Files
mev-beta/orig/pkg/security/safe_conversions.go
Administrator 803de231ba feat: create v2-prep branch with comprehensive planning
Restructured project for V2 refactor:

**Structure Changes:**
- Moved all V1 code to orig/ folder (preserved with git mv)
- Created docs/planning/ directory
- Added orig/README_V1.md explaining V1 preservation

**Planning Documents:**
- 00_V2_MASTER_PLAN.md: Complete architecture overview
  - Executive summary of critical V1 issues
  - High-level component architecture diagrams
  - 5-phase implementation roadmap
  - Success metrics and risk mitigation

- 07_TASK_BREAKDOWN.md: Atomic task breakdown
  - 99+ hours of detailed tasks
  - Every task < 2 hours (atomic)
  - Clear dependencies and success criteria
  - Organized by implementation phase

**V2 Key Improvements:**
- Per-exchange parsers (factory pattern)
- Multi-layer strict validation
- Multi-index pool cache
- Background validation pipeline
- Comprehensive observability

**Critical Issues Addressed:**
- Zero address tokens (strict validation + cache enrichment)
- Parsing accuracy (protocol-specific parsers)
- No audit trail (background validation channel)
- Inefficient lookups (multi-index cache)
- Stats disconnection (event-driven metrics)

Next Steps:
1. Review planning documents
2. Begin Phase 1: Foundation (P1-001 through P1-010)
3. Implement parsers in Phase 2
4. Build cache system in Phase 3
5. Add validation pipeline in Phase 4
6. Migrate and test in Phase 5

🤖 Generated with [Claude Code](https://claude.com/claude-code)

Co-Authored-By: Claude <noreply@anthropic.com>
2025-11-10 10:14:26 +01:00

55 lines
1.6 KiB
Go

package security
import (
"fmt"
"math"
)
// SafeUint64ToUint32 converts uint64 to uint32 with overflow check
func SafeUint64ToUint32(value uint64) (uint32, error) {
if value > math.MaxUint32 {
return 0, fmt.Errorf("value %d exceeds maximum uint32 value %d", value, math.MaxUint32)
}
return uint32(value), nil
}
// SafeUint64ToInt64 converts uint64 to int64 with bounds check
func SafeUint64ToInt64(value uint64) (int64, error) {
if value > math.MaxInt64 {
return 0, fmt.Errorf("value %d exceeds maximum int64 value %d", value, math.MaxInt64)
}
return int64(value), nil
}
// SafeUint64ToUint32WithDefault converts uint64 to uint32 with overflow check and default value
func SafeUint64ToUint32WithDefault(value uint64, defaultValue uint32) uint32 {
if value > math.MaxUint32 {
return defaultValue
}
return uint32(value)
}
// SafeAddUint64 adds two uint64 values with overflow check
func SafeAddUint64(a, b uint64) (uint64, error) {
if a > math.MaxUint64-b {
return 0, fmt.Errorf("addition overflow: %d + %d exceeds maximum uint64 value", a, b)
}
return a + b, nil
}
// SafeSubtractUint64 subtracts b from a with underflow check
func SafeSubtractUint64(a, b uint64) (uint64, error) {
if a < b {
return 0, fmt.Errorf("subtraction underflow: %d - %d results in negative value", a, b)
}
return a - b, nil
}
// SafeMultiplyUint64 multiplies two uint64 values with overflow check
func SafeMultiplyUint64(a, b uint64) (uint64, error) {
if b != 0 && a > math.MaxUint64/b {
return 0, fmt.Errorf("multiplication overflow: %d * %d exceeds maximum uint64 value", a, b)
}
return a * b, nil
}