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17 changed files with 434 additions and 317 deletions

2
.gitignore vendored
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@@ -1,6 +1,8 @@
otp otp
pads/ pads/
files/
Gemini.md Gemini.md
TropicOfCancer-HenryMiller.txt TropicOfCancer-HenryMiller.txt
.gitea_token
# Auto-generated files (none currently) # Auto-generated files (none currently)

165
build.sh
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@@ -150,38 +150,151 @@ update_source_version() {
fi fi
} }
# Build functions # Cross-platform build functions
build_project() { check_cross_compiler() {
print_status "Cleaning previous build..." if ! command -v aarch64-linux-gnu-gcc > /dev/null 2>&1; then
make clean print_error "ARM64/AArch64 cross-compiler not found!"
increment_version print_error "Install with: sudo apt install gcc-aarch64-linux-gnu"
print_status "Building OTP project..." print_error "Or on other distros: gcc-cross-aarch64"
make return 1
fi
return 0
}
upload_release_asset() {
local api_url="$1"
local token="$2"
local version="$3"
local filename="$4"
local display_name="$5"
if [ ! -f "$filename" ]; then
print_warning "Binary $filename not found, skipping upload"
return 1
fi
print_status "Uploading $filename as '$display_name' to release..."
# Get release ID first
local release_id=$(curl -s -H "Authorization: token $token" \
"$api_url/releases/tags/$version" | \
grep -o '"id":[0-9]*' | head -n1 | cut -d: -f2)
if [ -z "$release_id" ]; then
print_error "Could not get release ID for $version"
return 1
fi
# Upload the asset using multipart/form-data
curl -X POST "$api_url/releases/$release_id/assets" \
-H "Authorization: token $token" \
-F "attachment=@$filename;filename=$display_name"
if [ $? -eq 0 ]; then if [ $? -eq 0 ]; then
print_success "Build completed successfully" print_success "Uploaded $filename as '$display_name' successfully"
else else
print_error "Build failed" print_warning "Failed to upload $filename"
return 1 return 1
fi fi
} }
build_static() { create_gitea_release() {
local version="$1"
# Read token from ~/.gitea_token
if [ ! -f "$HOME/.gitea_token" ]; then
print_error "No ~/.gitea_token found. Cannot create release."
print_error "Create ~/.gitea_token with your Gitea access token"
return 1
fi
local token=$(cat "$HOME/.gitea_token" | tr -d '\n\r')
local api_url="https://git.laantungir.net/api/v1/repos/laantungir/otp"
print_status "Creating Gitea release for $version..."
# Create release
local response=$(curl -s -X POST "$api_url/releases" \
-H "Authorization: token $token" \
-H "Content-Type: application/json" \
-d "{\"tag_name\": \"$version\", \"name\": \"$version\", \"body\": \"Automated release for $version\"}")
if echo "$response" | grep -q '"id"'; then
print_success "Created release $version"
# Upload binaries with descriptive names
upload_release_asset "$api_url" "$token" "$version" "otp-x86_64" "otp-${version}-linux-x86_64"
upload_release_asset "$api_url" "$token" "$version" "otp-arm64" "otp-${version}-linux-arm64"
else
print_warning "Release may already exist or creation failed"
print_status "Response: $response"
# Try to upload to existing release anyway
upload_release_asset "$api_url" "$token" "$version" "otp-x86_64" "otp-${version}-linux-x86_64"
upload_release_asset "$api_url" "$token" "$version" "otp-arm64" "otp-${version}-linux-arm64"
fi
}
build_project() {
print_status "Cleaning previous build..." print_status "Cleaning previous build..."
make clean make clean
increment_version increment_version
print_status "Building OTP project with static linking..."
make static # Check for cross-compiler
if [ $? -eq 0 ]; then if ! check_cross_compiler; then
print_success "Static build completed successfully" print_warning "ARM64/AArch64 cross-compiler not available, building x86_64 only"
# Build x86_64 only
print_status "Building OTP project for x86_64..."
make CC=gcc
if [ $? -eq 0 ]; then
mv otp otp-x86_64
print_success "x86_64 build completed successfully"
else
print_error "x86_64 build failed"
return 1
fi
else else
print_error "Static build failed" # Build both architectures
return 1 print_status "Building OTP project for x86_64..."
make clean
make CC=gcc
if [ $? -eq 0 ]; then
mv otp otp-x86_64
print_success "x86_64 build completed successfully"
else
print_error "x86_64 build failed"
return 1
fi
print_status "Building OTP project for ARM64/AArch64..."
make clean
make CC=aarch64-linux-gnu-gcc
if [ $? -eq 0 ]; then
mv otp otp-arm64
print_success "ARM64/AArch64 build completed successfully"
else
print_error "ARM64/AArch64 build failed"
return 1
fi
fi fi
# Create Gitea release with binaries
if [ -f "$HOME/.gitea_token" ]; then
create_gitea_release "$NEW_VERSION"
else
print_warning "No ~/.gitea_token found. Skipping release creation."
print_warning "Create ~/.gitea_token with your Gitea access token to enable releases."
fi
print_success "Build completed successfully"
} }
clean_project() { clean_project() {
print_status "Cleaning build artifacts..." print_status "Cleaning build artifacts..."
make clean make clean
# Remove cross-compiled binaries
rm -f otp-x86_64 otp-arm64
print_success "Clean completed" print_success "Clean completed"
} }
@@ -212,9 +325,6 @@ case "${1:-build}" in
build) build)
build_project build_project
;; ;;
static)
build_static
;;
clean) clean)
clean_project clean_project
;; ;;
@@ -226,22 +336,29 @@ case "${1:-build}" in
;; ;;
*) *)
echo "OTP Cipher Build Script" echo "OTP Cipher Build Script"
echo "Usage: $0 [-m \"commit message\"] {build|static|clean|install|uninstall}" echo "Usage: $0 [-m \"commit message\"] {build|clean|install|uninstall}"
echo "" echo ""
echo "Options:" echo "Options:"
echo " -m, --message \"text\" - Specify commit message (skips interactive prompt)" echo " -m, --message \"text\" - Specify commit message (skips interactive prompt)"
echo "" echo ""
echo "Commands:" echo "Commands:"
echo " build - Build project with automatic version increment (default)" echo " build - Cross-compile for x86_64 and ARM64/AArch64 with automatic version increment (default)"
echo " static - Build with static linking and version increment" echo " clean - Clean build artifacts and cross-compiled binaries"
echo " clean - Clean build artifacts"
echo " install - Install to system (requires build first)" echo " install - Install to system (requires build first)"
echo " uninstall - Remove from system" echo " uninstall - Remove from system"
echo "" echo ""
echo "Build Output:"
echo " otp-x86_64 - Native x86_64 binary"
echo " otp-arm64 - ARM64/AArch64 binary for Raspberry Pi (if cross-compiler available)"
echo ""
echo "Gitea Integration:"
echo " - Automatically creates releases with binaries if ~/.gitea_token exists"
echo " - Requires: ARM64 cross-compiler (gcc-aarch64-linux-gnu)"
echo ""
echo "Examples:" echo "Examples:"
echo " $0" echo " $0"
echo " $0 -m \"Fixed checksum parsing bug\"" echo " $0 -m \"Fixed checksum parsing bug\""
echo " $0 --message \"Added new feature\" static" echo " $0 --message \"Added new feature\" build"
exit 1 exit 1
;; ;;
esac esac

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@@ -1,7 +0,0 @@
-----BEGIN OTP MESSAGE-----
Version: v1.0.0
Pad-ChkSum: d0aaeb745bfbc62b1ed8c0eca4f8dc016f4fd9ed49130979f2bb25a2a3c8192e
Pad-Offset: 128
6+JsEJWRpLI2Z62tSw3EMiIjyTWVk0IfSek1to0/nYPXrswMzCtlultBcA==
-----END OTP MESSAGE-----

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@@ -1 +0,0 @@
Test file content for decryption

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@@ -1 +0,0 @@
Hello, this is a test file for encryption!

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@@ -1,7 +0,0 @@
-----BEGIN OTP MESSAGE-----
Version: v0.2.29
Pad-ChkSum: d0d4a489354348b08d8c7b324814d8c50010042e9da47f2c973f32a16a09101b
Pad-Offset: 57
05S8GfS0tFfczNMUz0xrieFGoPSREM4uo5QhFGoBCcOzjfTXTDMt3hRtAQ==
-----END OTP MESSAGE-----

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@@ -1 +0,0 @@
This is a test file for encryption.

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BIN
otp-arm64 Executable file

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BIN
otp-x86_64 Executable file

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320
otp.c
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@@ -14,6 +14,7 @@
#include <fcntl.h> #include <fcntl.h>
#include <math.h> #include <math.h>
#include "nostr_chacha20.h" #include "nostr_chacha20.h"
#include "otp.h"
// Custom base64 character set // Custom base64 character set
static const char base64_chars[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"; static const char base64_chars[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
@@ -44,150 +45,15 @@ static const int base64_decode_table[256] = {
#define FILES_DIR "files" #define FILES_DIR "files"
#define MAX_ENTROPY_BUFFER 32768 // 32KB entropy buffer #define MAX_ENTROPY_BUFFER 32768 // 32KB entropy buffer
// Decrypt operation modes for universal decrypt function ////////////////////////////////////////////////////////////////////////////////
typedef enum { ////////////////////////////////////////////////////////////////////////////////
DECRYPT_MODE_INTERACTIVE, // Interactive text decryption with prompts // GLOBAL VARIABLES
DECRYPT_MODE_SILENT, // Silent text decryption (no prompts/labels) ////////////////////////////////////////////////////////////////////////////////
DECRYPT_MODE_FILE_TO_TEXT, // File to text output with prompts ////////////////////////////////////////////////////////////////////////////////
DECRYPT_MODE_FILE_TO_FILE // File to file output (binary)
} decrypt_mode_t;
// Global variable for current pads directory (can be local or OTP thumb drive)
static char current_pads_dir[512] = DEFAULT_PADS_DIR; static char current_pads_dir[512] = DEFAULT_PADS_DIR;
// Global variable for default pad path from preferences
static char default_pad_path[1024] = ""; static char default_pad_path[1024] = "";
static int is_interactive_mode = 0;
// Global variable for pipe mode detection
static int is_pipe_mode = 0;
// Function prototypes
int main(int argc, char* argv[]);
int interactive_mode(void);
int command_line_mode(int argc, char* argv[]);
int pipe_mode(int argc, char* argv[], const char* piped_text);
// Stdin detection functions
int has_stdin_data(void);
char* read_stdin_text(void);
// Preferences management functions
int load_preferences(void);
int save_preferences(void);
char* get_preference(const char* key);
int set_preference(const char* key, const char* value);
char* get_default_pad_path(void);
int set_default_pad_path(const char* pad_path);
// OTP thumb drive detection function
int detect_otp_thumb_drive(char* otp_drive_path, size_t path_size);
// Editor and file manager functions
char* get_preferred_editor(void);
char* get_preferred_file_manager(void);
int launch_text_editor(const char* initial_content, char* result_buffer, size_t buffer_size);
int launch_file_manager(const char* start_directory, char* selected_file, size_t buffer_size);
// Core functions
int generate_pad(uint64_t size_bytes, int show_progress);
int encrypt_text(const char* pad_identifier, const char* input_text);
int decrypt_text(const char* pad_identifier, const char* encrypted_message);
int encrypt_file(const char* pad_identifier, const char* input_file, const char* output_file, int ascii_armor);
int decrypt_file(const char* input_file, const char* output_file);
int decrypt_binary_file(FILE* input_fp, const char* output_file);
int decrypt_ascii_file(const char* input_file, const char* output_file);
// Enhanced entropy system functions
typedef struct {
size_t target_bytes; // Target entropy to collect
size_t collected_bytes; // Bytes collected so far
size_t unique_keys; // Number of unique keys pressed
double collection_start_time; // Start timestamp
double last_keypress_time; // Last keypress timestamp
unsigned char quality_score; // Entropy quality (0-100)
int auto_complete_enabled; // Allow auto-complete at minimum
unsigned char key_histogram[256]; // Track key frequency
} entropy_collection_state_t;
int setup_raw_terminal(struct termios* original_termios);
void restore_terminal(struct termios* original_termios);
int collect_entropy_with_feedback(unsigned char* entropy_buffer, size_t target_bytes,
size_t* collected_bytes, int allow_early_exit);
void display_entropy_progress(const entropy_collection_state_t* state);
void draw_progress_bar(double percentage, int width);
void draw_quality_bar(double quality, int width, const char* label);
double calculate_timing_quality(const entropy_collection_state_t* state);
double calculate_variety_quality(const entropy_collection_state_t* state);
unsigned char calculate_overall_quality(const entropy_collection_state_t* state);
double get_precise_time(void);
int derive_chacha20_params(const unsigned char* entropy_data, size_t entropy_size,
unsigned char key[32], unsigned char nonce[12]);
int add_entropy_to_pad(const char* pad_chksum, const unsigned char* entropy_data,
size_t entropy_size, int show_progress);
int handle_add_entropy_to_pad(const char* pad_chksum);
// Enhanced entropy system helper functions
int update_pad_checksum_after_entropy(const char* old_chksum, char* new_chksum);
int rename_pad_files_safely(const char* old_chksum, const char* new_chksum);
int is_pad_unused(const char* pad_chksum);
// Directory management
int ensure_pads_directory(void);
void get_pad_path(const char* chksum, char* pad_path, char* state_path);
const char* get_files_directory(void);
void get_default_file_path(const char* filename, char* result_path, size_t result_size);
// Utility functions
uint64_t parse_size_string(const char* size_str);
char* find_pad_by_prefix(const char* prefix);
int show_pad_info(const char* chksum);
void show_progress(uint64_t current, uint64_t total, time_t start_time);
// File operations
int read_state_offset(const char* pad_chksum, uint64_t* offset);
int write_state_offset(const char* pad_chksum, uint64_t offset);
int calculate_checksum(const char* filename, char* checksum_hex);
// Universal core functions for code consolidation
int universal_xor_operation(const unsigned char* data, size_t data_len,
const unsigned char* pad_data, unsigned char* result);
int parse_ascii_message(const char* message, char* chksum, uint64_t* offset, char* base64_data);
int load_pad_data(const char* pad_chksum, uint64_t offset, size_t length, unsigned char** pad_data);
int generate_ascii_armor(const char* chksum, uint64_t offset, const unsigned char* encrypted_data,
size_t data_length, char** ascii_output);
int validate_pad_integrity(const char* pad_path, const char* expected_chksum);
// Universal decrypt function - consolidates all decrypt operations
int universal_decrypt(const char* input_data, const char* output_target, decrypt_mode_t mode);
char* custom_base64_encode(const unsigned char* input, int length);
unsigned char* custom_base64_decode(const char* input, int* output_length);
// Menu functions
void show_main_menu(void);
int handle_generate_menu(void);
int handle_encrypt_menu(void);
int handle_decrypt_menu(void);
int handle_pads_menu(void);
int handle_text_encrypt(void);
int handle_file_encrypt(void);
// Enhanced input functions
int get_filename_with_default(const char* prompt, const char* default_path, char* result, size_t result_size);
// Directory display functions
void get_directory_display(const char* file_path, char* result, size_t result_size);
// Unified pad selection function
typedef enum {
PAD_FILTER_ALL, // Show all pads
PAD_FILTER_UNUSED_ONLY // Show only unused pads (0% usage)
} pad_filter_type_t;
char* select_pad_interactive(const char* title, const char* prompt, pad_filter_type_t filter_type, int allow_cancel);
void print_usage(const char* program_name);
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
@@ -199,19 +65,14 @@ int main(int argc, char* argv[]) {
// Load preferences first // Load preferences first
load_preferences(); load_preferences();
// Check for all forms of piped input first (before any output) // Detect interactive mode: only true when running with no arguments
is_pipe_mode = (argc == 1 && has_stdin_data()) || has_stdin_data(); is_interactive_mode = (argc == 1);
// Check for decrypt command with piped input
int is_decrypt_pipe = (argc == 2 &&
(strcmp(argv[1], "decrypt") == 0 || strcmp(argv[1], "-d") == 0) &&
has_stdin_data());
// Check for OTP thumb drive on startup // Check for OTP thumb drive on startup
char otp_drive_path[512]; char otp_drive_path[512];
if (detect_otp_thumb_drive(otp_drive_path, sizeof(otp_drive_path))) { if (detect_otp_thumb_drive(otp_drive_path, sizeof(otp_drive_path))) {
// Only show messages in non-pipe mode // Only show messages in interactive mode
if (!is_pipe_mode && !is_decrypt_pipe) { if (is_interactive_mode) {
printf("Detected OTP thumb drive: %s\n", otp_drive_path); printf("Detected OTP thumb drive: %s\n", otp_drive_path);
printf("Using as default pads directory for this session.\n\n"); printf("Using as default pads directory for this session.\n\n");
} }
@@ -219,28 +80,7 @@ int main(int argc, char* argv[]) {
current_pads_dir[sizeof(current_pads_dir) - 1] = '\0'; current_pads_dir[sizeof(current_pads_dir) - 1] = '\0';
} }
if (is_pipe_mode) { if (is_interactive_mode) {
// Check if this is a decrypt command with piped input
if (argc == 2 && (strcmp(argv[1], "decrypt") == 0 || strcmp(argv[1], "-d") == 0)) {
// Piped decrypt mode - read stdin and decrypt silently
char* piped_message = read_stdin_text();
if (piped_message) {
int result = decrypt_text(NULL, piped_message);
free(piped_message);
return result;
}
} else {
// Regular pipe mode for encryption
char* piped_text = read_stdin_text();
if (piped_text) {
int result = pipe_mode(argc, argv, piped_text);
free(piped_text);
return result;
}
}
// If reading stdin failed, fall back to interactive mode
return interactive_mode();
} else if (argc == 1) {
return interactive_mode(); return interactive_mode();
} else { } else {
return command_line_mode(argc, argv); return command_line_mode(argc, argv);
@@ -278,6 +118,16 @@ int command_line_mode(int argc, char* argv[]) {
return generate_pad(size, 1); // Use simplified pad generation return generate_pad(size, 1); // Use simplified pad generation
} }
else if (strcmp(argv[1], "encrypt") == 0 || strcmp(argv[1], "-e") == 0) { else if (strcmp(argv[1], "encrypt") == 0 || strcmp(argv[1], "-e") == 0) {
// Check for piped input first
if (has_stdin_data()) {
char* piped_text = read_stdin_text();
if (piped_text) {
int result = pipe_mode(argc, argv, piped_text);
free(piped_text);
return result;
}
}
if (argc < 2 || argc > 4) { if (argc < 2 || argc > 4) {
printf("Usage: %s encrypt|-e [pad_chksum_or_prefix] [text_to_encrypt]\n", argv[0]); printf("Usage: %s encrypt|-e [pad_chksum_or_prefix] [text_to_encrypt]\n", argv[0]);
return 1; return 1;
@@ -480,7 +330,7 @@ int interactive_mode(void) {
void show_main_menu(void) { void show_main_menu(void) {
printf("\n=========================== Main Menu - OTP v0.2.107 ===========================\n\n"); printf("\n=========================== Main Menu - OTP v0.3.6 ===========================\n\n");
printf(" \033[4mT\033[0mext encrypt\n"); //TEXT ENCRYPT printf(" \033[4mT\033[0mext encrypt\n"); //TEXT ENCRYPT
printf(" \033[4mF\033[0mile encrypt\n"); //FILE ENCRYPT printf(" \033[4mF\033[0mile encrypt\n"); //FILE ENCRYPT
@@ -548,7 +398,7 @@ int handle_encrypt_menu(void) {
if (choice == 1) { if (choice == 1) {
// Text encryption - use unified pad selection // Text encryption - use unified pad selection
char* selected_pad = select_pad_interactive("=== Select Pad for Text Encryption ===", char* selected_pad = select_pad_interactive("=== Select Pad for Text Encryption ===",
"Select pad (by prefix or number)", "Select pad (by prefix)",
PAD_FILTER_ALL, 1); PAD_FILTER_ALL, 1);
if (!selected_pad) { if (!selected_pad) {
printf("Text encryption cancelled.\n"); printf("Text encryption cancelled.\n");
@@ -836,30 +686,7 @@ char* find_pad_by_prefix(const char* prefix) {
} }
} }
// If no hex prefix matches and it looks like a small number, try number selection // Only prefix matching is supported
if (match_count == 0) {
char* endptr;
int selection = strtol(prefix, &endptr, 10);
if (*endptr == '\0' && selection > 0 && selection <= 100) {
// It's a number, find the nth pad
int current = 0;
rewinddir(dir);
while ((entry = readdir(dir)) != NULL) {
if (entry->d_name[0] == '.') continue;
if (!strstr(entry->d_name, ".pad")) continue;
if (strlen(entry->d_name) != 68) continue;
current++;
if (current == selection) {
matches[match_count] = malloc(65);
strncpy(matches[match_count], entry->d_name, 64);
matches[match_count][64] = '\0';
match_count = 1;
break;
}
}
}
}
closedir(dir); closedir(dir);
@@ -877,32 +704,11 @@ char* find_pad_by_prefix(const char* prefix) {
} else { } else {
printf("Multiple matches found for '%s':\n", prefix); printf("Multiple matches found for '%s':\n", prefix);
for (int i = 0; i < match_count; i++) { for (int i = 0; i < match_count; i++) {
printf("%d. %.16s...\n", i + 1, matches[i]); printf(" %.16s...\n", matches[i]);
} }
printf("Please be more specific or enter a number (1-%d): ", match_count); printf("Please be more specific with your prefix.\n");
fflush(stdout);
char choice_input[64]; // Free all matches and return NULL
if (fgets(choice_input, sizeof(choice_input), stdin)) {
choice_input[strcspn(choice_input, "\n")] = 0;
// Check if it's a number
char* endptr;
int choice = strtol(choice_input, &endptr, 10);
if (*endptr == '\0' && choice >= 1 && choice <= match_count) {
// Valid choice, return selected pad
char* result = matches[choice - 1];
// Free the others
for (int i = 0; i < match_count; i++) {
if (i != choice - 1) {
free(matches[i]);
}
}
return result;
}
}
// Invalid choice or no input, free all and return NULL
for (int i = 0; i < match_count; i++) { for (int i = 0; i < match_count; i++) {
free(matches[i]); free(matches[i]);
} }
@@ -1271,8 +1077,6 @@ int add_entropy_to_pad(const char* pad_chksum, const unsigned char* entropy_data
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
int encrypt_text(const char* pad_identifier, const char* input_text) { int encrypt_text(const char* pad_identifier, const char* input_text) {
char* pad_chksum = find_pad_by_prefix(pad_identifier); char* pad_chksum = find_pad_by_prefix(pad_identifier);
if (!pad_chksum) { if (!pad_chksum) {
@@ -1324,15 +1128,15 @@ int encrypt_text(const char* pad_identifier, const char* input_text) {
text_buffer[sizeof(text_buffer) - 1] = '\0'; text_buffer[sizeof(text_buffer) - 1] = '\0';
} else { } else {
// Get input text from user (interactive mode) // Get input text from user (interactive mode)
if (!is_pipe_mode) { if (is_interactive_mode) {
printf("\nText input options:\n"); printf("\nText input options:\n");
printf(" 1. Type text directly\n"); printf(" 1. Type text directly\n");
printf(" 2. Use text editor\n"); printf(" 2. Use text editor\n");
printf("Enter choice (1-2): "); printf("Enter choice (1-2): ");
} }
char input_choice[10] = "1"; // Default to direct input in pipe mode char input_choice[10] = "1"; // Default to direct input in non-interactive mode
if (!is_pipe_mode) { if (is_interactive_mode) {
if (!fgets(input_choice, sizeof(input_choice), stdin)) { if (!fgets(input_choice, sizeof(input_choice), stdin)) {
printf("Error: Failed to read input\n"); printf("Error: Failed to read input\n");
free(pad_chksum); free(pad_chksum);
@@ -1340,10 +1144,10 @@ int encrypt_text(const char* pad_identifier, const char* input_text) {
} }
} }
if (!is_pipe_mode && atoi(input_choice) == 2) { if (is_interactive_mode && atoi(input_choice) == 2) {
// Use text editor // Use text editor
if (launch_text_editor(NULL, text_buffer, sizeof(text_buffer)) != 0) { if (launch_text_editor(NULL, text_buffer, sizeof(text_buffer)) != 0) {
if (!is_pipe_mode) { if (is_interactive_mode) {
printf("Falling back to direct text input.\n"); printf("Falling back to direct text input.\n");
printf("Enter text to encrypt: "); printf("Enter text to encrypt: ");
} }
@@ -1363,7 +1167,7 @@ int encrypt_text(const char* pad_identifier, const char* input_text) {
} }
} else { } else {
// Direct text input // Direct text input
if (!is_pipe_mode) { if (is_interactive_mode) {
printf("Enter text to encrypt: "); printf("Enter text to encrypt: ");
fflush(stdout); fflush(stdout);
} }
@@ -1474,13 +1278,12 @@ int encrypt_text(const char* pad_identifier, const char* input_text) {
} }
int decrypt_text(const char* pad_identifier, const char* encrypted_message) { int decrypt_text(const char* pad_identifier, const char* encrypted_message) {
// Use universal decrypt function with mode based on global pipe detection // Use universal decrypt function with mode based on global interactive mode detection
(void)pad_identifier; // Suppress unused parameter warning - chksum comes from message (void)pad_identifier; // Suppress unused parameter warning - chksum comes from message
decrypt_mode_t mode = is_pipe_mode ? DECRYPT_MODE_SILENT : DECRYPT_MODE_INTERACTIVE; decrypt_mode_t mode = is_interactive_mode ? DECRYPT_MODE_INTERACTIVE : DECRYPT_MODE_SILENT;
return universal_decrypt(encrypted_message, NULL, mode); return universal_decrypt(encrypted_message, NULL, mode);
} }
int encrypt_file(const char* pad_identifier, const char* input_file, const char* output_file, int ascii_armor) { int encrypt_file(const char* pad_identifier, const char* input_file, const char* output_file, int ascii_armor) {
char* pad_chksum = find_pad_by_prefix(pad_identifier); char* pad_chksum = find_pad_by_prefix(pad_identifier);
if (!pad_chksum) { if (!pad_chksum) {
@@ -1955,16 +1758,12 @@ int write_state_offset(const char* pad_chksum, uint64_t offset) {
} }
////////////////////////////////////////////////////////////////////////////////
////////////////////////////////////////////////////////////////////////////////
// DIRECTORY MANAGEMENT FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
////////////////////////////////////////////////////////////////////////////////
// Directory management functions
int ensure_pads_directory(void) { int ensure_pads_directory(void) {
struct stat st = {0}; struct stat st = {0};
if (stat(current_pads_dir, &st) == -1) { if (stat(current_pads_dir, &st) == -1) {
@@ -1975,7 +1774,6 @@ int ensure_pads_directory(void) {
return 0; return 0;
} }
const char* get_files_directory(void) { const char* get_files_directory(void) {
struct stat st = {0}; struct stat st = {0};
if (stat(FILES_DIR, &st) == 0 && S_ISDIR(st.st_mode)) { if (stat(FILES_DIR, &st) == 0 && S_ISDIR(st.st_mode)) {
@@ -2656,7 +2454,6 @@ int derive_chacha20_params(const unsigned char* entropy_data, size_t entropy_siz
return 0; // Success return 0; // Success
} }
// Check if a pad is unused (0% usage) // Check if a pad is unused (0% usage)
int is_pad_unused(const char* pad_chksum) { int is_pad_unused(const char* pad_chksum) {
uint64_t used_bytes; uint64_t used_bytes;
@@ -2666,7 +2463,6 @@ int is_pad_unused(const char* pad_chksum) {
return (used_bytes <= 32); // Only reserved bytes used (32 bytes for checksum encryption) return (used_bytes <= 32); // Only reserved bytes used (32 bytes for checksum encryption)
} }
// Safely rename pad files (pad and state) from old to new checksum // Safely rename pad files (pad and state) from old to new checksum
int rename_pad_files_safely(const char* old_chksum, const char* new_chksum) { int rename_pad_files_safely(const char* old_chksum, const char* new_chksum) {
char old_pad_path[1024], new_pad_path[1024]; char old_pad_path[1024], new_pad_path[1024];
@@ -2882,7 +2678,6 @@ void restore_terminal(struct termios* original_termios) {
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
// UNIVERSAL CORE FUNCTIONS FOR CODE CONSOLIDATION // UNIVERSAL CORE FUNCTIONS FOR CODE CONSOLIDATION
@@ -3053,7 +2848,7 @@ int generate_ascii_armor(const char* chksum, uint64_t offset, const unsigned cha
strcpy(*ascii_output, "-----BEGIN OTP MESSAGE-----\n"); strcpy(*ascii_output, "-----BEGIN OTP MESSAGE-----\n");
char temp_line[256]; char temp_line[256];
snprintf(temp_line, sizeof(temp_line), "Version: v0.2.107\n"); snprintf(temp_line, sizeof(temp_line), "Version: v0.3.6\n");
strcat(*ascii_output, temp_line); strcat(*ascii_output, temp_line);
snprintf(temp_line, sizeof(temp_line), "Pad-ChkSum: %s\n", chksum); snprintf(temp_line, sizeof(temp_line), "Pad-ChkSum: %s\n", chksum);
@@ -3534,7 +3329,6 @@ int get_filename_with_default(const char* prompt, const char* default_path, char
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
char* get_preferred_editor(void) { char* get_preferred_editor(void) {
// Check EDITOR environment variable first // Check EDITOR environment variable first
char* editor = getenv("EDITOR"); char* editor = getenv("EDITOR");
@@ -3815,7 +3609,6 @@ int handle_file_encrypt(void) {
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
int calculate_checksum(const char* filename, char* checksum_hex) { int calculate_checksum(const char* filename, char* checksum_hex) {
FILE* file = fopen(filename, "rb"); FILE* file = fopen(filename, "rb");
if (!file) { if (!file) {
@@ -4078,26 +3871,17 @@ char* select_pad_interactive(const char* title, const char* prompt, pad_filter_t
return NULL; return NULL;
} }
// Find matching pad by prefix or number // Find matching pad by prefix only
int selected_pad = -1; int selected_pad = -1;
int match_count = 0; int match_count = 0;
// Check if input is a number first // Try prefix matching only
char* endptr; for (int i = 0; i < pad_count; i++) {
int selection = strtol(input, &endptr, 10); if (strncmp(input, pads[i].chksum, strlen(input)) == 0) {
if (*endptr == '\0' && selection >= 1 && selection <= pad_count) { if (match_count == 0) {
// Valid number selection selected_pad = i;
selected_pad = selection - 1;
match_count = 1;
} else {
// Try prefix matching
for (int i = 0; i < pad_count; i++) {
if (strncmp(input, pads[i].chksum, strlen(input)) == 0) {
if (match_count == 0) {
selected_pad = i;
}
match_count++;
} }
match_count++;
} }
} }
@@ -4305,7 +4089,7 @@ int handle_pads_menu(void) {
} else if (toupper(input[0]) == 'A') { } else if (toupper(input[0]) == 'A') {
// Add entropy to pad - use unified function with unused pads filter // Add entropy to pad - use unified function with unused pads filter
char* selected_pad = select_pad_interactive("=== Select Unused Pad for Entropy Addition ===", char* selected_pad = select_pad_interactive("=== Select Unused Pad for Entropy Addition ===",
"Select unused pad (by prefix or number)", "Select unused pad (by prefix)",
PAD_FILTER_UNUSED_ONLY, 1); PAD_FILTER_UNUSED_ONLY, 1);
if (!selected_pad) { if (!selected_pad) {
printf("Entropy addition cancelled.\n"); printf("Entropy addition cancelled.\n");
@@ -4610,7 +4394,7 @@ int handle_add_entropy_to_pad(const char* pad_chksum) {
} }
void print_usage(const char* program_name) { void print_usage(const char* program_name) {
printf("OTP Cipher - One Time Pad Implementation v0.2.107\n"); printf("OTP Cipher - One Time Pad Implementation v0.3.6\n");
printf("Built for testing entropy system\n"); printf("Built for testing entropy system\n");
printf("Usage:\n"); printf("Usage:\n");
printf(" %s - Interactive mode\n", program_name); printf(" %s - Interactive mode\n", program_name);
@@ -4635,5 +4419,5 @@ void print_usage(const char* program_name) {
printf(" %s -g 1GB - Generate 1GB pad\n", program_name); printf(" %s -g 1GB - Generate 1GB pad\n", program_name);
printf(" %s -l - List pads\n", program_name); printf(" %s -l - List pads\n", program_name);
printf("\nSize examples: 1GB, 5TB, 512MB, 2048 (bytes)\n"); printf("\nSize examples: 1GB, 5TB, 512MB, 2048 (bytes)\n");
printf("Pad selection: Full chksum, prefix, or number from list\n"); printf("Pad selection: Full chksum or prefix\n");
} }

239
otp.h Normal file
View File

@@ -0,0 +1,239 @@
#ifndef OTP_H
#define OTP_H
////////////////////////////////////////////////////////////////////////////////
// OTP CIPHER - FUNCTION PROTOTYPES HEADER
// One Time Pad Implementation v0.2.109
//
// This header file contains all function prototypes extracted from otp.c
// Organized by functional categories for better maintainability
////////////////////////////////////////////////////////////////////////////////
#include <stdio.h>
#include <stdint.h>
#include <stdlib.h>
#include <termios.h>
#include <sys/stat.h>
#include <time.h>
// Constants
#define MAX_INPUT_SIZE 4096
#define MAX_LINE_LENGTH 1024
#define MAX_HASH_LENGTH 65
#define PROGRESS_UPDATE_INTERVAL (64 * 1024 * 1024) // 64MB intervals
#define DEFAULT_PADS_DIR "pads"
#define FILES_DIR "files"
#define MAX_ENTROPY_BUFFER 32768 // 32KB entropy buffer
////////////////////////////////////////////////////////////////////////////////
// TYPE DEFINITIONS
////////////////////////////////////////////////////////////////////////////////
// Decrypt operation modes for universal decrypt function
typedef enum {
DECRYPT_MODE_INTERACTIVE, // Interactive text decryption with prompts
DECRYPT_MODE_SILENT, // Silent text decryption (no prompts/labels)
DECRYPT_MODE_FILE_TO_TEXT, // File to text output with prompts
DECRYPT_MODE_FILE_TO_FILE // File to file output (binary)
} decrypt_mode_t;
// Pad filter types for selection functions
typedef enum {
PAD_FILTER_ALL, // Show all pads
PAD_FILTER_UNUSED_ONLY // Show only unused pads (0% usage)
} pad_filter_type_t;
// Enhanced entropy system state structure
typedef struct {
size_t target_bytes; // Target entropy to collect
size_t collected_bytes; // Bytes collected so far
size_t unique_keys; // Number of unique keys pressed
double collection_start_time; // Start timestamp
double last_keypress_time; // Last keypress timestamp
unsigned char quality_score; // Entropy quality (0-100)
int auto_complete_enabled; // Allow auto-complete at minimum
unsigned char key_histogram[256]; // Track key frequency
} entropy_collection_state_t;
////////////////////////////////////////////////////////////////////////////////
// CORE APPLICATION FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Main application entry points
int main(int argc, char* argv[]);
int interactive_mode(void);
int command_line_mode(int argc, char* argv[]);
int pipe_mode(int argc, char* argv[], const char* piped_text);
////////////////////////////////////////////////////////////////////////////////
// INPUT/OUTPUT DETECTION FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Stdin detection functions
int has_stdin_data(void);
char* read_stdin_text(void);
////////////////////////////////////////////////////////////////////////////////
// PREFERENCES MANAGEMENT FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Configuration and preferences handling
int load_preferences(void);
int save_preferences(void);
char* get_preference(const char* key);
int set_preference(const char* key, const char* value);
char* get_default_pad_path(void);
int set_default_pad_path(const char* pad_path);
////////////////////////////////////////////////////////////////////////////////
// HARDWARE DETECTION FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// OTP thumb drive detection function
int detect_otp_thumb_drive(char* otp_drive_path, size_t path_size);
////////////////////////////////////////////////////////////////////////////////
// EXTERNAL TOOL INTEGRATION FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Editor and file manager functions
char* get_preferred_editor(void);
char* get_preferred_file_manager(void);
int launch_text_editor(const char* initial_content, char* result_buffer, size_t buffer_size);
int launch_file_manager(const char* start_directory, char* selected_file, size_t buffer_size);
////////////////////////////////////////////////////////////////////////////////
// CORE CRYPTOGRAPHIC OPERATIONS
////////////////////////////////////////////////////////////////////////////////
// Primary encryption/decryption functions
int generate_pad(uint64_t size_bytes, int show_progress);
int encrypt_text(const char* pad_identifier, const char* input_text);
int decrypt_text(const char* pad_identifier, const char* encrypted_message);
int encrypt_file(const char* pad_identifier, const char* input_file, const char* output_file, int ascii_armor);
int decrypt_file(const char* input_file, const char* output_file);
int decrypt_binary_file(FILE* input_fp, const char* output_file);
int decrypt_ascii_file(const char* input_file, const char* output_file);
////////////////////////////////////////////////////////////////////////////////
// ENHANCED ENTROPY SYSTEM FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Terminal control for entropy collection
int setup_raw_terminal(struct termios* original_termios);
void restore_terminal(struct termios* original_termios);
// Entropy collection and feedback
int collect_entropy_with_feedback(unsigned char* entropy_buffer, size_t target_bytes,
size_t* collected_bytes, int allow_early_exit);
void display_entropy_progress(const entropy_collection_state_t* state);
void draw_progress_bar(double percentage, int width);
void draw_quality_bar(double quality, int width, const char* label);
// Entropy quality calculation
double calculate_timing_quality(const entropy_collection_state_t* state);
double calculate_variety_quality(const entropy_collection_state_t* state);
unsigned char calculate_overall_quality(const entropy_collection_state_t* state);
double get_precise_time(void);
// Entropy processing and application
int derive_chacha20_params(const unsigned char* entropy_data, size_t entropy_size,
unsigned char key[32], unsigned char nonce[12]);
int add_entropy_to_pad(const char* pad_chksum, const unsigned char* entropy_data,
size_t entropy_size, int show_progress);
int handle_add_entropy_to_pad(const char* pad_chksum);
// Enhanced entropy system helper functions
int update_pad_checksum_after_entropy(const char* old_chksum, char* new_chksum);
int rename_pad_files_safely(const char* old_chksum, const char* new_chksum);
int is_pad_unused(const char* pad_chksum);
////////////////////////////////////////////////////////////////////////////////
// DIRECTORY MANAGEMENT FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Directory handling and path management
int ensure_pads_directory(void);
void get_pad_path(const char* chksum, char* pad_path, char* state_path);
const char* get_files_directory(void);
void get_default_file_path(const char* filename, char* result_path, size_t result_size);
void get_directory_display(const char* file_path, char* result, size_t result_size);
////////////////////////////////////////////////////////////////////////////////
// UTILITY FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// General utility and helper functions
uint64_t parse_size_string(const char* size_str);
char* find_pad_by_prefix(const char* prefix);
int show_pad_info(const char* chksum);
void show_progress(uint64_t current, uint64_t total, time_t start_time);
////////////////////////////////////////////////////////////////////////////////
// FILE OPERATIONS
////////////////////////////////////////////////////////////////////////////////
// File state and checksum operations
int read_state_offset(const char* pad_chksum, uint64_t* offset);
int write_state_offset(const char* pad_chksum, uint64_t offset);
int calculate_checksum(const char* filename, char* checksum_hex);
////////////////////////////////////////////////////////////////////////////////
// UNIVERSAL CORE FUNCTIONS FOR CODE CONSOLIDATION
////////////////////////////////////////////////////////////////////////////////
// Consolidated cryptographic operations
int universal_xor_operation(const unsigned char* data, size_t data_len,
const unsigned char* pad_data, unsigned char* result);
int parse_ascii_message(const char* message, char* chksum, uint64_t* offset, char* base64_data);
int load_pad_data(const char* pad_chksum, uint64_t offset, size_t length, unsigned char** pad_data);
int generate_ascii_armor(const char* chksum, uint64_t offset, const unsigned char* encrypted_data,
size_t data_length, char** ascii_output);
int validate_pad_integrity(const char* pad_path, const char* expected_chksum);
// Universal decrypt function - consolidates all decrypt operations
int universal_decrypt(const char* input_data, const char* output_target, decrypt_mode_t mode);
////////////////////////////////////////////////////////////////////////////////
// BASE64 ENCODING FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Custom base64 implementation
char* custom_base64_encode(const unsigned char* input, int length);
unsigned char* custom_base64_decode(const char* input, int* output_length);
////////////////////////////////////////////////////////////////////////////////
// MENU SYSTEM FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Interactive menu interface functions
void show_main_menu(void);
int handle_generate_menu(void);
int handle_encrypt_menu(void);
int handle_decrypt_menu(void);
int handle_pads_menu(void);
int handle_text_encrypt(void);
int handle_file_encrypt(void);
////////////////////////////////////////////////////////////////////////////////
// ENHANCED INPUT FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Advanced input handling
int get_filename_with_default(const char* prompt, const char* default_path, char* result, size_t result_size);
////////////////////////////////////////////////////////////////////////////////
// PAD SELECTION FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Unified pad selection interface
char* select_pad_interactive(const char* title, const char* prompt, pad_filter_type_t filter_type, int allow_cancel);
////////////////////////////////////////////////////////////////////////////////
// USAGE AND HELP FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Help and usage display
void print_usage(const char* program_name);
#endif // OTP_H

View File

@@ -1,8 +0,0 @@
-----BEGIN OTP MESSAGE-----
Version: v0.2.107
Pad-ChkSum: d0aaeb745bfbc62b1ed8c0eca4f8dc016f4fd9ed49130979f2bb25a2a3c8192e
Pad-Offset: 1786
rRK8UkPc0t5bybg=
-----END OTP MESSAGE-----