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v2fly/vendor/github.com/lucas-clemente/quic-go/streams_map_incoming_uni.go

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// This file was automatically generated by genny.
// Any changes will be lost if this file is regenerated.
// see https://github.com/cheekybits/genny
package quic
import (
"fmt"
"sync"
"github.com/lucas-clemente/quic-go/internal/protocol"
"github.com/lucas-clemente/quic-go/internal/wire"
)
type incomingUniStreamsMap struct {
mutex sync.RWMutex
cond sync.Cond
streams map[protocol.StreamID]receiveStreamI
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nextStreamToAccept protocol.StreamID // the next stream that will be returned by AcceptStream()
nextStreamToOpen protocol.StreamID // the highest stream that the peer openend
maxStream protocol.StreamID // the highest stream that the peer is allowed to open
maxNumStreams uint64 // maximum number of streams
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newStream func(protocol.StreamID) receiveStreamI
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queueMaxStreamID func(*wire.MaxStreamsFrame)
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closeErr error
}
func newIncomingUniStreamsMap(
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nextStreamToAccept protocol.StreamID,
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initialMaxStreamID protocol.StreamID,
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maxNumStreams uint64,
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queueControlFrame func(wire.Frame),
newStream func(protocol.StreamID) receiveStreamI,
) *incomingUniStreamsMap {
m := &incomingUniStreamsMap{
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streams: make(map[protocol.StreamID]receiveStreamI),
nextStreamToAccept: nextStreamToAccept,
nextStreamToOpen: nextStreamToAccept,
maxStream: initialMaxStreamID,
maxNumStreams: maxNumStreams,
newStream: newStream,
queueMaxStreamID: func(f *wire.MaxStreamsFrame) { queueControlFrame(f) },
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}
m.cond.L = &m.mutex
return m
}
func (m *incomingUniStreamsMap) AcceptStream() (receiveStreamI, error) {
m.mutex.Lock()
defer m.mutex.Unlock()
var str receiveStreamI
for {
var ok bool
if m.closeErr != nil {
return nil, m.closeErr
}
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str, ok = m.streams[m.nextStreamToAccept]
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if ok {
break
}
m.cond.Wait()
}
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m.nextStreamToAccept += 4
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return str, nil
}
func (m *incomingUniStreamsMap) GetOrOpenStream(id protocol.StreamID) (receiveStreamI, error) {
m.mutex.RLock()
if id > m.maxStream {
m.mutex.RUnlock()
return nil, fmt.Errorf("peer tried to open stream %d (current limit: %d)", id, m.maxStream)
}
// if the id is smaller than the highest we accepted
// * this stream exists in the map, and we can return it, or
// * this stream was already closed, then we can return the nil
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if id < m.nextStreamToOpen {
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s := m.streams[id]
m.mutex.RUnlock()
return s, nil
}
m.mutex.RUnlock()
m.mutex.Lock()
// no need to check the two error conditions from above again
// * maxStream can only increase, so if the id was valid before, it definitely is valid now
// * highestStream is only modified by this function
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for newID := m.nextStreamToOpen; newID <= id; newID += 4 {
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m.streams[newID] = m.newStream(newID)
m.cond.Signal()
}
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m.nextStreamToOpen = id + 4
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s := m.streams[id]
m.mutex.Unlock()
return s, nil
}
func (m *incomingUniStreamsMap) DeleteStream(id protocol.StreamID) error {
m.mutex.Lock()
defer m.mutex.Unlock()
if _, ok := m.streams[id]; !ok {
return fmt.Errorf("Tried to delete unknown stream %d", id)
}
delete(m.streams, id)
// queue a MAX_STREAM_ID frame, giving the peer the option to open a new stream
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if m.maxNumStreams > uint64(len(m.streams)) {
numNewStreams := m.maxNumStreams - uint64(len(m.streams))
m.maxStream = m.nextStreamToOpen + protocol.StreamID((numNewStreams-1)*4)
m.queueMaxStreamID(&wire.MaxStreamsFrame{
Type: protocol.StreamTypeUni,
MaxStreams: m.maxStream.StreamNum(),
})
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}
return nil
}
func (m *incomingUniStreamsMap) CloseWithError(err error) {
m.mutex.Lock()
m.closeErr = err
for _, str := range m.streams {
str.closeForShutdown(err)
}
m.mutex.Unlock()
m.cond.Broadcast()
}