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Core device proxy bindings
This commit is contained in:
410
ffi/src/core_device_proxy.rs
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410
ffi/src/core_device_proxy.rs
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// Jackson Coxson
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use idevice::{
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IdeviceError, IdeviceService, core_device_proxy::CoreDeviceProxy, tcp::adapter::Adapter,
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};
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use crate::{
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IdeviceErrorCode, IdeviceHandle, RUNTIME,
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provider::{TcpProviderHandle, UsbmuxdProviderHandle},
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};
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pub struct CoreDeviceProxyHandle(pub CoreDeviceProxy);
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pub struct AdapterHandle(pub Adapter);
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/// Automatically creates and connects to Core Device Proxy, returning a client handle
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///
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/// # Arguments
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/// * [`provider`] - A TcpProvider
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/// * [`client`] - On success, will be set to point to a newly allocated CoreDeviceProxy handle
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///
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/// # Returns
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/// An error code indicating success or failure
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///
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/// # Safety
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/// `provider` must be a valid pointer to a handle allocated by this library
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/// `client` must be a valid, non-null pointer to a location where the handle will be stored
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_connect_tcp(
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provider: *mut TcpProviderHandle,
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client: *mut *mut CoreDeviceProxyHandle,
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) -> IdeviceErrorCode {
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if provider.is_null() || client.is_null() {
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log::error!("Null pointer provided");
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return IdeviceErrorCode::InvalidArg;
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}
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let res: Result<CoreDeviceProxy, IdeviceError> = RUNTIME.block_on(async move {
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// Take ownership of the provider (without immediately dropping it)
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let provider_box = unsafe { Box::from_raw(provider) };
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// Get a reference to the inner value
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let provider_ref = &provider_box.0;
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// Connect using the reference
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let result = CoreDeviceProxy::connect(provider_ref).await;
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// Explicitly keep the provider_box alive until after connect completes
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std::mem::forget(provider_box);
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result
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});
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match res {
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Ok(r) => {
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let boxed = Box::new(CoreDeviceProxyHandle(r));
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unsafe { *client = Box::into_raw(boxed) };
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IdeviceErrorCode::IdeviceSuccess
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}
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Err(e) => {
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// If connection failed, the provider_box was already forgotten,
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// so we need to reconstruct it to avoid leak
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let _ = unsafe { Box::from_raw(provider) };
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e.into()
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}
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}
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}
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/// Automatically creates and connects to Core Device Proxy, returning a client handle
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///
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/// # Arguments
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/// * [`provider`] - A UsbmuxdProvider
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/// * [`client`] - On success, will be set to point to a newly allocated CoreDeviceProxy handle
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///
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/// # Returns
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/// An error code indicating success or failure
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///
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/// # Safety
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/// `provider` must be a valid pointer to a handle allocated by this library
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/// `client` must be a valid, non-null pointer to a location where the handle will be stored
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_connect_usbmuxd(
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provider: *mut UsbmuxdProviderHandle,
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client: *mut *mut CoreDeviceProxyHandle,
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) -> IdeviceErrorCode {
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if provider.is_null() {
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log::error!("Provider is null");
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return IdeviceErrorCode::InvalidArg;
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}
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let res: Result<CoreDeviceProxy, IdeviceError> = RUNTIME.block_on(async move {
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// Take ownership of the provider (without immediately dropping it)
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let provider_box = unsafe { Box::from_raw(provider) };
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// Get a reference to the inner value
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let provider_ref = &provider_box.0;
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// Connect using the reference
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let result = CoreDeviceProxy::connect(provider_ref).await;
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// Explicitly keep the provider_box alive until after connect completes
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std::mem::forget(provider_box);
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result
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});
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match res {
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Ok(r) => {
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let boxed = Box::new(CoreDeviceProxyHandle(r));
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unsafe { *client = Box::into_raw(boxed) };
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IdeviceErrorCode::IdeviceSuccess
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}
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Err(e) => e.into(),
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}
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}
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/// Automatically creates and connects to Core Device Proxy, returning a client handle
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///
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/// # Arguments
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/// * [`socket`] - An IdeviceSocket handle
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/// * [`client`] - On success, will be set to point to a newly allocated CoreDeviceProxy handle
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///
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/// # Returns
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/// An error code indicating success or failure
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///
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/// # Safety
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/// `socket` must be a valid pointer to a handle allocated by this library
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/// `client` must be a valid, non-null pointer to a location where the handle will be stored
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_new(
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socket: *mut IdeviceHandle,
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client: *mut *mut CoreDeviceProxyHandle,
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) -> IdeviceErrorCode {
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if socket.is_null() {
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return IdeviceErrorCode::InvalidArg;
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}
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let socket = unsafe { Box::from_raw(socket) }.0;
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let r: Result<CoreDeviceProxy, IdeviceError> =
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RUNTIME.block_on(async move { CoreDeviceProxy::new(socket).await });
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match r {
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Ok(r) => {
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let boxed = Box::new(CoreDeviceProxyHandle(r));
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unsafe { *client = Box::into_raw(boxed) };
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IdeviceErrorCode::IdeviceSuccess
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}
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Err(e) => e.into(),
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}
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}
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/// Sends data through the CoreDeviceProxy tunnel
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///
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/// # Arguments
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/// * [`handle`] - The CoreDeviceProxy handle
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/// * [`data`] - The data to send
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/// * [`length`] - The length of the data
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///
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/// # Returns
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/// An error code indicating success or failure
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///
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/// # Safety
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/// `handle` must be a valid pointer to a handle allocated by this library
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/// `data` must be a valid pointer to at least `length` bytes
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_send(
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handle: *mut CoreDeviceProxyHandle,
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data: *const u8,
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length: usize,
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) -> IdeviceErrorCode {
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if handle.is_null() || data.is_null() {
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return IdeviceErrorCode::InvalidArg;
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}
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let proxy = unsafe { &mut (*handle).0 };
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let data_slice = unsafe { std::slice::from_raw_parts(data, length) };
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let res = RUNTIME.block_on(async move { proxy.send(data_slice).await });
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match res {
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Ok(_) => IdeviceErrorCode::IdeviceSuccess,
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Err(e) => e.into(),
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}
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}
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/// Receives data from the CoreDeviceProxy tunnel
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///
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/// # Arguments
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/// * [`handle`] - The CoreDeviceProxy handle
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/// * [`data`] - Pointer to a buffer where the received data will be stored
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/// * [`length`] - Pointer to store the actual length of received data
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/// * [`max_length`] - Maximum number of bytes that can be stored in `data`
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///
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/// # Returns
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/// An error code indicating success or failure
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///
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/// # Safety
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/// `handle` must be a valid pointer to a handle allocated by this library
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/// `data` must be a valid pointer to at least `max_length` bytes
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/// `length` must be a valid pointer to a usize
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_recv(
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handle: *mut CoreDeviceProxyHandle,
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data: *mut u8,
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length: *mut usize,
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max_length: usize,
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) -> IdeviceErrorCode {
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if handle.is_null() || data.is_null() || length.is_null() {
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return IdeviceErrorCode::InvalidArg;
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}
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let proxy = unsafe { &mut (*handle).0 };
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let res = RUNTIME.block_on(async move { proxy.recv().await });
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match res {
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Ok(received_data) => {
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let received_len = received_data.len();
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if received_len > max_length {
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return IdeviceErrorCode::BufferTooSmall;
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}
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unsafe {
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std::ptr::copy_nonoverlapping(received_data.as_ptr(), data, received_len);
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*length = received_len;
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}
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IdeviceErrorCode::IdeviceSuccess
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}
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Err(e) => e.into(),
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}
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}
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/// Gets the client parameters from the handshake
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///
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/// # Arguments
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/// * [`handle`] - The CoreDeviceProxy handle
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/// * [`mtu`] - Pointer to store the MTU value
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/// * [`address`] - Pointer to store the IP address string (must be at least 16 bytes)
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/// * [`netmask`] - Pointer to store the netmask string (must be at least 16 bytes)
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///
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/// # Returns
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/// An error code indicating success or failure
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///
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/// # Safety
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/// `handle` must be a valid pointer to a handle allocated by this library
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/// `mtu` must be a valid pointer to a u16
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/// `address` and `netmask` must be valid pointers to buffers of at least 16 bytes
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_get_client_parameters(
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handle: *mut CoreDeviceProxyHandle,
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mtu: *mut u16,
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address: *mut u8,
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address_len: usize,
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netmask: *mut u8,
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netmask_len: usize,
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) -> IdeviceErrorCode {
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if handle.is_null() || mtu.is_null() || address.is_null() || netmask.is_null() {
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return IdeviceErrorCode::InvalidArg;
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}
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let proxy = unsafe { &(*handle).0 };
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let params = &proxy.handshake.client_parameters;
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unsafe {
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*mtu = params.mtu;
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}
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// Copy address string
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if address_len < params.address.len() + 1 || netmask_len < params.netmask.len() + 1 {
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return IdeviceErrorCode::BufferTooSmall;
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}
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unsafe {
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std::ptr::copy_nonoverlapping(params.address.as_ptr(), address, params.address.len());
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*address.add(params.address.len()) = 0; // Null terminator
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std::ptr::copy_nonoverlapping(params.netmask.as_ptr(), netmask, params.netmask.len());
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*netmask.add(params.netmask.len()) = 0; // Null terminator
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}
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IdeviceErrorCode::IdeviceSuccess
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}
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/// Gets the server address from the handshake
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///
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/// # Arguments
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/// * [`handle`] - The CoreDeviceProxy handle
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/// * [`address`] - Pointer to store the server address string (must be at least 16 bytes)
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///
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/// # Returns
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/// An error code indicating success or failure
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///
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/// # Safety
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/// `handle` must be a valid pointer to a handle allocated by this library
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/// `address` must be a valid pointer to a buffer of at least 16 bytes
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_get_server_address(
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handle: *mut CoreDeviceProxyHandle,
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address: *mut u8,
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address_len: usize,
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) -> IdeviceErrorCode {
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if handle.is_null() || address.is_null() {
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return IdeviceErrorCode::InvalidArg;
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}
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let proxy = unsafe { &(*handle).0 };
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let server_addr = &proxy.handshake.server_address;
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if address_len < server_addr.len() + 1 {
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return IdeviceErrorCode::BufferTooSmall;
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}
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unsafe {
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std::ptr::copy_nonoverlapping(server_addr.as_ptr(), address, server_addr.len());
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*address.add(server_addr.len()) = 0; // Null terminator
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}
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IdeviceErrorCode::IdeviceSuccess
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}
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/// Gets the server RSD port from the handshake
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///
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/// # Arguments
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/// * [`handle`] - The CoreDeviceProxy handle
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/// * [`port`] - Pointer to store the port number
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|
///
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/// # Returns
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||||||
|
/// An error code indicating success or failure
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||||||
|
///
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/// # Safety
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||||||
|
/// `handle` must be a valid pointer to a handle allocated by this library
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|
/// `port` must be a valid pointer to a u16
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn core_device_proxy_get_server_rsd_port(
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handle: *mut CoreDeviceProxyHandle,
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port: *mut u16,
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|
) -> IdeviceErrorCode {
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||||||
|
if handle.is_null() || port.is_null() {
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||||||
|
return IdeviceErrorCode::InvalidArg;
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||||||
|
}
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||||||
|
|
||||||
|
let proxy = unsafe { &(*handle).0 };
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||||||
|
unsafe {
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|
*port = proxy.handshake.server_rsd_port;
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||||||
|
}
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||||||
|
|
||||||
|
IdeviceErrorCode::IdeviceSuccess
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||||||
|
}
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||||||
|
|
||||||
|
/// Creates a software TCP tunnel adapter
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||||||
|
///
|
||||||
|
/// # Arguments
|
||||||
|
/// * [`handle`] - The CoreDeviceProxy handle
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||||||
|
/// * [`adapter`] - Pointer to store the newly created adapter handle
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||||||
|
///
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||||||
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/// # Returns
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||||||
|
/// An error code indicating success or failure
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||||||
|
///
|
||||||
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/// # Safety
|
||||||
|
/// `handle` must be a valid pointer to a handle allocated by this library, and never used again
|
||||||
|
/// `adapter` must be a valid pointer to a location where the handle will be stored
|
||||||
|
#[unsafe(no_mangle)]
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||||||
|
pub unsafe extern "C" fn core_device_proxy_create_tcp_adapter(
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||||||
|
handle: *mut CoreDeviceProxyHandle,
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||||||
|
adapter: *mut *mut AdapterHandle,
|
||||||
|
) -> IdeviceErrorCode {
|
||||||
|
if handle.is_null() || adapter.is_null() {
|
||||||
|
return IdeviceErrorCode::InvalidArg;
|
||||||
|
}
|
||||||
|
|
||||||
|
let proxy = unsafe { Box::from_raw(handle) };
|
||||||
|
let result = proxy.0.create_software_tunnel();
|
||||||
|
|
||||||
|
match result {
|
||||||
|
Ok(adapter_obj) => {
|
||||||
|
let boxed = Box::new(AdapterHandle(adapter_obj));
|
||||||
|
unsafe { *adapter = Box::into_raw(boxed) };
|
||||||
|
IdeviceErrorCode::IdeviceSuccess
|
||||||
|
}
|
||||||
|
Err(e) => e.into(),
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
/// Frees a handle
|
||||||
|
///
|
||||||
|
/// # Arguments
|
||||||
|
/// * [`handle`] - The handle to free
|
||||||
|
///
|
||||||
|
/// # Safety
|
||||||
|
/// `handle` must be a valid pointer to the handle that was allocated by this library,
|
||||||
|
/// or NULL (in which case this function does nothing)
|
||||||
|
#[unsafe(no_mangle)]
|
||||||
|
pub unsafe extern "C" fn core_device_proxy_free(handle: *mut CoreDeviceProxyHandle) {
|
||||||
|
if !handle.is_null() {
|
||||||
|
log::debug!("Freeing core_deivce_proxy");
|
||||||
|
let _ = unsafe { Box::from_raw(handle) };
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
/// Frees a handle
|
||||||
|
///
|
||||||
|
/// # Arguments
|
||||||
|
/// * [`handle`] - The handle to free
|
||||||
|
///
|
||||||
|
/// # Safety
|
||||||
|
/// `handle` must be a valid pointer to the handle that was allocated by this library,
|
||||||
|
/// or NULL (in which case this function does nothing)
|
||||||
|
#[unsafe(no_mangle)]
|
||||||
|
pub unsafe extern "C" fn adapter_free(handle: *mut AdapterHandle) {
|
||||||
|
if !handle.is_null() {
|
||||||
|
log::debug!("Freeing adapter");
|
||||||
|
let _ = unsafe { Box::from_raw(handle) };
|
||||||
|
}
|
||||||
|
}
|
||||||
@@ -44,6 +44,7 @@ pub enum IdeviceErrorCode {
|
|||||||
InvalidArgument = -36,
|
InvalidArgument = -36,
|
||||||
UnknownErrorType = -37,
|
UnknownErrorType = -37,
|
||||||
// FFI specific bindings
|
// FFI specific bindings
|
||||||
|
BufferTooSmall = -998,
|
||||||
InvalidString = -999,
|
InvalidString = -999,
|
||||||
InvalidArg = -1000,
|
InvalidArg = -1000,
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -1,5 +1,6 @@
|
|||||||
// Jackson Coxson
|
// Jackson Coxson
|
||||||
|
|
||||||
|
pub mod core_device_proxy;
|
||||||
mod errors;
|
mod errors;
|
||||||
pub mod heartbeat;
|
pub mod heartbeat;
|
||||||
pub mod installation_proxy;
|
pub mod installation_proxy;
|
||||||
|
|||||||
Reference in New Issue
Block a user