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30 changed files with 244 additions and 572 deletions

21
.gitignore vendored
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@@ -1,9 +1,26 @@
otp
# Build artifacts
build/
*.o
src/*.o
# Runtime directories
pads/
files/
# Personal files
Gemini.md
TropicOfCancer-HenryMiller.txt
.gitea_token
true_rng/
Trash/
# Auto-generated files (none currently)
# Test binaries
debug
test_swiftrng
test_swiftrng_debug
test_swiftrng_detailed
test_truerng
# Temporary files
*.pad
*.state

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@@ -1,46 +0,0 @@
# Hardware RNG Implementation Status
## Overview
The OTP cipher application now includes comprehensive hardware Random Number Generator (RNG) device support with automatic detection, device identification, and graceful handling of different device types.
## Supported Devices
### ✅ Fully Supported (TrueRNG Family)
- **TrueRNG Original** (VID: 04d8, PID: f5fe)
- **TrueRNG Pro** (VID: 04d8, PID: 0aa0)
- **TrueRNG Pro V2** (VID: 04d8, PID: ebb5)
These devices work via serial port communication and are fully integrated into the entropy collection system.
### ⚠️ Detected but Not Supported (SwiftRNG Family)
- **SwiftRNG** (VID: 1fc9, PID: 8111)
SwiftRNG devices are detected and identified but cannot be used via serial port communication. They require the official SwiftRNG API with libusb-1.0 integration.
## Implementation Features
### Device Detection
- **Automatic scanning** of `/dev/ttyUSB*` and `/dev/ttyACM*` devices
- **VID/PID identification** via sysfs to distinguish device types
- **Multi-device support** with interactive selection menus
- **Real-time status indicators** showing device availability
### Device Communication
- **Optimized serial port configuration** for each device type
- **Timeout protection** to prevent hanging on unresponsive devices
- **Error handling** with clear diagnostic messages
- **Progress tracking** with speed estimation for large entropy collections
### Integration Points
- **Pad enhancement** via entropy addition to existing pads
- **Interactive menus** for device selection when multiple devices are present
- **Command-line support** for automated workflows
- **Graceful fallback** to other entropy sources when no hardware RNG is available
## Technical Implementation
### Core Functions
- `detect_all_hardware_rng_devices()` - Scans and identifies all connected devices
- `collect_truerng_entropy_from_device()` - Collects entropy from TrueRNG devices

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@@ -1,29 +1,34 @@
CC = gcc
CFLAGS = -Wall -Wextra -std=c99 -Iinclude
CFLAGS = -Wall -Wextra -std=c99 -Isrc
LIBS = -lm
LIBS_STATIC = -static -lm
TARGET = otp
SOURCES = $(wildcard src/*.c) nostr_chacha20.c otp.c
ARCH = $(shell uname -m)
TARGET = build/otp-$(ARCH)
SOURCES = $(wildcard src/*.c)
OBJS = $(SOURCES:.c=.o)
# Default build target
$(TARGET): $(OBJS)
@mkdir -p build
$(CC) $(CFLAGS) -o $(TARGET) $(OBJS) $(LIBS)
@rm -f $(OBJS)
# Static linking target
static: $(OBJS)
@mkdir -p build
$(CC) $(CFLAGS) -o $(TARGET) $(OBJS) $(LIBS_STATIC)
@rm -f $(OBJS)
%.o: %.c
$(CC) $(CFLAGS) -c $< -o $@
clean:
rm -f $(TARGET) $(OBJS) *.pad *.state
rm -f $(OBJS) src/*.o build/otp-* *.pad *.state
install:
sudo cp $(TARGET) /usr/local/bin/
sudo cp $(TARGET) /usr/local/bin/otp
uninstall:
sudo rm -f /usr/local/bin/$(TARGET)
sudo rm -f /usr/local/bin/otp
.PHONY: clean install uninstall static

183
README.md
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@@ -1,5 +1,47 @@
# OTP Cipher - One Time Pad Implementation
## Quick Start
### Download Pre-Built Binaries
**[📥 Download Latest Release](https://git.laantungir.net/laantungir/otp/releases)**
Visit the releases page and download the appropriate binary for your system:
- `otp-vX.X.X-linux-x86_64` for Intel/AMD 64-bit systems
- `otp-vX.X.X-linux-arm64` for Raspberry Pi and ARM 64-bit systems
After downloading:
```bash
# Make executable and run
chmod +x otp-v*-linux-x86_64
./otp-v*-linux-x86_64
```
**Or use the local build:**
```bash
# After building from source
./build/otp-x86_64 # x86_64 systems
./build/otp-arm64 # ARM64 systems
```
### First Steps
1. **Generate your first pad:**
```bash
./build/otp-x86_64 generate 1GB
```
2. **Encrypt a message:**
```bash
./build/otp-x86_64 encrypt
# Follow the interactive prompts
```
3. **Decrypt a message:**
```bash
./build/otp-x86_64 decrypt
# Paste the encrypted message
```
## Introduction
@@ -64,99 +106,98 @@ One-time pads can be trivially encrypted and decrypted using pencil and paper, m
- GCC compiler
- Git (for version tracking)
- Make
- Optional: ARM64 cross-compiler (`gcc-aarch64-linux-gnu`) for cross-compilation
### Build Commands
Use the included build script for automatic versioning:
Use the included build script for automatic versioning and cross-compilation:
```bash
# Standard build (default)
./build.sh build
# Build for current architecture (with auto-versioning)
./build.sh "commit message"
# Static linking build
./build.sh static
# Clean build artifacts
./build.sh clean
# Generate version files only
./build.sh version
# Install to system
./build.sh install
# Remove from system
./build.sh uninstall
# Show usage
./build.sh help
# Build commands
./build.sh build "commit message" # Build x86_64 and ARM64 (if cross-compiler available)
./build.sh clean # Clean build artifacts
./build.sh install # Install to system
./build.sh uninstall # Remove from system
```
The build script automatically:
- Increments patch version (v0.3.24 → v0.3.25)
- Creates git commit and tag
- Builds for x86_64 and ARM64 (if cross-compiler available)
- Outputs to `build/otp-x86_64` and `build/otp-arm64`
- Uploads binaries to Gitea releases (if `~/.gitea_token` exists)
### Traditional Make
You can also use make directly (without automatic versioning):
```bash
make # Standard build
make # Build for current architecture
make static # Static linking
make clean # Clean artifacts
make install # Install to /usr/local/bin/
make install # Install to /usr/local/bin/otp
make uninstall # Remove from system
```
Output: `build/otp-$(ARCH)` (e.g., `build/otp-x86_64`)
## Usage
### Interactive Mode
```bash
./otp
./build/otp-x86_64
# or
./build/otp-arm64 # On ARM systems
```
### Command Line Mode
```bash
# Generate a new pad
./otp generate 1GB
./build/otp-x86_64 generate 1GB
# Encrypt text (interactive input)
./otp encrypt <pad_hash_or_prefix>
./build/otp-x86_64 encrypt <pad_hash_or_prefix>
# Decrypt message (interactive input)
./otp decrypt <pad_hash_or_prefix>
./build/otp-x86_64 decrypt <pad_hash_or_prefix>
# List available pads
./otp list
./build/otp-x86_64 list
```
## Version System Details
## Version System
### Centralized Version Management
Version is defined in a single location: `src/main.h`
```c
#define OTP_VERSION "v0.3.24"
```
All code references this constant, ensuring consistency across:
- Main menu display
- ASCII armor output
- Help/usage text
### Automatic Version Increment
Every build automatically increments the patch version:
- v0.1.0 → v0.1.1 → v0.1.2, etc.
- Creates git tags for each version
- Embeds detailed build information
The `build.sh` script automatically:
1. Increments patch version (v0.3.24 → v0.3.25)
2. Updates `OTP_VERSION` in `src/main.h`
3. Creates git commit and tag
4. Pushes to remote repository
### Manual Version Control
For major/minor releases, create tags manually:
```bash
# Feature release (minor bump)
git tag v0.2.0 # Next build: v0.2.1
git tag v0.4.0 # Next build: v0.4.1
# Breaking change (major bump)
git tag v1.0.0 # Next build: v1.0.1
```
### Version Information Available
- Version number (major.minor.patch)
- Git commit hash and branch
- Build date and time
- Full version display with metadata
### Generated Files
The build system automatically manages Git versioning by incrementing tags.
These files are excluded from git (.gitignore) and regenerated on each build.
## Security Features
- Uses `/dev/urandom` for cryptographically secure random number generation
@@ -166,28 +207,32 @@ These files are excluded from git (.gitignore) and regenerated on each build.
- State tracking to prevent pad reuse
- **Zero external crypto dependencies** - completely self-contained implementation
## File Structure
## Project Structure
```
otp/
├── build.sh # Build script with automatic versioning
├── Makefile # Traditional make build system
├── otp.c # Legacy compatibility and global definitions
├── README.md # This file
├── .gitignore # Git ignore rules
├── include/
│ └── otp.h # Public API header with all function prototypes
├── src/
│ ├── main.c # Main application entry point and command line handling
│ ├── main.h # Main header with all prototypes and OTP_VERSION
│ ├── main.c # Application entry point and command line handling
│ ├── ui.c # Interactive user interface and menu system
│ ├── state.c # Global state management (pads directory, terminal dimensions)
│ ├── crypto.c # Core cryptographic operations (XOR, ChaCha20)
│ ├── state.c # Global state management (pads directory, preferences)
│ ├── crypto.c # Core cryptographic operations (XOR, base64)
│ ├── pads.c # Pad management and file operations
│ ├── entropy.c # Entropy collection from various sources
│ ├── trng.c # Hardware RNG device detection and entropy collection
── util.c # Utility functions and helpers
│ ├── trng.c # Hardware RNG device detection and collection
── util.c # Utility functions and helpers
│ ├── nostr_chacha20.c # ChaCha20 implementation for entropy expansion
│ └── nostr_chacha20.h # ChaCha20 header
├── build/
│ ├── otp-x86_64 # Native x86_64 binary (created by build)
│ └── otp-arm64 # ARM64 binary (created by cross-compilation)
├── pads/ # OTP pad storage directory (created at runtime)
└── VERSION # Plain text version (generated)
├── files/ # Encrypted file storage (created at runtime)
└── tests/ # Test scripts and utilities
```
## Architecture
@@ -197,13 +242,14 @@ The OTP cipher uses a modular architecture with clean separation of concerns:
- **main.c**: Application entry point, command line parsing, and mode selection
- **ui.c**: Interactive user interface, menus, and terminal management
- **state.c**: Global state management (pads directory, terminal dimensions, preferences)
- **crypto.c**: Core cryptographic operations (XOR encryption, ChaCha20 entropy mixing)
- **crypto.c**: Core cryptographic operations (XOR encryption, base64 encoding)
- **pads.c**: Pad file management, checksums, and state tracking
- **entropy.c**: Entropy collection from keyboard, dice, and other sources
- **entropy.c**: Entropy collection from keyboard, dice, files, and hardware RNG
- **trng.c**: Hardware RNG device detection and entropy collection from USB devices
- **util.c**: Utility functions, file operations, and helper routines
- **nostr_chacha20.c**: ChaCha20 stream cipher for entropy expansion
All modules share a common header (`include/otp.h`) that defines the public API and data structures.
All modules share a common header (`src/main.h`) that defines the public API, data structures, and version constant.
## Hardware RNG Device Support
@@ -405,9 +451,22 @@ No. ChkSum (first 16 chars) Size Used % Used
This project includes automatic versioning system based on the Generic Automatic Version Increment System.
## State Files
Pad state files (`.state`) use a human-readable text format:
```
offset=1234567890
```
This tracks how many bytes of each pad have been used. The format is:
- **Human-readable**: Can inspect with `cat checksum.state`
- **Backward compatible**: Automatically reads old binary format
- **Easy to debug**: Can manually edit if needed
## Contributing
When contributing:
1. The version will automatically increment on builds
2. For major features, consider manually creating minor version tags
3. Generated version files (`src/version.*`, `VERSION`) should not be committed
1. The version will automatically increment on builds via `build.sh`
2. Version is centralized in `src/main.h` as `OTP_VERSION`
3. For major features, manually create minor/major version tags
4. Build artifacts in `build/` and object files are auto-cleaned

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@@ -1,3 +0,0 @@
# TODO
## The pad menu in interactive encrypt mode gives numbers instead of checksum selection

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@@ -146,20 +146,14 @@ increment_version() {
update_source_version() {
local NEW_VERSION="$1"
print_status "Updating version strings in source code..."
print_status "Updating version constant in source code..."
# Replace hardcoded version strings in otp.c with the current git tag
if [ -f "otp.c" ]; then
# Update main menu version
sed -i "s/OTP v[0-9]\+\.[0-9]\+\.[0-9]\+/OTP $NEW_VERSION/g" otp.c
# Update ASCII output version
sed -i "s/Version: v[0-9]\+\.[0-9]\+\.[0-9]\+/Version: $NEW_VERSION/g" otp.c
# Update usage/help text version
sed -i "s/Implementation v[0-9]\+\.[0-9]\+\.[0-9]\+/Implementation $NEW_VERSION/g" otp.c
print_success "Updated version strings in otp.c to $NEW_VERSION"
# Update OTP_VERSION constant in src/main.h
if [ -f "src/main.h" ]; then
sed -i "s/#define OTP_VERSION \"v[0-9]\+\.[0-9]\+\.[0-9]\+\"/#define OTP_VERSION \"$NEW_VERSION\"/g" src/main.h
print_success "Updated OTP_VERSION in src/main.h to $NEW_VERSION"
else
print_warning "otp.c not found - skipping version string updates"
print_warning "src/main.h not found - skipping version update"
fi
}
@@ -235,16 +229,16 @@ create_gitea_release() {
if echo "$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-${version}-linux-arm64"
# Upload binaries with descriptive names from build directory
upload_release_asset "$api_url" "$token" "$version" "build/otp-x86_64" "otp-${version}-linux-x86_64"
upload_release_asset "$api_url" "$token" "$version" "build/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-${version}-linux-arm64"
upload_release_asset "$api_url" "$token" "$version" "build/otp-x86_64" "otp-${version}-linux-x86_64"
upload_release_asset "$api_url" "$token" "$version" "build/otp-arm64" "otp-${version}-linux-arm64"
fi
}
@@ -259,9 +253,8 @@ build_project() {
# Build x86_64 only
print_status "Building OTP project for x86_64..."
make CC=gcc
make CC=gcc ARCH=x86_64
if [ $? -eq 0 ]; then
mv otp otp-x86_64
print_success "x86_64 build completed successfully"
else
print_error "x86_64 build failed"
@@ -270,10 +263,8 @@ build_project() {
else
# Build both architectures
print_status "Building OTP project for x86_64..."
make clean
make CC=gcc
make CC=gcc ARCH=x86_64
if [ $? -eq 0 ]; then
mv otp otp-x86_64
print_success "x86_64 build completed successfully"
else
print_error "x86_64 build failed"
@@ -281,10 +272,10 @@ build_project() {
fi
print_status "Building OTP project for ARM64/AArch64..."
make clean
make CC=aarch64-linux-gnu-gcc
# Clean only object files, not the x86_64 binary
rm -f src/*.o
make CC=aarch64-linux-gnu-gcc ARCH=arm64
if [ $? -eq 0 ]; then
mv otp otp-arm64
print_success "ARM64/AArch64 build completed successfully"
else
print_error "ARM64/AArch64 build failed"
@@ -292,6 +283,10 @@ build_project() {
fi
fi
# Clean up object files after successful build
print_status "Cleaning up object files..."
rm -f src/*.o
# Create Gitea release with binaries
if [ -f "$HOME/.gitea_token" ]; then
create_gitea_release "$NEW_VERSION"
@@ -306,8 +301,8 @@ build_project() {
clean_project() {
print_status "Cleaning build artifacts..."
make clean
# Remove cross-compiled binaries
rm -f otp-x86_64 otp-arm64
# Remove build directory
rm -rf build
print_success "Clean completed"
}
@@ -362,8 +357,8 @@ case "$COMMAND" in
echo " uninstall - Remove from system"
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 " build/otp-x86_64 - Native x86_64 binary"
echo " build/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"

BIN
debug

Binary file not shown.

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@@ -1 +0,0 @@
int main() { printf("Testing direct filename: %d\n", strncmp("97d9d82b5414a9439102f3811fb90ab1d6368a00d33229a18b306476f9d04f82.pad", "97", 2)); return 0; }

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@@ -1,22 +0,0 @@
#!/bin/bash
echo "Manual OTP Test"
echo "==============="
# Generate a test pad
echo "Generating test pad..."
./otp generate demo 1
echo
# Create a test message file for encryption
echo "Creating test message..."
echo "This is a secret message for testing OTP encryption!" > test_message.txt
# Test encryption interactively
echo "Testing encryption (will prompt for input):"
echo "Please enter: This is a secret message for testing OTP encryption!"
./otp encrypt demo
echo
echo "Files created:"
ls -la demo.*

1
otp Symbolic link
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@@ -0,0 +1 @@
./build/otp-x86_64

35
otp.c
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@@ -1,35 +0,0 @@
#define _POSIX_C_SOURCE 200809L
#define _DEFAULT_SOURCE
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <stdint.h>
#include <unistd.h>
#include <sys/stat.h>
#include <sys/statvfs.h>
#include <sys/ioctl.h>
#include <dirent.h>
#include <time.h>
#include <ctype.h>
#include <termios.h>
#include <fcntl.h>
#include <math.h>
#include "nostr_chacha20.h"
#include "otp.h"
#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"
////////////////////////////////////////////////////////////////////////////////
////////////////////////////////////////////////////////////////////////////////
// GLOBAL VARIABLES
///////////////////////////////////////////////////////////////////////////////
////////////////////////////////////////////////////////////////////////////////
char current_pads_dir[512] = DEFAULT_PADS_DIR;

329
otp.h
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@@ -1,329 +0,0 @@
#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 <sys/ioctl.h>
#include <time.h>
#include <dirent.h>
#include <fcntl.h>
#include <unistd.h>
#include <string.h>
#include <ctype.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 (4 * 1024 * 1024) // 4MB entropy buffer for large operations
////////////////////////////////////////////////////////////////////////////////
// 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);
////////////////////////////////////////////////////////////////////////////////
// USB DRIVE MANAGEMENT FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
////////////////////////////////////////////////////////////////////////////////
// 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
////////////////////////////////////////////////////////////////////////////////
// Entropy source types
typedef enum {
ENTROPY_SOURCE_KEYBOARD = 1,
ENTROPY_SOURCE_DICE = 2,
ENTROPY_SOURCE_TRUERNG = 3,
ENTROPY_SOURCE_FILE = 4
} entropy_source_t;
// 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);
// TrueRNG Device Constants (updated to match otp.c implementation)
#define TRUERNG_VID "04D8"
#define TRUERNG_PID "F5FE"
#define TRUERNGPRO_VID "16D0"
#define TRUERNGPRO_PID "0AA0"
#define TRUERNGPROV2_VID "04D8"
#define TRUERNGPROV2_PID "EBB5"
// SwiftRNG Device Constants (same VID/PID as TrueRNG devices)
#define SWIFT_RNG_VID "04D8"
#define SWIFT_RNG_PID "F5FE"
#define SWIFT_RNG_PRO_VID "16D0"
#define SWIFT_RNG_PRO_PID "0AA0"
#define SWIFT_RNG_PRO_V2_VID "04D8"
#define SWIFT_RNG_PRO_V2_PID "EBB5"
// TrueRNG/SwiftRNG Device Type enumeration
typedef enum {
TRUERNG_ORIGINAL = 1,
TRUERNG_PRO = 2,
TRUERNG_PRO_V2 = 3,
SWIFT_RNG = 4,
SWIFT_RNG_PRO = 5,
SWIFT_RNG_PRO_V2 = 6
} truerng_device_type_t;
// Hardware RNG device information structure
typedef struct {
char port_path[256]; // Device port path (e.g., /dev/ttyUSB0)
truerng_device_type_t device_type; // Device type identifier
char friendly_name[64]; // Human-readable device name
int is_working; // 1 if device passes basic test, 0 otherwise
} hardware_rng_device_t;
// Hardware RNG device detection and selection functions
int detect_all_hardware_rng_devices(hardware_rng_device_t* devices, int max_devices, int* num_devices_found);
int test_hardware_rng_device(const hardware_rng_device_t* device);
int select_hardware_rng_device_interactive(hardware_rng_device_t* devices, int num_devices, hardware_rng_device_t* selected_device);
int find_truerng_port(char* port_path, size_t port_path_size, truerng_device_type_t* device_type); // Legacy function for backward compatibility
// TrueRNG entropy collection functions (updated to match implementation)
int setup_truerng_serial_port(const char* port_path);
int collect_truerng_entropy(unsigned char* entropy_buffer, size_t target_bytes, size_t* collected_bytes, int display_progress);
int collect_truerng_entropy_from_device(const hardware_rng_device_t* device, unsigned char* entropy_buffer,
size_t target_bytes, size_t* collected_bytes, int display_progress);
int collect_truerng_entropy_streaming_from_device(const hardware_rng_device_t* device, const char* pad_chksum,
size_t total_bytes, int display_progress, int entropy_mode);
const char* get_truerng_device_name(truerng_device_type_t device_type);
int read_usb_device_info(const char* port_name, char* vid, char* pid);
// Dice entropy collection functions (updated to match implementation)
int collect_dice_entropy(unsigned char* entropy_buffer, size_t target_bytes, size_t* collected_bytes, int display_progress);
// Unified entropy collection interface (updated to match implementation)
int collect_entropy_by_source(entropy_source_t source, unsigned char* entropy_buffer, size_t target_bytes, size_t* collected_bytes, int display_progress);
// 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 add_entropy_direct_xor(const char* pad_chksum, const unsigned char* entropy_data,
size_t entropy_size, uint64_t pad_size, int display_progress);
int add_entropy_chacha20(const char* pad_chksum, const unsigned char* entropy_data,
size_t entropy_size, uint64_t pad_size, int display_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);
int calculate_checksum_with_progress(const char* filename, char* checksum_hex, int display_progress, uint64_t file_size);
////////////////////////////////////////////////////////////////////////////////
// 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);
////////////////////////////////////////////////////////////////////////////////
// TERMINAL UI FUNCTIONS
////////////////////////////////////////////////////////////////////////////////
// Terminal dimension and UI functions
void init_terminal_dimensions(void);
void print_centered_header(const char* text, int pause_before_clear);
////////////////////////////////////////////////////////////////////////////////
// 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);
int handle_verify_pad(const char* pad_chksum);
int handle_delete_pad(const char* pad_chksum);
////////////////////////////////////////////////////////////////////////////////
// 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

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@@ -5,7 +5,7 @@
#include <stdio.h>
#include <time.h>
#include <unistd.h>
#include "../include/otp.h"
#include "main.h"
#define PROGRESS_UPDATE_INTERVAL (64 * 1024 * 1024) // 64MB intervals
@@ -198,7 +198,7 @@ int generate_ascii_armor(const char* chksum, uint64_t offset, const unsigned cha
strcpy(*ascii_output, "-----BEGIN OTP MESSAGE-----\n");
char temp_line[256];
snprintf(temp_line, sizeof(temp_line), "Version: v0.3.16\n");
snprintf(temp_line, sizeof(temp_line), "Version: %s\n", OTP_VERSION);
strcat(*ascii_output, temp_line);
snprintf(temp_line, sizeof(temp_line), "Pad-ChkSum: %s\n", chksum);

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@@ -15,8 +15,8 @@
#include <termios.h>
#include <fcntl.h>
#include <math.h>
#include "../nostr_chacha20.h"
#include "../include/otp.h"
#include "nostr_chacha20.h"
#include "main.h"
// In-place pad entropy addition using Chacha20 or direct XOR

View File

@@ -15,7 +15,7 @@
#include <termios.h>
#include <fcntl.h>
#include <math.h>
#include "../include/otp.h"
#include "main.h"
int main(int argc, char* argv[]) {
// Initialize terminal dimensions first
@@ -241,7 +241,7 @@ int command_line_mode(int argc, char* argv[]) {
}
void print_usage(const char* program_name) {
printf("OTP Cipher - One Time Pad Implementation v0.3.16\n");
printf("OTP Cipher - One Time Pad Implementation %s\n", OTP_VERSION);
printf("Built for testing entropy system\n");
printf("Usage:\n");
printf(" %s - Interactive mode\n", program_name);

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@@ -1,12 +1,12 @@
#ifndef OTP_H
#define OTP_H
#ifndef MAIN_H
#define MAIN_H
////////////////////////////////////////////////////////////////////////////////
// OTP CIPHER - FUNCTION PROTOTYPES HEADER
// One Time Pad Implementation v0.2.109
// OTP CIPHER - MAIN HEADER FILE
// One Time Pad Implementation
//
// This header file contains all function prototypes extracted from otp.c
// Organized by functional categories for better maintainability
// This header file contains all function prototypes and type definitions
// for the OTP Cipher project
////////////////////////////////////////////////////////////////////////////////
#include <stdio.h>
@@ -22,6 +22,9 @@
#include <string.h>
#include <ctype.h>
// Version - Updated automatically by build.sh
#define OTP_VERSION "v0.3.30"
// Constants
#define MAX_INPUT_SIZE 4096
#define MAX_LINE_LENGTH 1024
@@ -335,4 +338,4 @@ char* select_pad_interactive(const char* title, const char* prompt, pad_filter_t
// Help and usage display
void print_usage(const char* program_name);
#endif // OTP_H
#endif // MAIN_H

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@@ -16,7 +16,7 @@
#include <fcntl.h>
#include <math.h>
#include <errno.h>
#include "../include/otp.h"
#include "main.h"
// Extracted pad management functions from otp.c
@@ -89,7 +89,10 @@ int generate_pad(uint64_t size_bytes, int display_progress) {
const char* pads_dir = get_current_pads_dir();
struct statvfs stat;
if (statvfs(pads_dir, &stat) == 0) {
uint64_t available_bytes = stat.f_bavail * stat.f_frsize;
// Use f_bfree (total free blocks) instead of f_bavail (available to non-root)
// This gives the actual free space on the filesystem, which is more accurate
// for removable media and user-owned directories
uint64_t available_bytes = stat.f_bfree * stat.f_frsize;
double available_gb = (double)available_bytes / (1024.0 * 1024.0 * 1024.0);
double required_gb = (double)size_bytes / (1024.0 * 1024.0 * 1024.0);
@@ -233,7 +236,25 @@ int read_state_offset(const char* pad_chksum, uint64_t* offset) {
const char* pads_dir = get_current_pads_dir();
snprintf(state_filename, sizeof(state_filename), "%s/%s.state", pads_dir, pad_chksum);
FILE* state_file = fopen(state_filename, "rb");
FILE* state_file = fopen(state_filename, "r");
if (!state_file) {
*offset = 0;
return 0;
}
// Try to read as text format first (new format)
char line[128];
if (fgets(line, sizeof(line), state_file)) {
// Check if it's text format (starts with "offset=")
if (strncmp(line, "offset=", 7) == 0) {
*offset = strtoull(line + 7, NULL, 10);
fclose(state_file);
return 0;
}
// Not text format, try binary format (legacy)
fclose(state_file);
state_file = fopen(state_filename, "rb");
if (!state_file) {
*offset = 0;
return 0;
@@ -244,8 +265,12 @@ int read_state_offset(const char* pad_chksum, uint64_t* offset) {
*offset = 0;
return 0;
}
fclose(state_file);
return 0;
}
fclose(state_file);
*offset = 0;
return 0;
}
@@ -254,12 +279,13 @@ int write_state_offset(const char* pad_chksum, uint64_t offset) {
const char* pads_dir = get_current_pads_dir();
snprintf(state_filename, sizeof(state_filename), "%s/%s.state", pads_dir, pad_chksum);
FILE* state_file = fopen(state_filename, "wb");
FILE* state_file = fopen(state_filename, "w");
if (!state_file) {
return 1;
}
if (fwrite(&offset, sizeof(uint64_t), 1, state_file) != 1) {
// Write in text format for human readability
if (fprintf(state_file, "offset=%lu\n", offset) < 0) {
fclose(state_file);
return 1;
}

View File

@@ -1,6 +1,6 @@
#include <string.h>
#include <stdlib.h>
#include "../include/otp.h"
#include "main.h"
// Global state variables
static char current_pads_dir[512] = DEFAULT_PADS_DIR;

View File

@@ -16,8 +16,8 @@
#include <fcntl.h>
#include <math.h>
#include <errno.h>
#include "../nostr_chacha20.h"
#include "../include/otp.h"
#include "nostr_chacha20.h"
#include "main.h"
// Basic TrueRNG entropy collection function
int collect_truerng_entropy(unsigned char* entropy_buffer, size_t target_bytes, size_t* collected_bytes, int display_progress) {

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@@ -15,7 +15,7 @@
#include <termios.h>
#include <fcntl.h>
#include <math.h>
#include "../include/otp.h"
#include "main.h"
// Initialize terminal dimensions
void init_terminal_dimensions(void) {
@@ -120,7 +120,9 @@ int interactive_mode(void) {
void show_main_menu(void) {
printf("\n");
print_centered_header("Main Menu - OTP v0.3.16", 0);
char header[64];
snprintf(header, sizeof(header), "Main Menu - OTP %s", OTP_VERSION);
print_centered_header(header, 0);
printf("\n");
printf(" \033[4mT\033[0mext encrypt\n"); //TEXT ENCRYPT

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@@ -15,7 +15,7 @@
#include <termios.h>
#include <fcntl.h>
#include <math.h>
#include "../include/otp.h"
#include "main.h"
// Global variables for preferences
static char default_pad_path[1024] = "";

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