391 lines
16 KiB
Markdown
391 lines
16 KiB
Markdown
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# Word of Wisdom Protocol Specification
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## Overview
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The **Word of Wisdom** protocol is a TCP-based challenge-response protocol designed to mitigate DDoS attacks by requiring clients to solve a **Proof-of-Work (PoW)** puzzle before accessing protected resources (quotes).
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The protocol uses **HMAC-signed challenges** for stateless server operation, aggressive timeouts to prevent slowloris attacks, and a simple binary framing with JSON payloads. It is **stateless** on the server thanks to HMAC-signed challenges, eliminating the need for challenge storage.
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## Proof of Work Algorithm Choice
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### Selected Algorithm: SHA-256 Hashcash with HMAC Authentication
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The protocol uses **SHA-256 based Hashcash** with **HMAC-signed challenges** for secure, stateless operation.
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For detailed analysis of alternative PoW algorithms and comprehensive justification of this choice, see [POW_ANALYSIS.md](./POW_ANALYSIS.md).
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### Key Benefits
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- **Proven Security**: Battle-tested in Bitcoin with 15+ years of production experience
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- **Stateless Server**: HMAC signatures eliminate challenge storage, enabling horizontal scaling
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- **Universal Compatibility**: No memory requirements ensure compatibility across all client types
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- **Fast Verification**: Near-instant verification enables high server throughput under attack
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- **Adjustable Difficulty**: Fine-grained control through leading zero bits (3-10 bits practical range)
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### Difficulty Scaling Strategy
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- **Normal Operations**: 4-bit difficulty (average 16 hash attempts)
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- **Load-Based Adjustment**: +1 bit difficulty when server load exceeds threshold
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- **Failure-Based Penalty**: +2 bits per 5 failed attempts in 2-minute window (capped at +6 extra bits)
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- **Success Reset**: Failure counter resets to zero after successful solution
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## Protocol Flow
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### Successful Flow
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```
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Client Server
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|-------- CHALLENGE_REQUEST ------------->|
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|<------- CHALLENGE_RESPONSE -------------| (HMAC-signed)
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|-------- SOLUTION_REQUEST -------------->|
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|<------- QUOTE_RESPONSE -----------------| (if solution valid)
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```
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### Error Flow
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```
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Client Server
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|-------- CHALLENGE_REQUEST ------------->|
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|<------- CHALLENGE_RESPONSE -------------|
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|-------- SOLUTION_REQUEST (invalid) ---->|
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|<------- ERROR_RESPONSE -----------------| (if solution invalid)
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```
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## Message Format
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All protocol messages use a binary format with the following structure:
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```
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+------------------+------------------+------------------+
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| Message Type | Length | Payload |
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| (1 byte) | (4 bytes) | (N bytes) |
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+------------------+------------------+------------------+
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```
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- **Message Type**: Single byte indicating message type (see table below)
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- **Length**: 32-bit big-endian integer indicating payload length in bytes
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- **Payload**: Variable-length payload (can be empty, maximum 8KB for security)
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### Encoding Details
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- **Endianness**: All multi-byte integers use big-endian encoding
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- **JSON Format**: UTF-8 encoding, compact format (no pretty-printing)
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- **Size Limits**: Maximum 8KB payload to prevent memory exhaustion attacks
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## Message Types
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| Type | Value | Name | Direction | Description |
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|------|-------|------|-----------|-------------|
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| 0x01 | CHALLENGE_REQUEST | Client → Server | Client requests a new PoW challenge |
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| 0x02 | CHALLENGE_RESPONSE | Server → Client | Server issues HMAC-signed challenge |
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| 0x03 | SOLUTION_REQUEST | Client → Server | Client submits challenge + nonce |
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| 0x04 | QUOTE_RESPONSE | Server → Client | Server sends quote (if solution valid) |
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| 0x05 | ERROR_RESPONSE | Server → Client | Server reports an error |
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## Message Payloads
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### CHALLENGE_REQUEST (0x01)
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- **Payload**: Empty
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- **Description**: Client requests a new challenge from the server
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- **Usage**: First message in the protocol flow
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### CHALLENGE_RESPONSE (0x02)
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- **Payload**: JSON-encoded challenge object
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- **Description**: Server provides HMAC-signed challenge for PoW computation
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- **Format**:
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```json
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{
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"id": "challenge_unique_id",
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"timestamp": 1640995200,
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"difficulty": 4,
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"resource": "192.168.1.100:8080",
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"random": "a1b2c3d4e5f6",
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"hmac": "base64url_encoded_signature"
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}
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```
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**Field Descriptions**:
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- **id**: Unique identifier for this challenge
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- **timestamp**: Unix timestamp when challenge was created
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- **difficulty**: Number of leading zero bits required in solution hash
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- **resource**: Server resource identifier (typically IP:port)
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- **random**: Random hex string for challenge uniqueness
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- **hmac**: HMAC-SHA256 signature of canonical challenge fields
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**Security Notes**:
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- Server is **stateless**: no need to store challenges locally
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- HMAC signature prevents challenge forgery and tampering
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- Timestamp enables TTL validation without server-side storage
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### SOLUTION_REQUEST (0x03)
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- **Payload**: JSON-encoded solution object
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- **Description**: Client submits PoW solution with original challenge
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- **Format**:
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```json
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{
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"challenge": {
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"id": "challenge_unique_id",
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"timestamp": 1640995200,
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"difficulty": 4,
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"resource": "192.168.1.100:8080",
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"random": "a1b2c3d4e5f6",
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"hmac": "base64url_encoded_signature"
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},
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"nonce": "solution_nonce_value"
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}
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```
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**Requirements**:
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- Client must echo the complete original challenge object
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- Nonce must produce a valid PoW hash with required difficulty
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- Challenge must not be expired (within TTL window)
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### QUOTE_RESPONSE (0x04)
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- **Payload**: JSON-encoded quote object
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- **Description**: Server sends inspirational quote after successful PoW verification
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- **Format**:
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```json
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{
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"text": "The only way to do great work is to love what you do.",
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"author": "Steve Jobs",
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"category": "motivation"
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}
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```
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**Field Descriptions**:
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- **text**: The inspirational quote text
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- **author**: Attribution for the quote
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- **category**: Thematic category (motivation, wisdom, success, etc.)
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### ERROR_RESPONSE (0x05)
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- **Payload**: JSON-encoded error object
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- **Description**: Server reports errors in client requests or server state
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- **Format**:
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```json
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{
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"code": "INVALID_SOLUTION",
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"message": "The provided PoW solution is incorrect",
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"retry_after": 30
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}
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```
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**Field Descriptions**:
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- **code**: Machine-readable error code (see Error Codes section)
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- **message**: Human-readable error description
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- **retry_after**: Optional delay in seconds before client should retry
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## Error Codes
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| Code | Description | Client Action | Server Action |
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|------|-------------|---------------|---------------|
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| **MALFORMED_MESSAGE** | Invalid frame format or JSON parsing error | Disconnect and retry with correct format | Log error and close connection |
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| **INVALID_CHALLENGE** | Challenge HMAC signature verification failed | Request new challenge from server | Generate new valid challenge |
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| **INVALID_SOLUTION** | PoW hash verification failed for submitted nonce | Retry with correct nonce computation | Log failed attempt for rate limiting |
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| **EXPIRED_CHALLENGE** | Challenge timestamp exceeds TTL window | Request fresh challenge from server | Generate new challenge with current timestamp |
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| **RATE_LIMITED** | Client exceeds request rate limits | Wait for `retry_after` seconds before retry | Apply temporary throttling to client IP |
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| **SERVER_ERROR** | Internal server error or temporary unavailability | Retry connection after delay | Log error and investigate system health |
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| **TOO_MANY_CONNECTIONS** | Server at maximum connection capacity | Retry connection later | Reject new connections until capacity available |
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| **DIFFICULTY_TOO_HIGH** | Adaptive difficulty exceeds client capabilities | Request new challenge or give up | May reduce difficulty if appropriate |
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### Error Response Format
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All errors follow the consistent ERROR_RESPONSE format:
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```json
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{
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"code": "ERROR_CODE_NAME",
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"message": "Human readable description of the error",
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"retry_after": 30,
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"details": {
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"additional_context": "Optional additional error context"
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}
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}
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```
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### Error Handling Strategy
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- **Client Errors**: Provide specific actionable error codes
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- **Server Errors**: Log detailed information server-side, return generic client errors
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- **Rate Limiting**: Include retry timing information in error responses
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- **Security**: Avoid exposing internal system details in error messages
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## Hashcash Challenge Format
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The server uses **SHA-256 based Hashcash** with **HMAC authentication** for Proof of Work challenges.
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### Challenge String Structure
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```
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resource:timestamp:difficulty:random
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```
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**Example**:
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```
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192.168.1.100:8080:1640995200:4:a1b2c3d4e5f6
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```
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### Solution Process
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1. **Receive**: Client receives HMAC-signed challenge from server
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2. **Extract**: Client extracts challenge fields to construct challenge string
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3. **Iterate**: Client appends different nonce values to challenge string
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4. **Hash**: Client computes SHA-256 hash of `challenge_string:nonce`
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5. **Check**: Client checks if hash has required number of leading zero bits
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6. **Repeat**: If not valid, increment nonce and repeat from step 4
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7. **Submit**: When valid nonce found, submit solution to server
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### Verification Process
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Server verifies solutions through the following steps:
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1. **HMAC Verification**: Verify challenge HMAC signature against server secret
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2. **TTL Check**: Verify challenge timestamp is within TTL window (5 minutes)
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3. **Reconstruction**: Reconstruct challenge string from submitted challenge fields
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4. **Hash Computation**: Compute SHA-256 hash of `challenge_string:nonce`
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5. **Difficulty Check**: Verify hash has required number of leading zero bits
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6. **Success**: If all checks pass, grant access to quote resource
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### Difficulty Examples
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| Difficulty | Leading Zero Bits | Average Attempts | Example Hash |
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|------------|-------------------|------------------|---------------|
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| 3 | 3 bits | 8 | `000a1b2c...` |
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| 4 | 4 bits | 16 | `0001a2b3...` |
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| 5 | 5 bits | 32 | `0000a1b2...` |
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| 6 | 6 bits | 64 | `00001a2b...` |
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## Connection Management
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### Connection Lifecycle
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1. **Connect**: Client establishes TCP connection to server
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2. **Challenge**: Client requests and receives HMAC-signed challenge
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3. **Solve**: Client solves PoW challenge offline (can take time)
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4. **Submit**: Client submits solution with challenge proof
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5. **Receive**: Client receives quote (if valid) or error (if invalid)
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6. **Disconnect**: Connection closes automatically after response
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### Timeouts and Limits
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| Parameter | Value | Purpose |
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|-----------|-------|----------|
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| **Challenge TTL** | 5 minutes | Prevents stale challenge reuse |
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| **Solution Timeout** | 5 seconds | Prevents slowloris attacks |
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| **Connection Timeout** | 15 seconds | Limits connection holding time |
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| **Message Size Limit** | 8KB | Prevents memory exhaustion |
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| **Max Connections** | 1000 | Global server capacity limit |
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### Timeout Behavior
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- **Challenge Expiry**: Challenges become invalid after 5 minutes from timestamp
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- **Solution Window**: Client has 5 seconds to submit solution after challenge
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- **Connection Limits**: Connections auto-close after 15 seconds of inactivity
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- **Resource Protection**: Aggressive timeouts prevent resource exhaustion attacks
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## Rate Limiting & DDOS Protection
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### Connection-Level Protection (HAProxy/Envoy)
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Handled **before application layer** by reverse proxy:
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| Metric | Limit | Purpose |
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|--------|-------|----------|
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| **New Connections/sec** | ≤10 per IP | Prevents connection flooding |
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| **Concurrent Connections** | ≤20 per IP | Limits resource usage per client |
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| **Burst Allowance** | 30 connections | Handles legitimate traffic spikes |
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| **Global Connection Cap** | 1000 total | Protects server capacity |
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### Application-Level Protection
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#### Failed Solution Tracking
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- **Counter**: Track invalid solution attempts per client IP/identifier
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- **Window**: Rolling 2-minute time window for failure counting
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- **Penalty**: Each group of 5 failures increases difficulty by +2 bits
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- **Cap**: Maximum +6 additional difficulty bits to prevent client DOS
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- **Reset**: Successful solution resets failure counter to zero
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#### Adaptive Difficulty Scaling
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- **Load-Based**: +1 difficulty bit when server CPU/memory exceeds threshold
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- **Attack Response**: Automatic difficulty increase during detected attacks
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- **Recovery**: Gradual difficulty reduction as attack subsides
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- **Monitoring**: Continuous monitoring of success/failure ratios
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### Rate Limiting Rules
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| Rule | Limit | Action |
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|------|-------|--------|
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| **Challenge Requests** | 10 per minute per IP | Temporary IP throttling |
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| **Solution Attempts** | 5 per minute per IP | Increased difficulty penalty |
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| **Invalid Solutions** | 5 per 2 minutes | +2 difficulty bits |
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| **Connection Frequency** | 10 per second per IP | Connection rejection |
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## Security Considerations
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### PoW Security
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- **Minimum Difficulty**: 3 leading zero bits (prevents trivial bypass attempts)
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- **Maximum Difficulty**: 10 leading zero bits (prevents excessive client DOS)
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- **Dynamic Scaling**: Adjusts automatically based on server load and attack patterns
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- **CPU-Bound Work**: Memory-independent computation ensures fairness across hardware
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### Challenge Security
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- **Uniqueness**: Each challenge includes timestamp and cryptographic random data
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- **Expiration**: Challenges automatically expire after 5-minute TTL window
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- **HMAC Authentication**: Prevents challenge forgery and tampering
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- **Stateless Verification**: No server-side storage required for validation
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- **Replay Protection**: Timestamp and HMAC combination prevents replay attacks
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### Input Validation
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- **Message Size**: Strict 8KB maximum per message (prevents memory exhaustion)
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- **JSON Schema**: All JSON payloads validated against strict schemas
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- **Challenge Format**: Rigorous validation of challenge structure and fields
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- **Nonce Validation**: Proper integer bounds checking for nonce values
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- **Encoding Validation**: UTF-8 encoding validation for all text fields
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### Network Security
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- **Connection Limits**: Per-IP and global connection rate limiting
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- **Timeout Protection**: Aggressive timeouts prevent slowloris attacks
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- **Resource Binding**: Challenges tied to client connection context
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- **Error Information**: Limited error details to prevent information disclosure
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### Operational Security
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- **HMAC Secret**: Server maintains secret key for challenge signing
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- **Logging**: Comprehensive attack detection and monitoring
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- **Metrics**: Real-time visibility into attack patterns and system health
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- **Graceful Degradation**: System remains functional under attack conditions
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## Implementation Notes
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### Protocol Implementation
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- **Endianness**: All multi-byte integers use big-endian encoding for consistency
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- **JSON Encoding**: UTF-8 encoding for all text, compact format (no pretty-printing)
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- **Required Fields**: All JSON fields marked as required must be present
|
||
|
|
- **Optional Fields**: Handle optional fields gracefully with sensible defaults
|
||
|
|
|
||
|
|
### Server Implementation
|
||
|
|
- **HMAC Secret**: Server maintains cryptographically secure secret key
|
||
|
|
- **Challenge Generation**: Use cryptographically secure random number generator
|
||
|
|
- **Quote Storage**: Preload quotes from file/database on startup
|
||
|
|
- **Concurrent Handling**: Support for multiple simultaneous client connections
|
||
|
|
- **Resource Management**: Proper cleanup of connections and temporary resources
|
||
|
|
|
||
|
|
### Client Implementation
|
||
|
|
- **PoW Computation**: Efficient nonce iteration and hash computation
|
||
|
|
- **Connection Management**: Proper TCP connection lifecycle handling
|
||
|
|
- **Error Handling**: Graceful handling of all error conditions
|
||
|
|
- **Retry Logic**: Intelligent retry with exponential backoff
|
||
|
|
|
||
|
|
### Error Handling
|
||
|
|
- **Server Errors**: Always send ERROR_RESPONSE for client-detectable errors
|
||
|
|
- **Logging**: Comprehensive server-side logging for debugging and monitoring
|
||
|
|
- **Connection Termination**: Graceful connection closure on errors
|
||
|
|
- **Client Recovery**: Clients should handle errors and retry appropriately
|
||
|
|
|
||
|
|
### Performance Considerations
|
||
|
|
- **Keep-Alive**: Not supported (one quote per connection for simplicity)
|
||
|
|
- **Connection Pooling**: Server supports concurrent connection handling
|
||
|
|
- **Memory Efficiency**: Minimal memory footprint per connection
|
||
|
|
- **CPU Efficiency**: Optimized hash computation and verification
|
||
|
|
- **Scalability**: Stateless design enables horizontal scaling
|
||
|
|
|
||
|
|
### Future Extensions
|
||
|
|
- **Resource Types**: Protocol designed to support resources beyond quotes
|
||
|
|
- **Authentication**: Framework supports future authentication mechanisms
|
||
|
|
- **Compression**: Payload compression can be added without protocol changes
|
||
|
|
- **Encryption**: TLS termination recommended at load balancer level
|