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2 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 7e04896394 | |||
| 0cdf6e7804 |
10
README.md
10
README.md
@@ -164,11 +164,9 @@ Offset | Size | Field | Description
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4 | 2 | Version | Format version (currently 1)
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6 | 32 | Pad Checksum | Binary pad checksum (32 bytes)
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38 | 8 | Pad Offset | Offset in pad file (uint64_t)
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46 | 2 | Filename Length | Original filename length (uint16_t)
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48 | var | Original Filename | Original filename string
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var | 4 | File Mode | Original file permissions (uint32_t)
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var | 8 | File Size | Original file size (uint64_t)
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var | var | Encrypted Data | XOR-encrypted file contents
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46 | 4 | File Mode | Original file permissions (uint32_t)
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50 | 8 | File Size | Original file size (uint64_t)
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58 | var | Encrypted Data | XOR-encrypted file contents
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```
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### .otp.asc File Format (ASCII Armored)
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@@ -185,7 +183,7 @@ Pad-Offset: <decimal-offset-value>
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-----END OTP MESSAGE-----
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```
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**Note:** ASCII armored files lose original filename and permission metadata.
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**Note:** ASCII armored files do not preserve original file permissions metadata.
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## Usage Examples
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45
otp.c
45
otp.c
@@ -1445,16 +1445,6 @@ int encrypt_file(const char* pad_identifier, const char* input_file, const char*
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// Pad offset: 8 bytes
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fwrite(¤t_offset, sizeof(uint64_t), 1, output_fp);
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// Original filename length and name
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const char* base_filename = strrchr(input_file, '/');
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if (base_filename) {
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base_filename++; // Skip the '/'
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} else {
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base_filename = input_file;
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}
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uint16_t filename_len = strlen(base_filename);
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fwrite(&filename_len, sizeof(uint16_t), 1, output_fp);
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fwrite(base_filename, 1, filename_len, output_fp);
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// File mode: 4 bytes
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uint32_t file_mode = input_stat.st_mode;
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@@ -1527,7 +1517,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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uint16_t version;
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unsigned char pad_chksum_bin[32];
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uint64_t pad_offset;
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uint16_t filename_len;
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uint32_t file_mode;
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uint64_t file_size;
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@@ -1535,7 +1524,8 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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fread(&version, sizeof(uint16_t), 1, input_fp) != 1 ||
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fread(pad_chksum_bin, 1, 32, input_fp) != 32 ||
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fread(&pad_offset, sizeof(uint64_t), 1, input_fp) != 1 ||
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fread(&filename_len, sizeof(uint16_t), 1, input_fp) != 1) {
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fread(&file_mode, sizeof(uint32_t), 1, input_fp) != 1 ||
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fread(&file_size, sizeof(uint64_t), 1, input_fp) != 1) {
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printf("Error: Cannot read binary header\n");
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fclose(input_fp);
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return 1;
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@@ -1547,25 +1537,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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return 1;
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}
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// Read original filename
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char* original_filename = malloc(filename_len + 1);
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if (fread(original_filename, 1, filename_len, input_fp) != filename_len) {
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printf("Error: Cannot read original filename\n");
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free(original_filename);
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fclose(input_fp);
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return 1;
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}
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original_filename[filename_len] = '\0';
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// Read remaining header
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if (fread(&file_mode, sizeof(uint32_t), 1, input_fp) != 1 ||
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fread(&file_size, sizeof(uint64_t), 1, input_fp) != 1) {
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printf("Error: Cannot read file metadata\n");
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free(original_filename);
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fclose(input_fp);
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return 1;
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}
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// Convert binary checksum to hex
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char pad_chksum_hex[65];
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for (int i = 0; i < 32; i++) {
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@@ -1574,7 +1545,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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pad_chksum_hex[64] = '\0';
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printf("Decrypting binary file...\n");
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printf("Original filename: %s\n", original_filename);
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printf("File size: %lu bytes\n", file_size);
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// Check if we have the required pad
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@@ -1586,7 +1556,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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printf("Error: Required pad not found: %s\n", pad_chksum_hex);
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printf("Available pads:\n");
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list_available_pads();
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free(original_filename);
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fclose(input_fp);
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return 1;
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}
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@@ -1594,8 +1563,7 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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// Determine output filename
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char default_output[512];
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if (output_file == NULL) {
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strncpy(default_output, original_filename, sizeof(default_output) - 1);
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default_output[sizeof(default_output) - 1] = '\0';
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snprintf(default_output, sizeof(default_output), "decrypted.bin");
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output_file = default_output;
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}
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@@ -1603,7 +1571,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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unsigned char* encrypted_data = malloc(file_size);
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if (fread(encrypted_data, 1, file_size, input_fp) != file_size) {
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printf("Error: Cannot read encrypted data\n");
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free(original_filename);
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free(encrypted_data);
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fclose(input_fp);
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return 1;
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@@ -1614,14 +1581,12 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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FILE* pad_file = fopen(pad_path, "rb");
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if (!pad_file) {
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printf("Error: Cannot open pad file\n");
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free(original_filename);
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free(encrypted_data);
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return 1;
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}
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if (fseek(pad_file, pad_offset, SEEK_SET) != 0) {
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printf("Error: Cannot seek to offset in pad file\n");
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free(original_filename);
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free(encrypted_data);
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fclose(pad_file);
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return 1;
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@@ -1630,7 +1595,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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unsigned char* pad_data = malloc(file_size);
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if (fread(pad_data, 1, file_size, pad_file) != file_size) {
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printf("Error: Cannot read pad data\n");
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free(original_filename);
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free(encrypted_data);
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free(pad_data);
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fclose(pad_file);
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@@ -1647,7 +1611,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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FILE* output_fp = fopen(output_file, "wb");
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if (!output_fp) {
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printf("Error: Cannot create output file %s\n", output_file);
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free(original_filename);
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free(encrypted_data);
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free(pad_data);
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return 1;
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@@ -1655,7 +1618,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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if (fwrite(encrypted_data, 1, file_size, output_fp) != file_size) {
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printf("Error: Cannot write decrypted data\n");
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free(original_filename);
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free(encrypted_data);
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free(pad_data);
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fclose(output_fp);
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@@ -1672,7 +1634,6 @@ int decrypt_binary_file(FILE* input_fp, const char* output_file) {
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printf("Restored permissions and metadata\n");
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// Cleanup
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free(original_filename);
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free(encrypted_data);
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free(pad_data);
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