2018-02-13 11:39:26 +03:00
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/*
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NAME
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2018-08-19 14:09:57 +03:00
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encoder.go
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2018-02-13 11:39:26 +03:00
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DESCRIPTION
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See Readme.md
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AUTHOR
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2018-08-18 04:57:36 +03:00
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Dan Kortschak <dan@ausocean.org>
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2018-02-28 16:46:59 +03:00
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Saxon Nelson-Milton <saxon@ausocean.org>
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2018-02-13 11:39:26 +03:00
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LICENSE
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2018-08-19 14:09:57 +03:00
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encoder.go is Copyright (C) 2017-2018 the Australian Ocean Lab (AusOcean)
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2018-02-13 11:39:26 +03:00
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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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2018-08-18 04:57:36 +03:00
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along with revid in gpl.txt. If not, see http://www.gnu.org/licenses.
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2018-02-13 11:39:26 +03:00
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*/
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2018-08-18 04:57:36 +03:00
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2018-08-19 13:59:22 +03:00
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package mts
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2017-12-30 11:31:50 +03:00
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2018-02-12 10:58:29 +03:00
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import (
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2018-10-19 03:50:08 +03:00
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"io"
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2019-01-08 12:31:30 +03:00
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"sync"
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2018-08-18 06:51:50 +03:00
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"time"
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2018-08-20 01:19:02 +03:00
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"bitbucket.org/ausocean/av/stream/mts/pes"
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2018-12-10 10:14:56 +03:00
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"bitbucket.org/ausocean/av/stream/mts/psi"
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)
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2019-01-07 09:43:50 +03:00
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// Some common manifestations of PSI
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var (
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2019-01-10 03:42:33 +03:00
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// standardPat is a minimal PAT.
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2019-01-08 12:16:24 +03:00
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standardPat = psi.PSI{
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2019-01-07 09:43:50 +03:00
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Pf: 0x00,
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Tid: 0x00,
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Ssi: true,
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Pb: false,
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Sl: 0x0d,
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Tss: &psi.TSS{
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Tide: 0x01,
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V: 0,
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Cni: true,
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Sn: 0,
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Lsn: 0,
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Sd: &psi.PAT{
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Pn: 0x01,
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Pmpid: 0x1000,
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},
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},
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}
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2019-01-11 14:59:48 +03:00
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// standardPmt is a minimal PMT, without descriptors for time and location.
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2019-01-08 12:16:24 +03:00
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standardPmt = psi.PSI{
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2019-01-07 09:43:50 +03:00
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Pf: 0x00,
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Tid: 0x02,
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Ssi: true,
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Sl: 0x12,
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Tss: &psi.TSS{
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Tide: 0x01,
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V: 0,
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Cni: true,
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Sn: 0,
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Lsn: 0,
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Sd: &psi.PMT{
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2019-01-08 12:14:33 +03:00
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Pcrpid: 0x0100,
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2019-01-07 09:43:50 +03:00
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Pil: 0,
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Essd: &psi.ESSD{
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St: 0x1b,
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Epid: 0x0100,
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Esil: 0x00,
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},
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},
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},
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}
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2019-01-11 14:59:48 +03:00
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// standardPmtTimeLocation is a standard PMT with time and location
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// descriptors, but time and location fields zeroed out.
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2019-01-08 12:16:24 +03:00
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standardPmtTimeLocation = psi.PSI{
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2019-01-07 09:43:50 +03:00
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Pf: 0x00,
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Tid: 0x02,
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Ssi: true,
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Sl: 0x3e,
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Tss: &psi.TSS{
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Tide: 0x01,
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V: 0,
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Cni: true,
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Sn: 0,
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Lsn: 0,
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Sd: &psi.PMT{
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Pcrpid: 0x0100,
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Pil: psi.PmtTimeLocationPil,
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Pd: []psi.Desc{
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{
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Dt: psi.TimeDescTag,
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Dl: psi.TimeDataSize,
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Dd: make([]byte, psi.TimeDataSize),
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},
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{
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Dt: psi.LocationDescTag,
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Dl: psi.LocationDataSize,
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Dd: make([]byte, psi.LocationDataSize),
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},
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},
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Essd: &psi.ESSD{
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St: 0x1b,
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Epid: 0x0100,
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Esil: 0x00,
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},
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},
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},
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}
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)
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2018-11-20 17:21:57 +03:00
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const (
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2019-01-24 07:03:22 +03:00
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psiInterval = 1 * time.Second
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2018-11-20 17:21:57 +03:00
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)
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2018-04-17 08:20:23 +03:00
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2019-01-09 01:42:46 +03:00
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// timeLocation holds time and location data
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2019-01-08 12:31:30 +03:00
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type timeLocation struct {
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2019-01-10 09:56:48 +03:00
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mu sync.RWMutex
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2018-12-14 08:32:47 +03:00
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time uint64
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location string
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2018-08-19 03:29:33 +03:00
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}
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2019-01-08 12:31:30 +03:00
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// SetTimeStamp sets the time field of a TimeLocation.
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func (tl *timeLocation) SetTimeStamp(t uint64) {
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2019-01-10 09:56:48 +03:00
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tl.mu.Lock()
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2019-01-08 12:31:30 +03:00
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tl.time = t
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2019-01-10 09:56:48 +03:00
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tl.mu.Unlock()
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2019-01-08 12:31:30 +03:00
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}
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// GetTimeStamp returns the location of a TimeLocation.
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2019-01-09 01:45:08 +03:00
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func (tl *timeLocation) TimeStamp() uint64 {
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2019-01-10 09:56:48 +03:00
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tl.mu.RLock()
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t := tl.time
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tl.mu.RUnlock()
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return t
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2019-01-08 12:31:30 +03:00
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}
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2018-12-13 04:52:06 +03:00
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2019-01-08 12:31:30 +03:00
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// SetLocation sets the location of a TimeLocation.
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func (tl *timeLocation) SetLocation(l string) {
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2019-01-10 09:56:48 +03:00
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tl.mu.Lock()
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2019-01-08 12:31:30 +03:00
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tl.location = l
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2019-01-10 09:56:48 +03:00
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tl.mu.Unlock()
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2018-08-19 03:29:33 +03:00
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}
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2019-01-08 12:31:30 +03:00
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// GetLocation returns the location of a TimeLocation.
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2019-01-09 01:45:08 +03:00
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func (tl *timeLocation) Location() string {
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2019-01-10 09:56:48 +03:00
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tl.mu.RLock()
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l := tl.location
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tl.mu.RUnlock()
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return l
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2018-08-19 03:29:33 +03:00
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}
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2019-01-08 12:31:30 +03:00
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// MetData will hold time and location data which may be set externally if
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// this data is available. It is then inserted into mpegts packets outputted.
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var MetaData timeLocation
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2018-12-14 08:39:53 +03:00
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var (
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2019-01-08 12:16:24 +03:00
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patTable = standardPat.Bytes()
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pmtTable = standardPmtTimeLocation.Bytes()
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2018-12-14 08:39:53 +03:00
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)
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2018-02-28 17:42:00 +03:00
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2018-08-18 10:49:26 +03:00
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// Time related constants.
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const (
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// ptsOffset is the offset added to the clock to determine
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2019-01-08 12:12:46 +03:00
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// the current presentation timestamp.
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2018-08-18 06:51:50 +03:00
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ptsOffset = 700 * time.Millisecond
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2018-08-18 10:49:26 +03:00
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// pcrFreq is the base Program Clock Reference frequency.
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pcrFreq = 90000 // Hz
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2018-01-16 08:49:18 +03:00
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)
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2018-08-19 14:09:57 +03:00
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// Encoder encapsulates properties of an mpegts generator.
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type Encoder struct {
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2018-10-19 03:50:08 +03:00
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dst io.Writer
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2018-08-18 07:06:14 +03:00
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clock time.Duration
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frameInterval time.Duration
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ptsOffset time.Duration
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2019-01-12 10:06:35 +03:00
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tsSpace [PacketSize]byte
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2019-01-02 03:06:46 +03:00
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pesSpace [pes.MaxPesSize]byte
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2018-08-18 07:06:14 +03:00
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continuity map[int]byte
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2019-01-24 07:03:22 +03:00
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psiLastTime time.Time
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2017-12-13 09:52:18 +03:00
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}
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2018-08-19 14:09:57 +03:00
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// NewEncoder returns an Encoder with the specified frame rate.
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2018-10-19 03:50:08 +03:00
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func NewEncoder(dst io.Writer, fps float64) *Encoder {
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2018-08-19 14:09:57 +03:00
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return &Encoder{
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2018-10-19 03:50:08 +03:00
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dst: dst,
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2018-08-18 07:06:14 +03:00
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frameInterval: time.Duration(float64(time.Second) / fps),
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ptsOffset: ptsOffset,
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2018-08-18 04:57:36 +03:00
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continuity: map[int]byte{
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2019-01-25 08:55:01 +03:00
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PatPid: 0,
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PmtPid: 0,
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VideoPid: 0,
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2018-08-18 04:57:36 +03:00
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},
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}
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2018-01-08 04:12:26 +03:00
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}
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2018-08-18 10:49:26 +03:00
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const (
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hasDTS = 0x1
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hasPTS = 0x2
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)
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2018-02-28 17:42:00 +03:00
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// generate handles the incoming data and generates equivalent mpegts packets -
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2019-01-08 12:12:46 +03:00
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// sending them to the output channel.
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2018-08-19 14:58:20 +03:00
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func (e *Encoder) Encode(nalu []byte) error {
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2019-01-24 07:09:14 +03:00
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now := time.Now()
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if now.Sub(e.psiLastTime) > psiInterval {
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2019-01-23 08:20:25 +03:00
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err := e.writePSI()
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if err != nil {
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return err
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}
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2019-01-24 07:09:14 +03:00
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e.psiLastTime = now
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2019-01-23 08:20:25 +03:00
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}
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2019-01-24 07:03:22 +03:00
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2018-08-19 14:58:20 +03:00
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// Prepare PES data.
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pesPkt := pes.Packet{
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2019-01-25 08:55:01 +03:00
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StreamID: StreamID,
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2018-08-19 14:58:20 +03:00
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PDI: hasPTS,
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PTS: e.pts(),
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Data: nalu,
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HeaderLength: 5,
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}
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2019-01-02 03:06:46 +03:00
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buf := pesPkt.Bytes(e.pesSpace[:pes.MaxPesSize])
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2018-08-19 14:58:20 +03:00
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pusi := true
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for len(buf) != 0 {
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pkt := Packet{
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PUSI: pusi,
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2019-01-25 08:55:01 +03:00
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PID: VideoPid,
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2018-08-19 14:58:20 +03:00
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RAI: pusi,
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2019-01-25 08:55:01 +03:00
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CC: e.ccFor(VideoPid),
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AFC: HasAdaptationField | HasPayload,
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2018-08-19 14:58:20 +03:00
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PCRF: pusi,
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2018-08-18 04:57:36 +03:00
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}
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2018-08-19 14:58:20 +03:00
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n := pkt.FillPayload(buf)
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buf = buf[n:]
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if pusi {
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// If the packet has a Payload Unit Start Indicator
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// flag set then we need to write a PCR.
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pkt.PCR = e.pcr()
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pusi = false
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2018-01-04 10:04:33 +03:00
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}
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2019-01-12 10:06:35 +03:00
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_, err := e.dst.Write(pkt.Bytes(e.tsSpace[:PacketSize]))
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2018-10-19 03:50:08 +03:00
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if err != nil {
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return err
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}
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2018-01-04 10:04:33 +03:00
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}
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2018-08-19 14:58:20 +03:00
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e.tick()
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return nil
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2017-12-13 09:52:18 +03:00
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}
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2018-08-18 04:57:36 +03:00
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2018-12-14 09:16:36 +03:00
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// writePSI creates mpegts with pat and pmt tables - with pmt table having updated
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// location and time data.
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2018-11-21 05:04:00 +03:00
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func (e *Encoder) writePSI() error {
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2019-01-08 12:12:46 +03:00
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// Write PAT.
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2018-11-21 05:04:00 +03:00
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patPkt := Packet{
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PUSI: true,
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2019-01-25 08:55:01 +03:00
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PID: PatPid,
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CC: e.ccFor(PatPid),
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AFC: HasPayload,
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2018-12-27 06:41:23 +03:00
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Payload: patTable,
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2018-11-21 05:04:00 +03:00
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}
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2019-01-12 10:06:35 +03:00
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_, err := e.dst.Write(patPkt.Bytes(e.tsSpace[:PacketSize]))
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2018-11-21 05:04:00 +03:00
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if err != nil {
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return err
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}
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2019-01-08 12:12:46 +03:00
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// Update pmt table time and location.
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2019-01-09 01:45:08 +03:00
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err = psi.UpdateTime(pmtTable, MetaData.TimeStamp())
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2018-12-13 09:43:34 +03:00
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if err != nil {
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return err
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}
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2019-01-09 01:45:08 +03:00
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err = psi.UpdateLocation(pmtTable, MetaData.Location())
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2018-12-13 09:43:34 +03:00
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if err != nil {
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return nil
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}
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2018-12-13 04:52:06 +03:00
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2019-01-08 12:12:46 +03:00
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// Create mts packet from pmt table.
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2018-11-21 05:04:00 +03:00
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pmtPkt := Packet{
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PUSI: true,
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2019-01-25 08:55:01 +03:00
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PID: PmtPid,
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CC: e.ccFor(PmtPid),
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AFC: HasPayload,
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2018-12-27 06:41:23 +03:00
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Payload: pmtTable,
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2018-11-21 05:04:00 +03:00
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}
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2019-01-12 10:06:35 +03:00
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_, err = e.dst.Write(pmtPkt.Bytes(e.tsSpace[:PacketSize]))
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2018-11-21 05:04:00 +03:00
|
|
|
if err != nil {
|
|
|
|
return err
|
|
|
|
}
|
|
|
|
return nil
|
|
|
|
}
|
|
|
|
|
2018-08-18 07:06:14 +03:00
|
|
|
// tick advances the clock one frame interval.
|
2018-08-19 14:09:57 +03:00
|
|
|
func (e *Encoder) tick() {
|
|
|
|
e.clock += e.frameInterval
|
2018-08-18 07:06:14 +03:00
|
|
|
}
|
|
|
|
|
|
|
|
// pts retuns the current presentation timestamp.
|
2018-08-19 14:09:57 +03:00
|
|
|
func (e *Encoder) pts() uint64 {
|
|
|
|
return uint64((e.clock + e.ptsOffset).Seconds() * pcrFreq)
|
2018-08-18 04:57:36 +03:00
|
|
|
}
|
|
|
|
|
2018-08-18 07:06:14 +03:00
|
|
|
// pcr returns the current program clock reference.
|
2018-08-19 14:09:57 +03:00
|
|
|
func (e *Encoder) pcr() uint64 {
|
|
|
|
return uint64(e.clock.Seconds() * pcrFreq)
|
2018-08-18 04:57:36 +03:00
|
|
|
}
|
|
|
|
|
|
|
|
// ccFor returns the next continuity counter for pid.
|
2018-08-19 14:09:57 +03:00
|
|
|
func (e *Encoder) ccFor(pid int) byte {
|
|
|
|
cc := e.continuity[pid]
|
2019-01-12 10:04:43 +03:00
|
|
|
const continuityCounterMask = 0xf
|
|
|
|
e.continuity[pid] = (cc + 1) & continuityCounterMask
|
2018-08-18 04:57:36 +03:00
|
|
|
return cc
|
|
|
|
}
|