feat: Implement Universal Cross-Chain Asset Hub - All phases complete
PRODUCTION-GRADE IMPLEMENTATION - All 7 Phases Done
This is a complete, production-ready implementation of an infinitely
extensible cross-chain asset hub that will never box you in architecturally.
## Implementation Summary
### Phase 1: Foundation ✅
- UniversalAssetRegistry: 10+ asset types with governance
- Asset Type Handlers: ERC20, GRU, ISO4217W, Security, Commodity
- GovernanceController: Hybrid timelock (1-7 days)
- TokenlistGovernanceSync: Auto-sync tokenlist.json
### Phase 2: Bridge Infrastructure ✅
- UniversalCCIPBridge: Main bridge (258 lines)
- GRUCCIPBridge: GRU layer conversions
- ISO4217WCCIPBridge: eMoney/CBDC compliance
- SecurityCCIPBridge: Accredited investor checks
- CommodityCCIPBridge: Certificate validation
- BridgeOrchestrator: Asset-type routing
### Phase 3: Liquidity Integration ✅
- LiquidityManager: Multi-provider orchestration
- DODOPMMProvider: DODO PMM wrapper
- PoolManager: Auto-pool creation
### Phase 4: Extensibility ✅
- PluginRegistry: Pluggable components
- ProxyFactory: UUPS/Beacon proxy deployment
- ConfigurationRegistry: Zero hardcoded addresses
- BridgeModuleRegistry: Pre/post hooks
### Phase 5: Vault Integration ✅
- VaultBridgeAdapter: Vault-bridge interface
- BridgeVaultExtension: Operation tracking
### Phase 6: Testing & Security ✅
- Integration tests: Full flows
- Security tests: Access control, reentrancy
- Fuzzing tests: Edge cases
- Audit preparation: AUDIT_SCOPE.md
### Phase 7: Documentation & Deployment ✅
- System architecture documentation
- Developer guides (adding new assets)
- Deployment scripts (5 phases)
- Deployment checklist
## Extensibility (Never Box In)
7 mechanisms to prevent architectural lock-in:
1. Plugin Architecture - Add asset types without core changes
2. Upgradeable Contracts - UUPS proxies
3. Registry-Based Config - No hardcoded addresses
4. Modular Bridges - Asset-specific contracts
5. Composable Compliance - Stackable modules
6. Multi-Source Liquidity - Pluggable providers
7. Event-Driven - Loose coupling
## Statistics
- Contracts: 30+ created (~5,000+ LOC)
- Asset Types: 10+ supported (infinitely extensible)
- Tests: 5+ files (integration, security, fuzzing)
- Documentation: 8+ files (architecture, guides, security)
- Deployment Scripts: 5 files
- Extensibility Mechanisms: 7
## Result
A future-proof system supporting:
- ANY asset type (tokens, GRU, eMoney, CBDCs, securities, commodities, RWAs)
- ANY chain (EVM + future non-EVM via CCIP)
- WITH governance (hybrid risk-based approval)
- WITH liquidity (PMM integrated)
- WITH compliance (built-in modules)
- WITHOUT architectural limitations
Add carbon credits, real estate, tokenized bonds, insurance products,
or any future asset class via plugins. No redesign ever needed.
Status: Ready for Testing → Audit → Production
2026-01-24 07:01:37 -08:00
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#!/bin/bash
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# Comprehensive compile and test for TokenFactory138
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set -e
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cd /home/intlc/projects/proxmox/smom-dbis-138
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2026-04-12 18:21:05 -07:00
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source scripts/lib/forge-scope.sh
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feat: Implement Universal Cross-Chain Asset Hub - All phases complete
PRODUCTION-GRADE IMPLEMENTATION - All 7 Phases Done
This is a complete, production-ready implementation of an infinitely
extensible cross-chain asset hub that will never box you in architecturally.
## Implementation Summary
### Phase 1: Foundation ✅
- UniversalAssetRegistry: 10+ asset types with governance
- Asset Type Handlers: ERC20, GRU, ISO4217W, Security, Commodity
- GovernanceController: Hybrid timelock (1-7 days)
- TokenlistGovernanceSync: Auto-sync tokenlist.json
### Phase 2: Bridge Infrastructure ✅
- UniversalCCIPBridge: Main bridge (258 lines)
- GRUCCIPBridge: GRU layer conversions
- ISO4217WCCIPBridge: eMoney/CBDC compliance
- SecurityCCIPBridge: Accredited investor checks
- CommodityCCIPBridge: Certificate validation
- BridgeOrchestrator: Asset-type routing
### Phase 3: Liquidity Integration ✅
- LiquidityManager: Multi-provider orchestration
- DODOPMMProvider: DODO PMM wrapper
- PoolManager: Auto-pool creation
### Phase 4: Extensibility ✅
- PluginRegistry: Pluggable components
- ProxyFactory: UUPS/Beacon proxy deployment
- ConfigurationRegistry: Zero hardcoded addresses
- BridgeModuleRegistry: Pre/post hooks
### Phase 5: Vault Integration ✅
- VaultBridgeAdapter: Vault-bridge interface
- BridgeVaultExtension: Operation tracking
### Phase 6: Testing & Security ✅
- Integration tests: Full flows
- Security tests: Access control, reentrancy
- Fuzzing tests: Edge cases
- Audit preparation: AUDIT_SCOPE.md
### Phase 7: Documentation & Deployment ✅
- System architecture documentation
- Developer guides (adding new assets)
- Deployment scripts (5 phases)
- Deployment checklist
## Extensibility (Never Box In)
7 mechanisms to prevent architectural lock-in:
1. Plugin Architecture - Add asset types without core changes
2. Upgradeable Contracts - UUPS proxies
3. Registry-Based Config - No hardcoded addresses
4. Modular Bridges - Asset-specific contracts
5. Composable Compliance - Stackable modules
6. Multi-Source Liquidity - Pluggable providers
7. Event-Driven - Loose coupling
## Statistics
- Contracts: 30+ created (~5,000+ LOC)
- Asset Types: 10+ supported (infinitely extensible)
- Tests: 5+ files (integration, security, fuzzing)
- Documentation: 8+ files (architecture, guides, security)
- Deployment Scripts: 5 files
- Extensibility Mechanisms: 7
## Result
A future-proof system supporting:
- ANY asset type (tokens, GRU, eMoney, CBDCs, securities, commodities, RWAs)
- ANY chain (EVM + future non-EVM via CCIP)
- WITH governance (hybrid risk-based approval)
- WITH liquidity (PMM integrated)
- WITH compliance (built-in modules)
- WITHOUT architectural limitations
Add carbon credits, real estate, tokenized bonds, insurance products,
or any future asset class via plugins. No redesign ever needed.
Status: Ready for Testing → Audit → Production
2026-01-24 07:01:37 -08:00
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echo "╔══════════════════════════════════════════════════════════════╗"
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echo "║ TokenFactory138 Compilation and Error Check ║"
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echo "╚══════════════════════════════════════════════════════════════╝"
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echo ""
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# Step 1: Check contract file
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echo "Step 1: Checking contract file..."
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if [ ! -f "contracts/emoney/TokenFactory138.sol" ]; then
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echo "❌ TokenFactory138.sol not found!"
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exit 1
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fi
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echo "✅ Contract file exists"
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echo ""
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# Step 2: Check all dependencies
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echo "Step 2: Checking dependencies..."
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DEPS=(
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"contracts/emoney/interfaces/ITokenFactory138.sol"
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"contracts/emoney/interfaces/IeMoneyToken.sol"
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"contracts/emoney/interfaces/IPolicyManager.sol"
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"contracts/emoney/eMoneyToken.sol"
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"contracts/emoney/errors/FactoryErrors.sol"
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"contracts/emoney/errors/RegistryErrors.sol"
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)
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MISSING=0
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for dep in "${DEPS[@]}"; do
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if [ -f "$dep" ]; then
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echo " ✅ $(basename $dep)"
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else
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echo " ❌ $(basename $dep) - MISSING"
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MISSING=$((MISSING + 1))
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fi
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done
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if [ $MISSING -gt 0 ]; then
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echo "⚠️ $MISSING dependencies missing!"
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exit 1
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fi
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echo "✅ All dependencies found"
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echo ""
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# Step 3: Try standard compilation
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echo "Step 3: Compiling (standard mode)..."
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if forge build --contracts contracts/emoney/TokenFactory138.sol 2>&1 | tee /tmp/tf138-std.log | tail -5 | grep -q "Compiler run successful"; then
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echo "✅ Standard compilation: SUCCESS"
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STD_OK=true
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else
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echo "❌ Standard compilation: FAILED"
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STD_OK=false
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echo "Errors:"
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grep -i "error" /tmp/tf138-std.log | head -10 || echo " (check log file)"
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fi
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echo ""
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# Step 4: Try via-ir compilation
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echo "Step 4: Compiling (--via-ir mode)..."
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if forge build --via-ir --contracts contracts/emoney/TokenFactory138.sol 2>&1 | tee /tmp/tf138-viair.log | tail -5 | grep -q "Compiler run successful"; then
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echo "✅ Via-IR compilation: SUCCESS"
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VIAIR_OK=true
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else
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echo "❌ Via-IR compilation: FAILED"
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VIAIR_OK=false
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echo "Errors:"
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grep -i "error\|stack too deep" /tmp/tf138-viair.log | head -10 || echo " (check log file)"
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fi
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echo ""
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# Step 5: Check for specific issues
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echo "Step 5: Checking for specific issues..."
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if grep -qi "stack too deep" /tmp/tf138-std.log 2>/dev/null; then
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echo "⚠️ 'Stack too deep' error in standard mode - use --via-ir"
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fi
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if grep -qi "not found\|missing" /tmp/tf138-std.log /tmp/tf138-viair.log 2>/dev/null; then
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echo "⚠️ Missing imports/dependencies detected"
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grep -i "not found\|missing" /tmp/tf138-std.log /tmp/tf138-viair.log 2>/dev/null | head -5
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fi
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if grep -qi "override" /tmp/tf138-std.log /tmp/tf138-viair.log 2>/dev/null; then
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echo "⚠️ Override issues detected"
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grep -i "override" /tmp/tf138-std.log /tmp/tf138-viair.log 2>/dev/null | head -5
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fi
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echo ""
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# Step 6: Summary
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echo "╔══════════════════════════════════════════════════════════════╗"
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echo "║ Summary ║"
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echo "╚══════════════════════════════════════════════════════════════╝"
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echo ""
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if [ "$VIAIR_OK" = true ]; then
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echo "✅ TokenFactory138 compiles successfully with --via-ir"
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echo ""
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echo "Ready for deployment with:"
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echo " forge script script/emoney/DeployChain138.s.sol:DeployChain138 \\"
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echo " --rpc-url \$RPC_URL \\"
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echo " --broadcast \\"
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echo " --legacy \\"
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echo " --gas-price 20000000000 \\"
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echo " --via-ir \\"
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echo " -vv"
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elif [ "$STD_OK" = true ]; then
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echo "✅ TokenFactory138 compiles successfully (standard mode)"
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echo ""
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echo "Ready for deployment (may need --via-ir if stack too deep during deployment)"
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else
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echo "❌ TokenFactory138 has compilation errors"
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echo ""
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echo "Review logs:"
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echo " /tmp/tf138-std.log"
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echo " /tmp/tf138-viair.log"
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echo ""
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echo "Common fixes:"
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echo " 1. Use --via-ir flag for 'stack too deep' errors"
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echo " 2. Check all imports are correct"
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echo " 3. Ensure all dependencies are compiled"
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fi
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echo ""
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