Add structured logging with debug flag
This commit is contained in:
@@ -1,6 +1,7 @@
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use anyhow::Result;
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use anyhow::Result;
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use clap::{Arg, Command};
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use clap::{Arg, Command};
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use ghost_core::{memory, process, thread, DetectionEngine, ThreatLevel};
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use ghost_core::{memory, process, thread, DetectionEngine, ThreatLevel};
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use log::{debug, error, info, warn};
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use std::time::Instant;
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use std::time::Instant;
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fn main() -> Result<()> {
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fn main() -> Result<()> {
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@@ -40,22 +41,49 @@ fn main() -> Result<()> {
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.short('o')
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.short('o')
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.long("output")
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.long("output")
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.value_name("FILE")
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.value_name("FILE")
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.help("Write results to file instead of stdout")
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.help("Write output to file instead of stdout"),
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)
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.arg(
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Arg::new("debug")
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.short('d')
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.long("debug")
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.action(clap::ArgAction::SetTrue)
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.help("Enable debug logging"),
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)
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)
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.get_matches();
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.get_matches();
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// Initialize logging based on debug flag
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if matches.get_flag("debug") {
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env_logger::Builder::from_default_env()
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.filter_level(log::LevelFilter::Debug)
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.init();
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debug!("Debug logging enabled");
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} else {
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env_logger::Builder::from_default_env()
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.filter_level(log::LevelFilter::Info)
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.init();
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}
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let format = matches.get_one::<String>("format").unwrap();
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let format = matches.get_one::<String>("format").unwrap();
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let verbose = matches.get_flag("verbose");
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let verbose = matches.get_flag("verbose");
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let target_pid = matches.get_one::<String>("pid");
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let target_pid = matches.get_one::<String>("pid");
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let output_file = matches.get_one::<String>("output");
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let output_file = matches.get_one::<String>("output");
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info!("Starting Ghost process injection detection");
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debug!("Configuration - Format: {}, Verbose: {}, Target PID: {:?}", format, verbose, target_pid);
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println!("Ghost v0.1.0 - Process Injection Detection\n");
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println!("Ghost v0.1.0 - Process Injection Detection\n");
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let scan_start = Instant::now();
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let scan_start = Instant::now();
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let mut engine = DetectionEngine::new();
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let mut engine = DetectionEngine::new();
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let processes = if let Some(pid_str) = target_pid {
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let processes = if let Some(pid_str) = target_pid {
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let pid: u32 = pid_str.parse().map_err(|_| anyhow::anyhow!("Invalid PID format: {}", pid_str))?;
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let pid: u32 = pid_str.parse().map_err(|e| {
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error!("Invalid PID format '{}': {}", pid_str, e);
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anyhow::anyhow!("Invalid PID format: {}", pid_str)
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})?;
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info!("Targeting specific process ID: {}", pid);
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let all_processes = process::enumerate_processes()?;
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let all_processes = process::enumerate_processes()?;
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let filtered: Vec<_> = all_processes
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let filtered: Vec<_> = all_processes
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.into_iter()
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.into_iter()
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@@ -63,11 +91,16 @@ fn main() -> Result<()> {
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.collect();
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.collect();
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if filtered.is_empty() {
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if filtered.is_empty() {
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warn!("No process found with PID {}", pid);
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println!("Warning: No process found with PID {}", pid);
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println!("Warning: No process found with PID {}", pid);
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} else {
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debug!("Found target process: {}", filtered[0].name);
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}
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}
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filtered
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filtered
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} else {
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} else {
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process::enumerate_processes()?
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let all_processes = process::enumerate_processes()?;
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info!("Enumerating all processes, found {} total", all_processes.len());
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all_processes
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};
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};
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println!("Scanning {} processes...\n", processes.len());
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println!("Scanning {} processes...\n", processes.len());
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@@ -79,23 +112,30 @@ fn main() -> Result<()> {
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for proc in &processes {
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for proc in &processes {
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// Skip known safe system processes for performance
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// Skip known safe system processes for performance
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if proc.name == "csrss.exe" || proc.name == "wininit.exe" || proc.name == "winlogon.exe" {
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if proc.name == "csrss.exe" || proc.name == "wininit.exe" || proc.name == "winlogon.exe" {
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debug!("Skipping safe system process: {}", proc.name);
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continue;
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continue;
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}
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}
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scanned_count += 1;
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scanned_count += 1;
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debug!("Scanning process: {} (PID: {})", proc.name, proc.pid);
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match memory::enumerate_memory_regions(proc.pid) {
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match memory::enumerate_memory_regions(proc.pid) {
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Ok(regions) => {
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Ok(regions) => {
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debug!("Found {} memory regions for process {}", regions.len(), proc.name);
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// Get thread information if available
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// Get thread information if available
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let threads = thread::enumerate_threads(proc.pid).ok();
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let threads = thread::enumerate_threads(proc.pid).ok();
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let result = engine.analyze_process(proc, ®ions, threads.as_deref());
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let result = engine.analyze_process(proc, ®ions, threads.as_deref());
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if result.threat_level != ThreatLevel::Clean {
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if result.threat_level != ThreatLevel::Clean {
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warn!("Suspicious activity detected in process {} (PID: {})", proc.name, proc.pid);
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detections.push(result);
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detections.push(result);
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} else {
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debug!("Process {} (PID: {}) is clean", proc.name, proc.pid);
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}
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}
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}
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}
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Err(_) => {
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Err(e) => {
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error_count += 1;
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error_count += 1;
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error!("Failed to scan process {} (PID: {}): {}", proc.name, proc.pid, e);
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if verbose {
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if verbose {
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println!("Warning: Could not scan process {} (PID: {})", proc.name, proc.pid);
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println!("Warning: Could not scan process {} (PID: {})", proc.name, proc.pid);
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}
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}
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@@ -104,9 +144,12 @@ fn main() -> Result<()> {
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}
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}
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if verbose && error_count > 0 {
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if verbose && error_count > 0 {
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warn!("Scan completed with {} access errors", error_count);
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println!("Scan completed with {} access errors", error_count);
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println!("Scan completed with {} access errors", error_count);
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}
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}
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info!("Scan completed: {} processes scanned, {} suspicious processes found", scanned_count, detections.len());
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// Handle output
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// Handle output
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let output_content = if detections.is_empty() {
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let output_content = if detections.is_empty() {
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"No suspicious activity detected.".to_string()
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"No suspicious activity detected.".to_string()
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@@ -140,10 +183,12 @@ fn main() -> Result<()> {
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use std::fs::File;
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use std::fs::File;
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use std::io::Write;
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use std::io::Write;
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info!("Writing results to file: {}", output_path);
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let mut file = File::create(output_path)?;
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let mut file = File::create(output_path)?;
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file.write_all(output_content.as_bytes())?;
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file.write_all(output_content.as_bytes())?;
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println!("Results written to {}", output_path);
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println!("Results written to {}", output_path);
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} else {
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} else {
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debug!("Writing results to stdout");
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print!("{}", output_content);
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print!("{}", output_content);
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}
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}
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