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use std::convert::TryFrom;
use std::ffi::{c_void, CStr, CString};
use std::os::raw::c_char;
use std::ptr;
use std::slice;
use datachannel_sys as sys;
use crate::error::{check, Error, Result};
use crate::logger;
#[derive(Debug, Clone, Default)]
pub struct Reliability {
pub unordered: bool,
pub unreliable: bool,
pub max_packet_life_time: u16,
pub max_retransmits: u16,
}
impl Reliability {
fn from_raw(raw: sys::rtcReliability) -> Self {
let max_packet_life_time = u16::try_from(raw.maxPacketLifeTime).unwrap_or(0);
let max_retransmits = u16::try_from(raw.maxPacketLifeTime).unwrap_or(0);
Self {
unordered: raw.unordered,
unreliable: raw.unreliable,
max_packet_life_time,
max_retransmits,
}
}
pub fn unordered(mut self) -> Self {
self.unordered = true;
self
}
pub fn unreliable(mut self) -> Self {
self.unreliable = true;
self
}
pub fn max_packet_life_time(mut self, max_packet_life_time: u16) -> Self {
self.max_packet_life_time = max_packet_life_time;
self
}
pub fn max_retransmits(mut self, max_retransmits: u16) -> Self {
self.max_retransmits = max_retransmits;
self
}
pub(crate) fn as_raw(&self) -> sys::rtcReliability {
sys::rtcReliability {
unordered: self.unordered,
unreliable: self.unreliable,
maxPacketLifeTime: self.max_packet_life_time as i32,
maxRetransmits: self.max_retransmits as i32,
}
}
}
#[derive(Debug, Clone, Default)]
pub struct DataChannelInit {
reliability: Reliability,
protocol: CString,
negotiated: bool,
manual_stream: bool,
stream: u16,
}
impl DataChannelInit {
pub fn reliability(mut self, reliability: Reliability) -> Self {
self.reliability = reliability;
self
}
pub fn protocol(mut self, protocol: &str) -> Self {
self.protocol = CString::new(protocol).unwrap();
self
}
pub fn negotiated(mut self) -> Self {
self.negotiated = true;
self
}
pub fn manual_stream(mut self) -> Self {
self.manual_stream = true;
self
}
pub fn stream(mut self, stream: u16) -> Self {
self.stream = stream;
self
}
pub(crate) fn as_raw(&self) -> Result<sys::rtcDataChannelInit> {
Ok(sys::rtcDataChannelInit {
reliability: self.reliability.as_raw(),
protocol: self.protocol.as_ptr(),
negotiated: self.negotiated,
manualStream: self.manual_stream,
stream: self.stream,
})
}
}
#[allow(unused_variables)]
pub trait DataChannelHandler {
fn on_open(&mut self) {}
fn on_closed(&mut self) {}
fn on_error(&mut self, err: &str) {}
fn on_message(&mut self, msg: &[u8]) {}
fn on_buffered_amount_low(&mut self) {}
fn on_available(&mut self) {}
}
pub struct RtcDataChannel<D> {
id: i32,
dc_handler: D,
}
impl<D> RtcDataChannel<D>
where
D: DataChannelHandler + Send,
{
pub(crate) fn new(id: i32, dc_handler: D) -> Result<Box<Self>> {
unsafe {
let mut rtc_dc = Box::new(RtcDataChannel { id, dc_handler });
let ptr = &mut *rtc_dc;
sys::rtcSetUserPointer(id, ptr as *mut _ as *mut c_void);
check(sys::rtcSetOpenCallback(
id,
Some(RtcDataChannel::<D>::open_cb),
))?;
check(sys::rtcSetClosedCallback(
id,
Some(RtcDataChannel::<D>::closed_cb),
))?;
check(sys::rtcSetErrorCallback(
id,
Some(RtcDataChannel::<D>::error_cb),
))?;
check(sys::rtcSetMessageCallback(
id,
Some(RtcDataChannel::<D>::message_cb),
))?;
check(sys::rtcSetBufferedAmountLowCallback(
id,
Some(RtcDataChannel::<D>::buffered_amount_low_cb),
))?;
check(sys::rtcSetAvailableCallback(
id,
Some(RtcDataChannel::<D>::available_cb),
))?;
Ok(rtc_dc)
}
}
unsafe extern "C" fn open_cb(_: i32, ptr: *mut c_void) {
let rtc_dc = &mut *(ptr as *mut RtcDataChannel<D>);
rtc_dc.dc_handler.on_open()
}
unsafe extern "C" fn closed_cb(_: i32, ptr: *mut c_void) {
let rtc_dc = &mut *(ptr as *mut RtcDataChannel<D>);
rtc_dc.dc_handler.on_closed()
}
unsafe extern "C" fn error_cb(_: i32, err: *const c_char, ptr: *mut c_void) {
let rtc_dc = &mut *(ptr as *mut RtcDataChannel<D>);
let err = CStr::from_ptr(err).to_string_lossy();
rtc_dc.dc_handler.on_error(&err)
}
unsafe extern "C" fn message_cb(_: i32, msg: *const c_char, size: i32, ptr: *mut c_void) {
let rtc_dc = &mut *(ptr as *mut RtcDataChannel<D>);
let msg = if size < 0 {
CStr::from_ptr(msg).to_bytes()
} else {
slice::from_raw_parts(msg as *const u8, size as usize)
};
rtc_dc.dc_handler.on_message(msg)
}
unsafe extern "C" fn buffered_amount_low_cb(_: i32, ptr: *mut c_void) {
let rtc_dc = &mut *(ptr as *mut RtcDataChannel<D>);
rtc_dc.dc_handler.on_buffered_amount_low()
}
unsafe extern "C" fn available_cb(_: i32, ptr: *mut c_void) {
let rtc_dc = &mut *(ptr as *mut RtcDataChannel<D>);
rtc_dc.dc_handler.on_available()
}
pub fn send(&mut self, msg: &[u8]) -> Result<()> {
check(unsafe {
sys::rtcSendMessage(self.id, msg.as_ptr() as *const c_char, msg.len() as i32)
})
.map(|_| ())
}
pub fn label(&self) -> String {
let buf_size = check(unsafe {
sys::rtcGetDataChannelLabel(self.id, ptr::null_mut() as *mut c_char, 0)
})
.expect("Couldn't get buffer size") as usize;
let mut buf = vec![0; buf_size];
match check(unsafe {
sys::rtcGetDataChannelLabel(self.id, buf.as_mut_ptr() as *mut c_char, buf_size as i32)
}) {
Ok(_) => match crate::ffi_string(&buf) {
Ok(label) => label,
Err(err) => {
logger::error!(
"Couldn't get label for RtcDataChannel id={} {:p}, {}",
self.id,
self,
err
);
String::default()
}
},
Err(err) => {
logger::warn!(
"Couldn't get label for RtcDataChannel id={} {:p}, {}",
self.id,
self,
err
);
String::default()
}
}
}
pub fn protocol(&self) -> Option<String> {
let buf_size = check(unsafe {
sys::rtcGetDataChannelProtocol(self.id, ptr::null_mut() as *mut c_char, 0)
})
.expect("Couldn't get buffer size") as usize;
let mut buf = vec![0; buf_size];
match check(unsafe {
sys::rtcGetDataChannelProtocol(
self.id,
buf.as_mut_ptr() as *mut c_char,
buf_size as i32,
)
}) {
Ok(1) => None,
Ok(_) => match crate::ffi_string(&buf) {
Ok(protocol) => Some(protocol),
Err(err) => {
logger::error!(
"Couldn't get protocol for RtcDataChannel id={} {:p}, {}",
self.id,
self,
err
);
None
}
},
Err(err) => {
logger::warn!(
"Couldn't get protocol for RtcDataChannel id={} {:p}, {}",
self.id,
self,
err
);
None
}
}
}
pub fn reliability(&self) -> Reliability {
let mut reliability = sys::rtcReliability {
unordered: false,
unreliable: false,
maxPacketLifeTime: 0,
maxRetransmits: 0,
};
check(unsafe { sys::rtcGetDataChannelReliability(self.id, &mut reliability) })
.expect("Couldn't get RtcDataChannel reliability");
Reliability::from_raw(reliability)
}
pub fn stream(&self) -> usize {
check(unsafe { sys::rtcGetDataChannelStream(self.id) })
.expect("Couldn't get RtcDataChannel stream") as usize
}
pub fn buffered_amount(&self) -> usize {
match check(unsafe { sys::rtcGetBufferedAmount(self.id) }) {
Ok(amount) => amount as usize,
Err(err) => {
logger::error!(
"Couldn't get buffered_amount for RtcDataChannel id={} {:p}, {}",
self.id,
self,
err
);
0
}
}
}
pub fn set_buffered_amount_low_threshold(&mut self, amount: usize) -> Result<()> {
let amount = i32::try_from(amount).map_err(|_| Error::InvalidArg)?;
check(unsafe { sys::rtcSetBufferedAmountLowThreshold(self.id, amount) })?;
Ok(())
}
pub fn available_amount(&self) -> usize {
match check(unsafe { sys::rtcGetAvailableAmount(self.id) }) {
Ok(amount) => amount as usize,
Err(err) => {
logger::error!(
"Couldn't get available_amount for RtcDataChannel id={} {:p}, {}",
self.id,
self,
err
);
0
}
}
}
}
impl<D> Drop for RtcDataChannel<D> {
fn drop(&mut self) {
if let Err(err) = check(unsafe { sys::rtcDeleteDataChannel(self.id) }) {
logger::error!(
"Error while dropping RtcDataChannel id={} {:p}: {}",
self.id,
self,
err
);
}
}
}