docs: Add Panopticum Phase 1 - Sovereign Indexes and layer docs
Non-breaking changes to align with Panopticum repository architecture:
- Add Sovereign Indexes (l0_transport.zig, l1_identity.zig)
- Single import point for each layer
- Re-export all layer modules
- Add layer README files
- l0-transport/README.md: LWF and Time documentation
- l1-identity/README.md: All L1 components documented
- AI-friendly, colocated documentation
- Update root README.md
- Add Sovereign Index usage examples
- Update L0 component list
Benefits:
- Simplified imports: `const l0 = @import("l0_transport.zig");`
- Self-contained layer documentation for AI agents
- Zero breaking changes (existing imports still work)
Phase 1 complete. Deferred: Feature folders, colocated tests (Phase 2-3)
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README.md
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README.md
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@ -68,16 +68,25 @@ The Libertaria SDK provides the foundational L0 (Transport) and L1 (Identity/Cry
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## Layers
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### L0: Transport Layer
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**Module:** `l0-transport/`
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**Module:** `l0-transport/` | **Index:** `l0_transport.zig`
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Implements the core wire protocol:
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- **LWF Frame Codec** - Encode/decode wire frames
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- **UTCP** - Reliable transport over UDP (future)
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- **LWF Frame Codec** - Encode/decode wire frames (RFC-0000, 72-byte header)
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- **Sovereign Time** - L0 transport timestamps (u64 nanoseconds)
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- **Frame Validation** - Checksum, signature verification
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- **Priority Queues** - Traffic shaping
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- **Priority Queues** - Traffic shaping (future)
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**Key Files:**
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- `l0_transport.zig` - **Sovereign Index** (re-exports all L0 modules)
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- `lwf.zig` - LWF frame structure and codec
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- `time.zig` - Time primitives
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**Quick Start:**
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```zig
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const l0 = @import("l0_transport.zig");
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var frame = try l0.lwf.LWFFrame.init(allocator, 1024);
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frame.header.timestamp = l0.time.nowNanoseconds();
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```
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- `utcp.zig` - UTCP transport (future)
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- `validation.zig` - Frame validation logic
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@ -0,0 +1,78 @@
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# L0 Transport Layer
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**Layer:** L0 (Transport)
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**Purpose:** Wire protocols, frame encoding, time primitives
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**RFCs:** RFC-0000 (LWF), RFC-0105 (Time L0 component)
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---
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## Overview
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The L0 Transport layer provides low-level wire protocol implementations for the Libertaria network. It handles packet framing, serialization, and transport-layer timestamps.
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## Components
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### LWF (Libertaria Wire Frame) - `lwf.zig`
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**RFC:** RFC-0000
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**Size:** 72-byte header + payload + 36-byte trailer
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Wire protocol implementation with:
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- Fixed 72-byte header (24-byte DID hints, u64 nanosecond timestamp)
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- Variable payload (1092-8892 bytes depending on frame class)
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- 36-byte trailer (Ed25519 signature + CRC32 checksum)
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- Frame classes (Constrained, Standard, Ethernet, Bulk, Jumbo)
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**Key Types:**
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- `LWFHeader` - 72-byte fixed header
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- `LWFTrailer` - 36-byte signature + checksum
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- `LWFFrame` - Complete frame wrapper
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- `FrameClass` - Size negotiation enum
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### Time - `time.zig`
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**RFC:** RFC-0105 (L0 component)
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**Precision:** u64 nanoseconds (584-year range)
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Transport-layer time primitives:
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- `u64` nanosecond timestamps for drift detection
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- Monotonic clock access
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- Replay protection timestamps
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**Note:** L1 uses full `SovereignTimestamp` (u128 attoseconds) for causal ordering.
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---
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## Usage
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```zig
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const l0 = @import("l0_transport.zig");
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// Create LWF frame
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var frame = try l0.lwf.LWFFrame.init(allocator, 1024);
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defer frame.deinit(allocator);
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// Set header fields
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frame.header.service_type = 0x0700; // Vector message
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frame.header.timestamp = l0.time.nowNanoseconds();
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// Encode for transport
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const encoded = try frame.encode(allocator);
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defer allocator.free(encoded);
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```
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---
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## Testing
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Run L0 tests:
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```bash
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zig test l0-transport/lwf.zig
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zig test l0-transport/time.zig
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```
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---
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## Dependencies
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- `std.mem` - Memory management
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- `std.crypto` - CRC32, hashing
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- `std.time` - System time access
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const std = @import("std");
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// Re-export LWF (Libertaria Wire Frame)
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pub const lwf = @import("l0-transport/lwf.zig");
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// Re-export Time primitives
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pub const time = @import("l0-transport/time.zig");
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test {
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std.testing.refAllDecls(@This());
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}
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# L1 Identity Layer
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**Layer:** L1 (Identity)
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**Purpose:** Decentralized identity, cryptography, trust graphs, vectors
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**RFCs:** RFC-0105 (Sovereign Time), RFC-0120 (QVL)
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---
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## Overview
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The L1 Identity layer provides cryptographic identity primitives, trust relationship management, and the QuasarVector Lattice (QVL) for event-driven consensus.
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## Components
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### DID (Decentralized Identifiers) - `did.zig`
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**Spec:** `did:libertaria:...` format
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DID generation and parsing:
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- Blake3-based DID derivation from public keys
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- 24-byte routing hints (192-bit)
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- Base58 encoding for human readability
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### SoulKey (Identity Keys) - `soulkey.zig`
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**Crypto:** Ed25519
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Core identity keypair management:
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- Key generation, storage, derivation
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- Signing and verification
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- Seed phrase support
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### QuasarVector - `vector.zig`
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**RFC:** RFC-0120
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Event lattice vectors:
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- Ed25519 signatures
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- `SovereignTimestamp` (u128 attoseconds)
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- Proof-of-Path integration
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- Vector validation pipeline
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### TrustGraph - `trust_graph.zig`
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**Pattern:** Web-of-trust
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Decentralized trust relationships:
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- Trust grant/revoke operations
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- Path finding (Dijkstra)
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- Trust weight calculation
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- Graph serialization
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### ProofOfPath - `proof_of_path.zig`
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**RFC:** RFC-0120
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Trust path verification:
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- Multi-hop signature chains
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- Path expiration checking
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- Hop limit enforcement
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### Entropy - `entropy.zig`
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**RFC:** RFC-0100
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Entropy stamps for Sybil resistance:
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- Blake3-based proof-of-work
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- Difficulty calibration (0-255)
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- Verification logic
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### Crypto - `crypto.zig`
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Cryptographic primitives wrapper:
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- Ed25519 (signing)
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- X25519 (key exchange)
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- Blake3 (hashing)
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- XChaCha20-Poly1305 (encryption)
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### Argon2 - `argon2.zig`
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**FFI:** C library wrapper
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Password hashing:
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- Argon2id for SoulKey seed derivation
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- Memory-hard KDF
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### PQXDH - `pqxdh.zig`
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**Protocol:** Post-Quantum Extended Diffie-Hellman
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Future-proof key exchange:
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- Hybrid classical + PQ security
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- X25519 + Kyber integration (planned)
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### PreKey - `prekey.zig`
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**Protocol:** X3DH prekey bundles
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Asynchronous messaging:
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- Prekey bundle generation
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- Signal-style forward secrecy
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---
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## Usage
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```zig
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const l1 = @import("l1_identity.zig");
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// Generate identity
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const soulkey = try l1.soulkey.SoulKey.generate(allocator);
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const did = try l1.did.fromPublicKey(&soulkey.public_key);
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// Create vector
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var vector = try l1.vector.QuasarVector.create(allocator, soulkey, payload_data);
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defer vector.deinit(allocator);
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// Sign and verify
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try vector.sign(soulkey);
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const valid = vector.verifySignature();
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```
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---
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## Testing
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Run L1 tests:
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```bash
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zig build test
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# Or individual modules:
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zig test l1-identity/vector.zig
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zig test l1-identity/trust_graph.zig
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```
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---
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## Dependencies
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- `std.crypto` - Ed25519, X25519, Blake3
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- `vendor/argon2/` - Argon2 C library
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- L0 Time (`time.zig`) - SovereignTimestamp
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const std = @import("std");
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// Re-export Identity modules
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pub const did = @import("l1-identity/did.zig");
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pub const soulkey = @import("l1-identity/soulkey.zig");
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pub const vector = @import("l1-identity/vector.zig");
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pub const trust_graph = @import("l1-identity/trust_graph.zig");
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pub const proof_of_path = @import("l1-identity/proof_of_path.zig");
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pub const entropy = @import("l1-identity/entropy.zig");
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pub const crypto = @import("l1-identity/crypto.zig");
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pub const argon2 = @import("l1-identity/argon2.zig");
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pub const pqxdh = @import("l1-identity/pqxdh.zig");
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pub const prekey = @import("l1-identity/prekey.zig");
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test {
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std.testing.refAllDecls(@This());
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}
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