2025-10-03 14:45:52 -04:00
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// Package commands contains utility functions for the snrd command
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package commands
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import (
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"crypto/sha256"
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"encoding/hex"
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"fmt"
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"os"
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"path/filepath"
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"github.com/sonr-io/sonr/app"
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2025-10-10 11:47:18 -04:00
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"github.com/sonr-io/crypto/vrf"
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2025-10-03 14:45:52 -04:00
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"github.com/spf13/cobra"
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)
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// VRFKeysCmd returns the VRF key management command
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func VRFKeysCmd() *cobra.Command {
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cmd := &cobra.Command{
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Use: "vrf",
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Short: "Manage VRF (Verifiable Random Function) keys",
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Long: `Manage VRF keys used for consensus-based encryption in multi-validator networks.
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VRF keys are required for:
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- Multi-validator encryption key derivation
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- Consensus-based key rotation
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- Deterministic randomness in distributed systems
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VRF keys are automatically generated during 'snrd init', but this command
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allows you to inspect or regenerate them if needed.`,
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}
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cmd.AddCommand(
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vrfGenerateCmd(),
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vrfShowCmd(),
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vrfVerifyCmd(),
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)
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return cmd
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}
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// vrfGenerateCmd creates a command to generate new VRF keys
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func vrfGenerateCmd() *cobra.Command {
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var chainID string
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var force bool
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cmd := &cobra.Command{
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Use: "generate",
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Short: "Generate new VRF keypair",
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Long: `Generate a new VRF keypair for the node.
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The keypair is generated deterministically from the chain-id to ensure
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reproducibility. Keys are stored at ~/.sonr/vrf_secret.key with 0600 permissions.
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WARNING: Regenerating VRF keys will invalidate any existing consensus-based
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encryption keys. Only do this if you understand the implications.`,
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Example: ` # Generate VRF keys for a specific chain
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snrd keys vrf generate --chain-id sonrtest_1-1
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# Force regenerate (overwrite existing keys)
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snrd keys vrf generate --chain-id sonrtest_1-1 --force`,
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RunE: func(cmd *cobra.Command, args []string) error {
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// Get chain-id
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if chainID == "" {
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// Try to read from genesis file
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var err error
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chainID, err = getChainIDFromGenesis()
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if err != nil {
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return fmt.Errorf("chain-id not provided and could not be read from genesis: %w\n"+
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"Please provide --chain-id flag", err)
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}
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}
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vrfKeyPath := filepath.Join(app.DefaultNodeHome, "vrf_secret.key")
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// Check if keys already exist
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if _, err := os.Stat(vrfKeyPath); err == nil && !force {
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return fmt.Errorf("VRF keys already exist at %s\n"+
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"Use --force flag to overwrite existing keys\n"+
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"WARNING: Overwriting keys will invalidate existing consensus encryption", vrfKeyPath)
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}
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// Backup existing keys if they exist
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if _, err := os.Stat(vrfKeyPath); err == nil && force {
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backupPath := vrfKeyPath + ".backup"
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if err := os.Rename(vrfKeyPath, backupPath); err != nil {
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return fmt.Errorf("failed to backup existing VRF keys: %w", err)
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}
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fmt.Printf("Backed up existing keys to: %s\n", backupPath)
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}
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// Generate VRF keys
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fmt.Printf("Generating VRF keypair for chain-id: %s\n", chainID)
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entropySource, err := createChainIDEntropySource(chainID)
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if err != nil {
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return fmt.Errorf("failed to create entropy source: %w", err)
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}
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privateKey, err := vrf.GenerateKey(entropySource)
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if err != nil {
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return fmt.Errorf("failed to generate VRF keypair: %w", err)
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}
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// Validate keypair
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if len(privateKey) != vrf.PrivateKeySize {
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return fmt.Errorf("invalid VRF private key size: expected %d, got %d",
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vrf.PrivateKeySize, len(privateKey))
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}
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publicKey, ok := privateKey.Public()
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if !ok {
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return fmt.Errorf("failed to derive public key from VRF private key")
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}
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// Ensure directory exists
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if err := os.MkdirAll(app.DefaultNodeHome, 0o750); err != nil {
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return fmt.Errorf("failed to create node home directory: %w", err)
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}
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// Store VRF secret key with restrictive permissions
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if err := os.WriteFile(vrfKeyPath, privateKey, 0o600); err != nil {
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return fmt.Errorf("failed to save VRF secret key: %w", err)
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}
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fmt.Printf("✓ VRF keypair generated successfully\n")
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fmt.Printf("✓ Private key stored at: %s\n", vrfKeyPath)
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fmt.Printf("✓ Public key (hex): %s\n", hex.EncodeToString(publicKey))
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fmt.Printf("✓ Key size: %d bytes\n", len(privateKey))
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fmt.Printf("✓ Permissions: 0600 (owner read/write only)\n")
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return nil
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},
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}
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cmd.Flags().StringVar(&chainID, "chain-id", "", "Chain ID for deterministic key generation")
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cmd.Flags().BoolVar(&force, "force", false, "Force overwrite existing VRF keys (creates backup)")
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return cmd
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}
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// vrfShowCmd creates a command to display VRF key information
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func vrfShowCmd() *cobra.Command {
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cmd := &cobra.Command{
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Use: "show",
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Short: "Show VRF public key information",
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Long: `Display information about the node's VRF public key.
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This command shows the public key without exposing the private key.
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Useful for verifying that VRF keys are properly installed.`,
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Example: ` # Show VRF key information
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snrd keys vrf show`,
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RunE: func(cmd *cobra.Command, args []string) error {
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vrfKeyPath := filepath.Join(app.DefaultNodeHome, "vrf_secret.key")
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// Read VRF private key
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// #nosec G304 - vrfKeyPath is constructed from trusted DefaultNodeHome constant
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privateKeyData, err := os.ReadFile(vrfKeyPath)
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if err != nil {
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return fmt.Errorf("failed to read VRF keys from %s: %w\n"+
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"VRF keys may not be initialized. Run 'snrd init' or 'snrd keys vrf generate'",
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vrfKeyPath, err)
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}
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// Validate key size
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if len(privateKeyData) != vrf.PrivateKeySize {
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return fmt.Errorf("invalid VRF private key size: expected %d, got %d",
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vrf.PrivateKeySize, len(privateKeyData))
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}
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privateKey := vrf.PrivateKey(privateKeyData)
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publicKey, ok := privateKey.Public()
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if !ok {
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return fmt.Errorf("failed to derive public key from VRF private key")
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}
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// Get file info
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fileInfo, err := os.Stat(vrfKeyPath)
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if err != nil {
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return fmt.Errorf("failed to stat VRF key file: %w", err)
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}
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fmt.Println("VRF Key Information:")
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fmt.Println("━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━")
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fmt.Printf("Key Path: %s\n", vrfKeyPath)
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fmt.Printf("Public Key: %s\n", hex.EncodeToString(publicKey))
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fmt.Printf("Key Size: %d bytes\n", len(privateKeyData))
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fmt.Printf("Public Key Size: %d bytes\n", len(publicKey))
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fmt.Printf("Permissions: %s\n", fileInfo.Mode().Perm())
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fmt.Printf("Modified: %s\n", fileInfo.ModTime().Format("2006-01-02 15:04:05"))
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// Verify permissions
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if fileInfo.Mode().Perm() != 0o600 {
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fmt.Println("\n⚠️ WARNING: VRF key file has incorrect permissions!")
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fmt.Printf(" Current: %s, Expected: 0600\n", fileInfo.Mode().Perm())
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fmt.Println(" Run: chmod 0600 " + vrfKeyPath)
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} else {
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fmt.Println("\n✓ VRF keys are properly configured")
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}
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return nil
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},
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}
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return cmd
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}
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// vrfVerifyCmd creates a command to verify VRF key functionality
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func vrfVerifyCmd() *cobra.Command {
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cmd := &cobra.Command{
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Use: "verify",
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Short: "Verify VRF key functionality",
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Long: `Verify that VRF keys are properly installed and functional.
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This command performs a test VRF computation to ensure the keys work correctly.`,
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Example: ` # Verify VRF keys
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snrd keys vrf verify`,
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RunE: func(cmd *cobra.Command, args []string) error {
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vrfKeyPath := filepath.Join(app.DefaultNodeHome, "vrf_secret.key")
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// Read VRF private key
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// #nosec G304 - vrfKeyPath is constructed from trusted DefaultNodeHome constant
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privateKeyData, err := os.ReadFile(vrfKeyPath)
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if err != nil {
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return fmt.Errorf("failed to read VRF keys: %w", err)
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}
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if len(privateKeyData) != vrf.PrivateKeySize {
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return fmt.Errorf("invalid VRF private key size: expected %d, got %d",
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vrf.PrivateKeySize, len(privateKeyData))
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}
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privateKey := vrf.PrivateKey(privateKeyData)
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publicKey, ok := privateKey.Public()
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if !ok {
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return fmt.Errorf("failed to derive public key")
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}
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// Test VRF computation with proof
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testInput := []byte("test-input-for-verification")
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vrfOutput, proof := privateKey.Prove(testInput)
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// Verify the output
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if !publicKey.Verify(testInput, vrfOutput, proof) {
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return fmt.Errorf("VRF verification failed - keys may be corrupted")
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}
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// Compute output hash
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outputHash := sha256.Sum256(vrfOutput)
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fmt.Println("VRF Key Verification:")
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fmt.Println("━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━")
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fmt.Printf("✓ VRF keys loaded successfully\n")
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fmt.Printf("✓ Public key derived successfully\n")
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fmt.Printf("✓ VRF proof generated successfully\n")
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fmt.Printf("✓ VRF verification successful\n")
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fmt.Printf("\nTest Output (hex): %s\n", hex.EncodeToString(vrfOutput))
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fmt.Printf("Proof (hex): %s\n", hex.EncodeToString(proof))
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fmt.Printf("Output Hash: %s\n", hex.EncodeToString(outputHash[:]))
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fmt.Println("\n✓ VRF keys are fully functional")
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return nil
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},
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}
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return cmd
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}
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