72 lines
4.1 KiB
Markdown
72 lines
4.1 KiB
Markdown
# Tess Architecture
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## Purpose
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Tess is the Mosaic operator interaction plane. Mos remains the coding/general fleet orchestration authority. Tess receives authorized operator intent, presents fleet/session state, delegates Mos-owned work to Mos, and exposes native Mosaic plus transitional external-agent capabilities through normalized providers.
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## Component Boundaries
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```text
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Discord plugin ─┐
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├─ authenticated ingress envelope ─> Mosaic Gateway
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mosaic tess CLI ┘ │
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├─ policy/approval/audit
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├─ Tess durable session service (Pi GPT-5.6 Sol high)
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├─ AgentRuntimeProvider registry
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│ ├─ native Pi provider
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│ ├─ fleet/tmux provider
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│ ├─ Hermes adapter
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│ └─ Matrix/native transport provider
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├─ memory/state/inbox plugins
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└─ Mos coordination adapter ─> Mos / fleet queue
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```
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## Core Contract
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`AgentRuntimeProvider` is separate from the existing model-completion `IProviderAdapter`. It normalizes external and native agent runtimes without leaking provider-specific schemas.
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Required operations:
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- `capabilities()` and `health()`
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- `listSessions(scope)`
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- `getSessionTree(scope)`
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- `streamSession(sessionRef, cursor, scope)`
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- `sendMessage(sessionRef, message, idempotencyKey, scope)`
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- `attach(sessionRef, mode, scope)` / `detach()`
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- `terminate(sessionRef, approvalRef, scope)`
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Every call receives an immutable, server-derived actor/tenant/channel scope and correlation ID. Caller-supplied actor IDs are forbidden. Unsupported capabilities fail closed with typed errors.
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## Authority Model
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| Intent | Owner | Tess behavior |
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| --- | --- | --- |
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| Conversation, status, retrieval, safe diagnostics | Tess | Execute within policy |
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| Code/project decomposition, worker assignment, reviews, merge orchestration | Mos | Create a correlated handoff and observe result |
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| Destructive, privileged, external/customer-visible action | Human approval + policy | Propose, wait for durable one-time approval, then execute idempotently |
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| Provider-specific unsupported action | None | Fail closed; never emulate silently |
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## Session and State Model
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A Tess session has stable `sessionId`, `tenantId`, `ownerId`, provider/runtime identity, ingress bindings, cursor, checkpoint, inbox/outbox, and idempotency records. Discord and CLI bind to the same authorized session. Ownership is verified server-side on every list/read/attach/send/terminate operation.
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Valkey may hold ephemeral coordination state; PostgreSQL is canonical for durable session bindings, approvals, audit, checkpoints, inbox/outbox, and idempotency. Pi session files are replay sources, not cross-agent truth.
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## Transport Strategy
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- **Initial:** fleet/tmux provider, including exact target, socket, identity, heartbeat, and safe attach semantics.
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- **Forward:** Matrix/native Mosaic provider using authenticated identity, idempotent transaction IDs, replay cursors, and the same contract suite.
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- Discord/CLI never call tmux or Matrix directly.
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## Plugin Families
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1. Channel: Discord now; other channels later.
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2. Runtime: Pi, fleet/tmux, Hermes, Matrix/native.
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3. Operator tools: fleet health, Mos handoff, GitOps wrappers, incident-safe diagnostics.
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4. Memory/state: search/recent/capture, durable inbox, checkpoint, handoff, compaction recovery.
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5. Migration: capability inventory, adapters, cutover, rollback, telemetry.
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## Deployment
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Tess runs as a rostered, systemd-supervised Pi agent using GPT-5.6 Sol and high reasoning. Secrets are supplied through approved runtime secret mechanisms. Startup fails when required model, gateway identity, Discord binding, or durable-state dependencies are missing. Health reports effective model/reasoning/tool policy without credential material.
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