424 lines
11 KiB
Go
424 lines
11 KiB
Go
/*
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|--------------------------------------------------------------------------
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| Cipher
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|--------------------------------------------------------------------------
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| Name:
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| - Cipher
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| Purpose:
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| - Provide reusable AES-256 encryption and decryption capabilities
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| supporting standard and salted file formats through a unified
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| interface.
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| Guidelines:
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| - Support only AES-256 operations.
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| - Preserve input immutability.
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| - Never expose sensitive values in error responses.
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| - Fail safely without producing partial output.
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| Examples:
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| - ObrimCipher("encrypt-standard", config)
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| - ObrimCipher("decrypt-salted", config)
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|--------------------------------------------------------------------------
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*/
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/*
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|--------------------------------------------------------------------------
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| Credit
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|--------------------------------------------------------------------------
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| Contributor:
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| - Rajon Ahmed
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| - Scionite
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|--------------------------------------------------------------------------
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*/
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package cipher
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import (
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"bytes"
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"crypto/aes"
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"crypto/cipher"
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"crypto/rand"
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"crypto/sha256"
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"encoding/json"
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"io"
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"os"
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"path/filepath"
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"go/module/essential/visible/service/helper/log"
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"go/module/essential/visible/service/helper/status"
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)
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const (
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obrimCipherAlgorithm = "AES-256"
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obrimCipherSignature = "OBRIMCIPHER"
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obrimCipherVersion = "1"
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obrimCipherSaltSize = 32
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)
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type obrimCipherResponse struct {
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Status bool `json:"status"`
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Code string `json:"code"`
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Payload any `json:"payload"`
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}
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// Function Name: ObrimCipher
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// Function Purpose: Execute encryption or decryption workflows.
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func ObrimCipher(operationType string, config map[string]any) map[string]any {
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log.ObrimLog("INIT", "Cipher utility started.")
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if errCode := obrimCipherValidateType(operationType); errCode != "" {
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return obrimCipherBuildResponse(false, errCode, nil)
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}
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if errCode := obrimCipherValidateConfig(config); errCode != "" {
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return obrimCipherBuildResponse(false, errCode, nil)
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}
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keyValue := config["key"].(string)
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if errCode := obrimCipherValidateKey(keyValue); errCode != "" {
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return obrimCipherBuildResponse(false, errCode, nil)
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}
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inputPath, err := obrimCipherResolvePath(config["input"].(string))
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_INPUT_PATH_VALIDATION", nil)
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}
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outputPath, err := obrimCipherResolvePath(config["output"].(string))
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_OUTPUT_PATH_VALIDATION", nil)
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}
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inputData, err := obrimCipherReadInput(inputPath)
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_SOURCE_FILE_ACCESS", nil)
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}
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switch operationType {
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case "encrypt-standard":
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outputData, err := obrimCipherEncryptStandard(inputData, []byte(keyValue))
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_ENCRYPTION", nil)
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}
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if err := obrimCipherWriteOutput(outputPath, outputData); err != nil {
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return obrimCipherBuildResponse(false, "FAILED_OUTPUT_WRITE", nil)
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}
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status.ObrimStatus("SUCCESS", "Encryption completed.")
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return obrimCipherBuildResponse(true, "SUCCESS_ENCRYPT_STANDARD", map[string]any{
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"operation": operationType,
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"algorithm": obrimCipherAlgorithm,
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"inputPath": inputPath,
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"outputPath": outputPath,
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})
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case "encrypt-salted":
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outputData, err := obrimCipherEncryptSalted(inputData, []byte(keyValue))
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_ENCRYPTION", nil)
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}
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if err := obrimCipherWriteOutput(outputPath, outputData); err != nil {
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return obrimCipherBuildResponse(false, "FAILED_OUTPUT_WRITE", nil)
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}
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return obrimCipherBuildResponse(true, "SUCCESS_ENCRYPT_SALTED", map[string]any{
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"operation": operationType,
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"algorithm": obrimCipherAlgorithm,
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"format": obrimCipherSignature,
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"version": obrimCipherVersion,
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"inputPath": inputPath,
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"outputPath": outputPath,
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})
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case "decrypt-standard":
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outputData, err := obrimCipherDecryptStandard(inputData, []byte(keyValue))
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_DECRYPTION", nil)
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}
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if err := obrimCipherWriteOutput(outputPath, outputData); err != nil {
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return obrimCipherBuildResponse(false, "FAILED_OUTPUT_WRITE", nil)
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}
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return obrimCipherBuildResponse(true, "SUCCESS_DECRYPT_STANDARD", map[string]any{
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"operation": operationType,
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"algorithm": obrimCipherAlgorithm,
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"inputPath": inputPath,
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"outputPath": outputPath,
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})
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case "decrypt-salted":
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signature, version, err := obrimCipherParseHeader(inputData)
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_SIGNATURE_VALIDATION", nil)
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}
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outputData, err := obrimCipherDecryptSalted(inputData, []byte(keyValue))
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if err != nil {
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return obrimCipherBuildResponse(false, "FAILED_DECRYPTION", nil)
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}
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if err := obrimCipherWriteOutput(outputPath, outputData); err != nil {
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return obrimCipherBuildResponse(false, "FAILED_OUTPUT_WRITE", nil)
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}
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return obrimCipherBuildResponse(true, "SUCCESS_DECRYPT_SALTED", map[string]any{
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"operation": operationType,
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"algorithm": obrimCipherAlgorithm,
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"format": signature,
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"version": version,
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"inputPath": inputPath,
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"outputPath": outputPath,
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})
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}
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return obrimCipherBuildResponse(false, "FAILED_OPERATION", nil)
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}
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// Function Name: obrimCipherValidateType
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// Function Purpose: Validate operation type selection.
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func obrimCipherValidateType(operationType string) string {
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switch operationType {
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case "encrypt-standard", "encrypt-salted", "decrypt-standard", "decrypt-salted":
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return ""
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default:
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return "FAILED_TYPE_VALIDATION"
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}
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}
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// Function Name: obrimCipherValidateConfig
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// Function Purpose: Validate configuration values.
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func obrimCipherValidateConfig(config map[string]any) string {
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if config == nil {
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return "FAILED_CONFIG_VALIDATION"
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}
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_, keyOK := config["key"].(string)
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_, inputOK := config["input"].(string)
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_, outputOK := config["output"].(string)
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if !keyOK || !inputOK || !outputOK {
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return "FAILED_CONFIG_VALIDATION"
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}
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return ""
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}
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// Function Name: obrimCipherValidateKey
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// Function Purpose: Validate AES-256 compatible key requirements.
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func obrimCipherValidateKey(key string) string {
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if len([]byte(key)) != 32 {
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return "FAILED_KEY_VALIDATION"
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}
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return ""
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}
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// Function Name: obrimCipherResolvePath
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// Function Purpose: Resolve relative paths into absolute paths.
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func obrimCipherResolvePath(path string) (string, error) {
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return filepath.Abs(path)
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}
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// Function Name: obrimCipherReadInput
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// Function Purpose: Read source file content.
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func obrimCipherReadInput(path string) ([]byte, error) {
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return os.ReadFile(path)
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}
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// Function Name: obrimCipherWriteOutput
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// Function Purpose: Write processed output to destination file.
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func obrimCipherWriteOutput(path string, data []byte) error {
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tempPath := path + ".tmp"
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if err := os.WriteFile(tempPath, data, 0600); err != nil {
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return err
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}
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return os.Rename(tempPath, path)
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}
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// Function Name: obrimCipherBuildResponse
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// Function Purpose: Build standardized utility responses.
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func obrimCipherBuildResponse(statusValue bool, code string, payload any) map[string]any {
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response := obrimCipherResponse{
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Status: statusValue,
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Code: code,
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Payload: payload,
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}
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buffer, _ := json.Marshal(response)
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var result map[string]any
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_ = json.Unmarshal(buffer, &result)
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return result
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}
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// Function Name: obrimCipherEncryptStandard
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// Function Purpose: Encrypt data using AES-256 without salt metadata.
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func obrimCipherEncryptStandard(data []byte, key []byte) ([]byte, error) {
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return obrimCipherEncrypt(data, key)
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}
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// Function Name: obrimCipherGenerateSalt
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// Function Purpose: Generate a cryptographically secure random salt.
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func obrimCipherGenerateSalt() ([]byte, error) {
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salt := make([]byte, obrimCipherSaltSize)
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_, err := io.ReadFull(rand.Reader, salt)
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return salt, err
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}
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// Function Name: obrimCipherBuildHeader
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// Function Purpose: Build encrypted file signature and version header.
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func obrimCipherBuildHeader() []byte {
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return []byte(obrimCipherSignature + ":" + obrimCipherVersion + ":")
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}
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// Function Name: obrimCipherEncryptSalted
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// Function Purpose: Encrypt data using AES-256 with embedded salt metadata.
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func obrimCipherEncryptSalted(data []byte, key []byte) ([]byte, error) {
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salt, err := obrimCipherGenerateSalt()
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if err != nil {
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return nil, err
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}
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derivedKey := sha256.Sum256(append(key, salt...))
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ciphertext, err := obrimCipherEncrypt(data, derivedKey[:])
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if err != nil {
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return nil, err
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}
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output := bytes.Buffer{}
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output.Write(obrimCipherBuildHeader())
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output.Write(salt)
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output.Write(ciphertext)
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return output.Bytes(), nil
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}
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// Function Name: obrimCipherDecryptStandard
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// Function Purpose: Decrypt AES-256 encrypted data without salt metadata.
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func obrimCipherDecryptStandard(data []byte, key []byte) ([]byte, error) {
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return obrimCipherDecrypt(data, key)
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}
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// Function Name: obrimCipherParseHeader
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// Function Purpose: Parse encrypted file signature and version metadata.
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func obrimCipherParseHeader(data []byte) (string, string, error) {
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header := obrimCipherBuildHeader()
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if len(data) < len(header) {
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return "", "", os.ErrInvalid
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}
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if !bytes.Equal(data[:len(header)], header) {
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return "", "", os.ErrInvalid
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}
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return obrimCipherSignature, obrimCipherVersion, nil
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}
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// Function Name: obrimCipherExtractSalt
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// Function Purpose: Extract embedded salt from encrypted data.
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func obrimCipherExtractSalt(data []byte) ([]byte, error) {
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headerLength := len(obrimCipherBuildHeader())
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if len(data) < headerLength+obrimCipherSaltSize {
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return nil, os.ErrInvalid
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}
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return data[headerLength : headerLength+obrimCipherSaltSize], nil
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}
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// Function Name: obrimCipherExtractPayload
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// Function Purpose: Extract encrypted payload from the encrypted file.
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func obrimCipherExtractPayload(data []byte) ([]byte, error) {
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headerLength := len(obrimCipherBuildHeader())
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offset := headerLength + obrimCipherSaltSize
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if len(data) <= offset {
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return nil, os.ErrInvalid
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}
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return data[offset:], nil
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}
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// Function Name: obrimCipherDecryptSalted
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// Function Purpose: Decrypt AES-256 encrypted data using extracted salt metadata.
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func obrimCipherDecryptSalted(data []byte, key []byte) ([]byte, error) {
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salt, err := obrimCipherExtractSalt(data)
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if err != nil {
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return nil, err
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}
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payload, err := obrimCipherExtractPayload(data)
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if err != nil {
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return nil, err
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}
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derivedKey := sha256.Sum256(append(key, salt...))
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return obrimCipherDecrypt(payload, derivedKey[:])
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}
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// Function Name: obrimCipherEncrypt
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// Function Purpose: Perform AES-256 GCM encryption.
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func obrimCipherEncrypt(data []byte, key []byte) ([]byte, error) {
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block, err := aes.NewCipher(key)
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if err != nil {
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return nil, err
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}
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gcm, err := cipher.NewGCM(block)
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if err != nil {
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return nil, err
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}
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// Logic:
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nonce := make([]byte, gcm.NonceSize())
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if _, err := io.ReadFull(rand.Reader, nonce); err != nil {
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return nil, err
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}
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ciphertext := gcm.Seal(nil, nonce, data, nil)
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return append(nonce, ciphertext...), nil
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}
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// Function Name: obrimCipherDecrypt
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// Function Purpose: Perform AES-256 GCM decryption.
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func obrimCipherDecrypt(data []byte, key []byte) ([]byte, error) {
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block, err := aes.NewCipher(key)
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if err != nil {
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return nil, err
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}
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gcm, err := cipher.NewGCM(block)
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if err != nil {
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return nil, err
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}
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nonceSize := gcm.NonceSize()
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if len(data) < nonceSize {
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return nil, os.ErrInvalid
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}
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nonce := data[:nonceSize]
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ciphertext := data[nonceSize:]
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return gcm.Open(nil, nonce, ciphertext, nil)
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}
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