mirror of https://bitbucket.org/ausocean/av.git
317 lines
7.5 KiB
Go
317 lines
7.5 KiB
Go
/*
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NAME
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rtmp.go
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DESCRIPTION
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See Readme.md
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AUTHOR
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Saxon Nelson-Milton <saxon@ausocean.org>
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Dan Kortschak <dan@ausocean.org>
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LICENSE
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rtmp.go is Copyright (C) 2017 the Australian Ocean Lab (AusOcean)
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It is free software: you can redistribute it and/or modify them
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under the terms of the GNU General Public License as published by the
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Free Software Foundation, either version 3 of the License, or (at your
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option) any later version.
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It is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with revid in gpl.txt. If not, see http://www.gnu.org/licenses.
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*/
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package rtmp
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/*
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#cgo CFLAGS: -I/usr/local/include/librtmp
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#cgo LDFLAGS: -lrtmp -Wl,-rpath=/usr/local/lib
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#include <stdlib.h>
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#include <string.h>
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#include <rtmp.h>
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RTMP* start_session(RTMP* rtmp, char* url, uint connect_timeout);
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int write_frame(RTMP* rtmp, char* data, uint data_length);
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int end_session(RTMP* rtmp);
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*/
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import "C"
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import (
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"errors"
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_ "fmt"
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"log"
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"math"
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"reflect"
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"strconv"
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"unsafe"
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)
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const (
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minDataSize = 11
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)
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const (
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RTMP_PACKET_SIZE_LARGE = 0
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RTMP_PACKET_SIZE_MEDIUM = 1
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RTMP_PACKET_SIZE_SMALL = 2
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RTMP_PACKET_TYPE_INFO = 0x12
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RTMP_PACKET_TYPE_AUDIO = 0x08
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RTMP_PACKET_TYPE_VIDEO = 0x09
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)
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// Session provides an interface for sending flv tags over rtmp.
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type Session interface {
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Open() error
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Write([]byte) (int, error)
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Close() error
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}
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// session provides parameters required for an rtmp communication session.
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type session struct {
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rtmp *C.RTMP
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url string
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timeout uint
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}
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var _ Session = (*session)(nil)
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// NewSession returns a new session.
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func NewSession(url string, connectTimeout uint) Session {
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return &session{
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url: url,
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timeout: connectTimeout,
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}
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}
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// C.AVal is in amf.h
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// See #define AVC(str) {str, sizeof(str)-1} in amf.h
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func AVC(str string) C.AVal {
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var aval C.AVal
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aval.av_val = C.CString(str)
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aval.av_len = C.int(len(str))
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return aval
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}
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// av_setDataFrame is a static const global in rtmp.c
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var setDataFrame = AVC("@setDataFrame")
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// Open establishes an rtmp connection with the url passed into the
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// constructor
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func (s *session) Open() error {
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if s.rtmp != nil {
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return errors.New("rtmp: attempt to start already running session")
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}
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var err error
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s.rtmp, err = C.start_session(s.rtmp, C.CString(s.url), C.uint(s.timeout))
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if s.rtmp == nil {
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return err
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}
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return nil
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}
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// Write writes a frame (flv tag) to the rtmp connection
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func (s *session) Write(data []byte) (int, error) {
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if s.rtmp == nil {
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return 0, Err(3)
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}
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if C.RTMP_IsConnected(s.rtmp) == 0 {
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return 0, Err(1)
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}
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//if C.RTMP_Write(s.rtmp,(*C.char)(unsafe.Pointer(&data[0])),C.int(len(data))) == 0 {
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if rtmpWrite(s.rtmp, data) == 0 {
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return 0, Err(2)
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}
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return len(data), nil
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}
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// rtmpWrite writes data to the current rtmp connection encapsulated by r
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func rtmpWrite(r *C.RTMP, data []byte) int {
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buf := sliceToPtr(data)
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// TODO: port RTMPPacket
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var pkt = &r.m_write
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var pend, enc unsafe.Pointer
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size := len(data)
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s2 := size
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var ret, num int
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pkt.m_nChannel = 0x04
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pkt.m_nInfoField2 = r.m_stream_id
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for s2 != 0 {
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if pkt.m_nBytesRead == 0 {
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if size < minDataSize {
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log.Printf("size: %d\n", size)
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log.Printf("too small \n")
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return 0
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}
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if indxPtr(buf,0) == 'F' && indxPtr(buf,1) == 'L' && indxPtr(buf,2) == 'V' {
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buf = unsafe.Pointer(uintptr(buf) + uintptr(13))
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s2 -= 13
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}
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pkt.m_packetType = C.uchar(indxPtr(buf,0))
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buf = incPtr(buf, 1)
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// TODO: port this
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pkt.m_nBodySize = C.AMF_DecodeInt24((*C.char)(buf))
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buf = incPtr(buf, 3)
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// TODO: replace with ported version
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pkt.m_nTimeStamp = C.AMF_DecodeInt24((*C.char)(buf))
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buf = incPtr(buf, 3)
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pkt.m_nTimeStamp |= C.uint(indxPtr(buf,0)) << 24
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buf = incPtr(buf, 4)
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s2 -= 11
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if ((pkt.m_packetType == RTMP_PACKET_TYPE_AUDIO ||
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pkt.m_packetType == RTMP_PACKET_TYPE_VIDEO) &&
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pkt.m_nTimeStamp == 0) || pkt.m_packetType == RTMP_PACKET_TYPE_INFO {
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pkt.m_headerType = RTMP_PACKET_SIZE_LARGE
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if pkt.m_packetType == RTMP_PACKET_TYPE_INFO {
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pkt.m_nBodySize += 16
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}
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} else {
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pkt.m_headerType = RTMP_PACKET_SIZE_MEDIUM
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}
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// TODO: Port this
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if int(C.RTMPPacket_Alloc(pkt, pkt.m_nBodySize)) == 0 {
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log.Println("Failed to allocate packet")
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return 0
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}
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enc = unsafe.Pointer(pkt.m_body)
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pend = incPtr(enc, int(pkt.m_nBodySize))
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if pkt.m_packetType == RTMP_PACKET_TYPE_INFO {
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// TODO: Port this
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enc = unsafe.Pointer(C.AMF_EncodeString((*C.char)(enc), (*C.char)(pend), &setDataFrame))
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pkt.m_nBytesRead = C.uint(math.Abs(float64(uintptr(enc) -
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uintptr(unsafe.Pointer(pkt.m_body)))))
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}
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} else {
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enc = incPtr(unsafe.Pointer(pkt.m_body), int(pkt.m_nBytesRead))
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}
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num = int(pkt.m_nBodySize - pkt.m_nBytesRead)
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if num > s2 {
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num = s2
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}
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copy(ptrToSlice(enc, num), ptrToSlice(buf, num))
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pkt.m_nBytesRead += C.uint(num)
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s2 -= num
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buf = incPtr(buf, num)
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if pkt.m_nBytesRead == pkt.m_nBodySize {
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// TODO: Port this
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ret = int(C.RTMP_SendPacket(r, pkt, 0))
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// TODO: Port this
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C.RTMPPacket_Free(pkt)
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pkt.m_nBytesRead = 0
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if ret == 0 {
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return -1
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}
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buf = incPtr(buf, 4)
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s2 -= 4
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if s2 < 0 {
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break
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}
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}
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}
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return size + s2
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}
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// indxPtr replicates C array indexing using an unsafe pointer
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func indxPtr(ptr unsafe.Pointer, inc int) byte {
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return *(*byte)(incPtr(ptr,inc))
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}
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// sliceToPtr get's the address of the first data element and returns as unsafe
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// pointer
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func sliceToPtr(data []byte) unsafe.Pointer {
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return unsafe.Pointer(&data[0])
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}
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// ptrToSlice returns a slice given unsafe pointer and size - no allocation and
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// copying is required - same data is used.
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func ptrToSlice(data unsafe.Pointer, size int) []byte {
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var ret []byte
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shDest := (*reflect.SliceHeader)(unsafe.Pointer(&ret))
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shDest.Data = uintptr(data)
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shDest.Len = size
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shDest.Cap = size
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return ret
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}
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// incPtr attempts to replicate C like pointer arithmatic functionality
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func incPtr(ptr unsafe.Pointer, inc int) unsafe.Pointer {
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return unsafe.Pointer(uintptr(ptr) + uintptr(inc))
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}
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func sendPacket(r *C.RTMP, pkt *C.RTMPPacket, queue int) int {
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const prevPacket *C.RTMPPacket
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last := 0
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var nSize, hSize, cSize, nChunkSize, tlen int
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var header, hptr, hend, buffer *C.char
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var goHbuf [RTMP_MAX_HEADER_SIZE]byte
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var hbuf = (*C.char)(unsafe.Pointer(&goHbuf[0]))
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var c C.char
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var t int32
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var tbuf *C.char = nil
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var toff *C.char = nil
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if packet.m_nChannel >= r.m_channelsAllocatedOut {
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n := int(packet.m_nChannel+10)
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packets := C.realloc(r.m_vecChannelsOut, unsafe.Sizeof(*C.RTMPPacket) * n)
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if packets == 0 {
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C.free(r.m_vecChannelsOut)
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r.m_vecChannelsOut = nil
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r.m_channelsAllocatedOut = 0
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return 0
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}
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r.m_vecChannelsOut = packets
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C.memset(r.m_vecChannelsOut + r.m_channelsAllocatedOut, 0,
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unsafe.Sizeof(*RTMPPacket) * (n-r.m_channelsAllocatedOut))
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r.m_channelsAllocatedOut = n
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}
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}
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// Close terminates the rtmp connection
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func (s *session) Close() error {
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if s.rtmp == nil {
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return Err(3)
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}
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ret := C.end_session(s.rtmp)
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s.rtmp = nil
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if ret != 0 {
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return Err(ret)
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}
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return nil
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}
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var rtmpErrs = [...]string{
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1: "rtmp: not connected",
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2: "rtmp: write error",
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3: "rtmp: not started",
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}
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type Err uint
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func (e Err) Error() string {
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if 0 <= int(e) && int(e) < len(rtmpErrs) {
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s := rtmpErrs[e]
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if s != "" {
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return s
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}
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}
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return "rtmp: " + strconv.Itoa(int(e))
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}
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