility for discovering and analyzing endpoint, host, network, and infrastructure state.
- Rust/Python collection agents
- Local system APIs
- Network discovery
- Structured telemetry
- Normalized inventory
- Desktop reporting
Network Discovery Engine
Architecture direction; publication detail follows evidence review.
Discovery and source-of-truth population for devices, interfaces, addressing, topology, capabilities, and relationships.
- Python
- NetBox
- pynetbox
- Nornir
- NAPALM
- SSH
- REST APIs
- Inventory normalization
- Confidence scoring
- Topology mapping
Mapping Utilities
Historical; preserved as engineering lineage.
MAPR, UUID-MAPR, Zone-MAPR and related visual utilities connecting identifiers, security zones, network objects, devices, and operational relationships.
- TypeScript
- SvelteKit
- SVG/Canvas visualization
- Graph data models
- Searchable indexes
- Structured JSON
- Local databases
Endpoint Reports
Architecture direction; publication detail follows evidence review.
Endpoint assessment and reporting: device inventory, health, configuration, security, and operational findings turned into shareable evidence.
- Rust local collection
- Tauri
- SvelteKit
- System APIs
- Normalized telemetry
- Structured findings
- Export pipelines
Troubleshooting Systems
Historical; preserved as engineering lineage.
Broader collection of diagnostic, endpoint, traffic, scanning, and support utilities automating narrow but repetitive operational workflows.
- Rust
- Python
- TypeScript
- PowerShell
- REST APIs
- SSH
- Packet/log analysis
- Async execution
- Local storage
- Desktop interfaces
GEN II · Portfolio Generation
Vendor-Specific Operational Platforms
Focused tools consolidated into full operational platforms for individual vendor ecosystems.
VERTEX
Active technical evaluation; not publicly released.
Local-first Palo Alto network and security operations platform: discovery, diagnostics, policy analysis, telemetry, lifecycle management, configuration hygiene, change planning, validation, and operational evidence.
- Rust 2021
- Tokio
- Tauri 2
- Svelte 5
- SvelteKit
- TypeScript
- Tailwind
- SQLite
- reqwest
- russh
- PAN-OS XML APIs
- Strata Cloud Manager APIs
- AES-256-GCM
- Argon2
PRISM
Active technical evaluation; not publicly released.
Cisco operations and assurance: controller-based discovery, switch and interface health, topology, configuration compliance, direct-device access, remediation planning, validation, and evidence.
- Rust
- Tauri 2
- Svelte 5
- SvelteKit
- TypeScript
- Vite
- Tailwind
- SQLite
- reqwest
- russh
- Cisco Catalyst Center APIs
- RESTCONF
- NETCONF
- NX-API
- SSH
- Serial-terminal integrations
AETHER
Active development; not publicly released.
Aruba automation and assurance unifying HPE Aruba Central, AOS-CX, wireless, ClearPass, EdgeConnect, UXI, and fabric environments.
- Rust 2024
- Tokio
- Tauri 2
- Svelte 5
- SvelteKit
- Strict TypeScript
- SQLite
- PostgreSQL planning
- REST APIs
- gNMI
- SSH
- Typed IPC
- WebGPU topology visualization
- Secure credential abstractions
LABYRINTH
Pre-Phase-0 architecture and implementation blueprint.
NetBox-centered network automation and assurance for telecommunications, fiber, OSS/BSS, inventory, operational state, configuration, telemetry, and source-of-truth reconciliation. LABYRINTH continuously compares NetBox intent, observed state, and business-system context; it introduces admission control, blast-radius scoring, maintenance-window enforcement, dry runs, digital twins, canary execution, postchecks, rollback, and immutable evidence before permitting infrastructure changes.
- Rust
- Axum
- Tokio
- Tower
- Python
- pynetbox
- Nornir
- Pydantic
- Ansible/AWX
- NAPALM
- pyATS/Genie
- Batfish
- containerlab
- PostgreSQL
- Redis
- NATS JetStream
- ClickHouse
- Prometheus
- Grafana
- Loki
- OpenTelemetry
- Kubernetes
- Argo CD
- Terraform
- Vault
- S3-compatible storage
- Tauri 2
- SvelteKit
- TypeScript
GEN III · Portfolio Generation
Cross-Vendor Control Planes
Vendor-specific platforms merged into shared control planes spanning otherwise incompatible systems.
PA-CNTRL
Historical; superseded by later platform generations.
Early Palo Alto control plane combining policy operations, diagnostics, traffic analysis, lifecycle workflows, and Panorama automation behind a reusable application interface.
- Rust
- Tauri
- SvelteKit
- TypeScript
- Python automation
- PAN-OS APIs
- SSH
- Local persistence
- Authentication
- Reusable operational components
Cisco-CNTRL
Historical; superseded by later platform generations.
Cisco control plane for Catalyst Center, ISE, switching, access control, compliance, inventory, interface health, and operational automation.
- Rust
- Tauri
- SvelteKit
- TypeScript
- Cisco controller APIs
- SSH
- RESTCONF
- NETCONF
- Local databases
- Authentication
- Shared workflow components
Mist-CNTRL
Historical; superseded by later platform generations.
Juniper Mist operational surface for wireless and network inventory, site state, client visibility, configuration, and API-driven automation.
- Juniper Mist APIs
- TypeScript
- SvelteKit
- Shared authentication
- API adapters
- Normalized data models
- Planned Rust/Tauri integration
CNTRL-OMNI
Historical; superseded by later platform generations.
Generalized cross-vendor aggregation layer exploring shared workflows, normalized resources, and unified operational views across otherwise incompatible platforms.
- Rust
- TypeScript
- SvelteKit
- Tauri
- Shared API contracts
- Normalized resource models
- Authentication
- Authorization
- Reusable interface components
CNTRL
Historical; superseded by later platform generations.
Consolidation of the vendor-specific systems into a unified multi-vendor network and security control plane: Palo Alto Panorama, Cisco ISE, Catalyst Center, Juniper Mist, and Infoblox behind shared identity, authorization, navigation, policy analysis, traffic analysis, lifecycle automation, compliance, and 70+ documented operational capabilities.
- Rust
- Tauri
- SvelteKit
- TypeScript
- Python
- REST APIs
- Direct SSH
- JWT
- Argon2
- PAN-OS/Cisco/Juniper Mist/Infoblox APIs
- Itential
- Ansible
- Local persistence
- Role-based authorization
GEN IV · Portfolio Generation
Governed Intelligent Platforms
Models and agents placed inside deterministic architecture with human control and verifiable evidence.
PANTHEON
Active development; architecture specified; not publicly released.
Governed engineering and automation environment bringing software engineering, infrastructure, networks, cybersecurity, models, agents, terminals, browsers, tools, memory, observability, evidence, and technical knowledge into one coherent platform.
- Rust
- Tokio
- Tauri 2
- Svelte 5
- SvelteKit
- TypeScript
- Python
- SQLite
- PostgreSQL
- MCP
- Tree-sitter
- Monaco
- xterm.js
- OpenTelemetry
- Prometheus
- Grafana
- Local and hosted model providers
- Cryptographically protected evidence
AEON
Active private development; not publicly released.
Private life and household operating system: authoritative records, shared groups, role-based access, tasks, documents, finance, wellbeing, vehicles, pets, timelines, and bounded AI assistance.
- Svelte 5
- SvelteKit
- TypeScript
- PWA
- Rust
- Axum
- Tokio
- SQLx
- SQLite
- Future PostgreSQL
- Web Workers
- WebSockets/SSE
- Encrypted attachments
- Passkeys
- Optional browser-local inference
SYN4PS3
Architecture direction; not publicly released.
Natural-language infrastructure operations architecture separating a centralized orchestration and governance plane from a local execution engine operating near the managed environment.
- Rust-first execution engine
- Typed APIs
- Web orchestration
- Windows tray or headless agents
- Local credential boundaries
- Infrastructure connectors
- Policy controls
- Result streaming
- Audit evidence
PRISMATIK
Active development; public packaging under review.
Multi-asset financial intelligence and quantitative research platform: equities, crypto, options, filings, simulation, paper trading, risk analysis, and controlled execution.
- Rust
- Tauri 2
- Svelte 5
- SvelteKit
- TypeScript
- WebGPU
- wgpu
- PostgreSQL
- ClickHouse
- DuckDB
- Apache Arrow
- Parquet
- CoinGecko
- Unusual Whales
- SEC EDGAR data
- CFTC data
- Provider gateways
- Isolated execution boundaries
CALLISTO
Foundation architecture and product incubation.
Privacy-first, Rust-native browser platform: secure workspaces, profile isolation, extensibility, integrated vault, VPN routing, privacy enforcement, AI assistance, and cryptographic agility.
- Rust
- Tokio
- Tauri 2
- SvelteKit
- TypeScript
- wgpu
- Vello
- GPU shaders
- SVG rendering
- Native WebView adapters
- Future Servo integration
- WireGuard
- Secure storage
- Signed modules
- Browser extensions
- Native messaging
MYTHOS AI
Active program with published and developing standards.
Applied AI research, engineering, benchmarking, and assurance program, not a single application. MYTHOS AI defines how models, agent frameworks, retrieval systems, memory, coding agents, automation systems, multimodal interfaces, fine-tuning, synthetic data, and model architectures are selected, evaluated, secured, governed, and continuously validated.
- Python evaluation harnesses
- Rust/TypeScript reference systems
- Local and hosted inference runtimes
- Retrieval and vector systems
- MCP
- Structured JSON/CSV registries
- Searchable indexes
- Benchmark suites
- Adversarial testing
- Model cards
- Signed evidence
- Continuous evaluation
- Versioned engineering standards
Shared Governance Architecture
Standing architecture applied across platforms; not a standalone product.
Consistent engineering architecture across platforms: durable missions, model-independent agents, typed tool contracts, deterministic execution, human approval, state reconciliation, simulation, observability, verification, evidence, memory, and rollback.
- Rust
- Tokio
- Axum
- Tauri
- SvelteKit
- TypeScript
- Python
- SQLite
- PostgreSQL
- MCP
- OpenTelemetry
- Prometheus
- Grafana
- GitOps
- CI/CD
- Policy engines
- Secure credential brokers
- Local or hosted model runtimes
Current Programs
Building Governed Systems for Engineering, Infrastructure, Privacy, and Artificial Intelligence
Building governed systems for engineering, infrastructure, privacy, and artificial intelligence. Current work places advanced intelligence inside deterministic architecture, explicit security boundaries, durable state, human control, and verifiable evidence.
PANTHEON
Active development; architecture specified; not publicly released.
Flagship engineering platform: a natural-language-driven environment for software engineering, network engineering, cybersecurity, infrastructure, automation, model orchestration, testing, observability, and controlled operations. PANTHEON converts human intent into typed, reviewable plans; models and agents interpret, research, decompose, and propose work while deterministic tools perform approved actions under policy, permission, simulation, validation, and evidence controls. Organized around mission control and approval; an engineering workspace; model, provider, and capability routing; agent and mission orchestration; digital twins; security policy, identity, and secrets; simulation, testing, and evaluation; knowledge, retrieval, and persistent memory; terminals, browser automation, observability, and evidence; and extensions, MCP servers, connectors, and Blueprints.
- Rust
- Tokio
- Tauri 2
- Svelte 5
- SvelteKit
- TypeScript
- Python
- SQLite
- PostgreSQL
- Tree-sitter
- Monaco
- xterm.js
- MCP
- OpenTelemetry
- Prometheus
- Grafana
- Local model runtimes
- Hosted providers
- Encrypted secrets
- Append-only evidence
- Windows-native execution controls
- Mission control and approval
- Engineering workspace and development tools
- Models, providers, and capability routing
SYNODIC
Implementation candidate; static validation completed; native Rust build closure pending.
Standalone Windows-first agent engineering environment turning model reasoning into durable, bounded, inspectable engineering work. No model, IDE, plugin, or provider is authoritative; the Rust daemon synodicd is the sole owner of durable state transitions, with CLI, TUI, IDE, SDK, and PANTHEON integrations as equal protocol clients. SYNODIC owns the deterministic Agent Kernel; Missions and WorkOrders; agent topologies, supervisors, arbiters, and execution cells; multi-provider model routing; context compilation; governed memory and Skill contracts; capability grants, leases, scopes, and budgets; out-of-process execution and extension hosts; verification, evidence, recovery, replay, and emergency Quench; and the CLI, TUI, IDE, SDK, and protocol surfaces. Its mission ledger combines normalized transactional state, an append-only event journal, immutable evidence, and a content-addressed Artifact Vault; replay reconstructs state without repeating external side effects. PANTHEON may create Missions and consume evidence through versioned protocol contracts but cannot bypass SYNODIC authority boundaries.
- Rust 1.97.1
- Edition 2024
- Tokio
- Modular monolith
- SQLite WAL
- Protobuf
- Buf
- JSON Schema
- Windows named pipes
- Optional loopback gRPC
- Windows Job Objects
- Content-addressed artifact storage
- OpenTelemetry-compatible observability
- TypeScript SDK generation
LABYRINTH
Pre-Phase-0 architecture and implementation blueprint.
NetBox-centered platform for telecommunications, fiber, and enterprise networking where intended state (NetBox), observed state (devices and controllers), and business context (OSS/BSS) are continuously reconciled. LABYRINTH provides event ingestion; continuous intent-vs-reality reconciliation; streaming telemetry and historical state; configuration rendering, diffing, and compliance; blast-radius and dependency analysis; digital-twin simulation; maintenance-window and approval enforcement; canary deployment and progressive trust; idempotent automation; post-change verification; automatic rollback; GitOps deployment; and immutable operational evidence. Services include an event gateway, admission controller, diff and simulation engine, reconciliation engine, orchestration control plane, telemetry collector, web operations console, desktop companion, and static engineering CLI.
- Rust
- Axum
- Tokio
- Tower
- Python
- pynetbox
- Nornir
- Pydantic
- Ansible/AWX
- NAPALM
- pyATS/Genie
- Batfish
- containerlab
- NATS JetStream
- PostgreSQL
- Redis
- ClickHouse
- Prometheus
- Grafana
- Loki
- OpenTelemetry
- Kubernetes
- Argo CD
- Terraform
- Vault
- MinIO/S3
- Tauri 2
- SvelteKit
- TypeScript
CALLISTO
Foundation architecture and product incubation.
Rust-first, desktop-first browser platform designed as a secure operating environment for modern web work. CALLISTO separates identity profiles, workspaces, signed capability modules, themes, and rendering-engine adapters; workspaces preserve tabs, bookmarks, notes, downloads, permissions, privacy settings, AI context, and vault relationships as durable operational environments. Five distinguishing capabilities: a premium GPU-accelerated desktop interface; structured persistent workspaces; privacy enforcement by default; native VPN and a secure credential vault; and integrated AI assistance (Ask Callisto). Privacy covers HTTPS-first behavior, tracker blocking, URL cleaning, cookie isolation, fingerprint protection, DNS privacy, per-workspace policies, site permissions, and configurable privacy profiles. Extensions combine signed native modules with Chrome, Firefox, and Edge companion extensions over a protected native-messaging bridge.
- Rust
- Tokio
- Tauri 2
- SvelteKit
- TypeScript
- wgpu
- Vello
- SVG-first rendering
- GPU shaders
- Native system WebViews
- Future Servo adapters
- WireGuard
- Secure local storage
- Hardware-backed keys
- Signed updates
- Cryptographic agility
- Post-quantum research
- Browser extensions
- Native messaging
MYTHOS AI
Active program with published and developing standards.
Not a single chatbot or application: MYTHOS AI is the applied intelligence program defining how Mythos Systems researches, evaluates, secures, governs, and implements AI. Coverage includes agentic frameworks and multi-agent runtimes; model selection, deployment, and lifecycle governance; natural-language and LLM evaluation; AI software engineering and code generation; AI-assisted automation and IaC; alignment, adversarial testing, and sycophancy; context engineering and temporal memory; multimodal voice, vision, and conversational systems; fine-tuning, RLEF, and synthetic-data governance; AI avatars, persona, identity, and provenance; mixture-of-experts and state-space architectures; tool authorization, MCP, retrieval, memory, and evidence; and local-first, air-gapped, data-sovereign inference. Model output is treated as proposal and analytical input, never authoritative system state; correctness is established through typed contracts, deterministic validation, testing, security review, execution evidence, and continuous evaluation.
- Python evaluation and benchmark harnesses
- Rust/TypeScript reference implementations
- Tauri
- Local and hosted model runtimes
- MCP
- Retrieval and vector systems
- Structured JSON/CSV registries
- Searchable indexes
- Benchmark suites
- Adversarial test corpora
- RAG and citation evaluation
- Model cards
- Signed artifacts
- Provenance systems
- OpenTelemetry-compatible observability
- Version-controlled engineering standards