mirror of https://bitbucket.org/ausocean/av.git
revid: reverted to fixed element size ring buffer
This commit is contained in:
parent
d577b078a5
commit
c0614c3456
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@ -84,10 +84,15 @@ const (
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defaultPSITime = 2
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defaultFileFPS = 0
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// Ring buffer defaults.
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defaultRBMaxElements = 10000
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defaultRBCapacity = 200000000 // bytes (200MB)
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defaultRBWriteTimeout = 5
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// MTS ring buffer defaults.
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defaultMTSRBSize = 100
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defaultMTSRBElementSize = 10000
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defaultMTSRBWriteTimeout = 5
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// RTMP ring buffer defaults.
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defaultRTMPRBSize = 100
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defaultRTMPRBElementSize = 10000
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defaultRTMPRBWriteTimeout = 5
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// Motion filter parameter defaults.
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defaultMinFPS = 1.0
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@ -259,10 +264,15 @@ type Config struct {
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Filters []int // Defines the methods of filtering to be used in between lexing and encoding.
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PSITime int // Sets the time between a packet being sent.
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// Ring buffer parameters.
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RBMaxElements int // The maximum possible number of elements in ring buffer.
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RBCapacity int // The total number of bytes available for the ring buffer.
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RBWriteTimeout int // The ringbuffer write timeout in seconds.
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// RTMP ring buffer parameters.
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RTMPRBSize int // The number of elements in the RTMP sender ringbuffer.
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RTMPRBElementSize int // The element size in bytes of the RTMP sender RingBuffer.
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RTMPRBWriteTimeout int // The ringbuffer write timeout in seconds.
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// MTS ring buffer parameters.
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MTSRBSize int // The number of elements in the MTS sender ringbuffer.
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MTSRBElementSize int // The element size in bytes of the MTS sender RingBuffer.
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MTSRBWriteTimeout int // The ringbuffer write timeout in seconds.
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// Motion filter parameters.
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// Some parameters can be used with any filter, while others can only be used by a few.
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@ -434,19 +444,34 @@ func (c *Config) Validate() error {
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c.RTPAddress = defaultRtpAddr
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}
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if c.RBMaxElements <= 0 {
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c.LogInvalidField("RBMaxElements", defaultRBMaxElements)
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c.RBMaxElements = defaultRBMaxElements
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if c.RTMPRBSize <= 0 {
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c.Logger.Log(logger.Info, "RTMPRBSize bad or unset, defaulting", "RTMPRBSize", defaultRTMPRBSize)
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c.RTMPRBSize = defaultRTMPRBSize
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}
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if c.RBCapacity <= 0 {
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c.LogInvalidField("RBCapacity", defaultRBCapacity)
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c.RBCapacity = defaultRBCapacity
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if c.RTMPRBElementSize <= 0 {
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c.Logger.Log(logger.Info, "RTMPRBElementSize bad or unset, defaulting", "RTMPRBElementSize", defaultRTMPRBElementSize)
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c.RTMPRBElementSize = defaultRTMPRBElementSize
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}
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if c.RBWriteTimeout <= 0 {
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c.LogInvalidField("RBWriteTimeout", defaultRBWriteTimeout)
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c.RBWriteTimeout = defaultRBWriteTimeout
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if c.RTMPRBWriteTimeout <= 0 {
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c.Logger.Log(logger.Info, "RTMPRBWriteTimeout bad or unset, defaulting", "RTMPRBWriteTimeout", defaultRTMPRBWriteTimeout)
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c.RTMPRBWriteTimeout = defaultRTMPRBWriteTimeout
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}
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if c.MTSRBSize <= 0 {
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c.Logger.Log(logger.Info, "MTSRBSize bad or unset, defaulting", "MTSRBSize", defaultMTSRBSize)
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c.MTSRBSize = defaultMTSRBSize
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}
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if c.MTSRBElementSize <= 0 {
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c.Logger.Log(logger.Info, "MTSRBElementSize bad or unset, defaulting", "MTSRBElementSize", defaultMTSRBElementSize)
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c.MTSRBElementSize = defaultMTSRBElementSize
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}
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if c.MTSRBWriteTimeout <= 0 {
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c.Logger.Log(logger.Info, "MTSRBWriteTimeout bad or unset, defaulting", "MTSRBWriteTimeout", defaultMTSRBWriteTimeout)
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c.MTSRBWriteTimeout = defaultMTSRBWriteTimeout
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}
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if c.PSITime <= 0 {
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@ -55,7 +55,20 @@ import (
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"bitbucket.org/ausocean/utils/bitrate"
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"bitbucket.org/ausocean/utils/ioext"
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"bitbucket.org/ausocean/utils/logger"
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"bitbucket.org/ausocean/utils/vring"
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"bitbucket.org/ausocean/utils/ring"
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)
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// Ring buffer defaults.
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const (
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// MTS ring buffer defaults.
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defaultMTSRBSize = 1000
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defaultMTSRBElementSize = 100000
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defaultMTSRBWriteTimeout = 5
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// RTMP ring buffer defaults.
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defaultRTMPRBSize = 1000
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defaultRTMPRBElementSize = 300000
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defaultRTMPRBWriteTimeout = 5
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)
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// RTMP connection properties.
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@ -260,14 +273,10 @@ func (r *Revid) setupPipeline(mtsEnc func(dst io.WriteCloser, rate float64) (io.
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switch out {
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case config.OutputHTTP:
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r.cfg.Logger.Log(logger.Debug, "using HTTP output")
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rb, err := vring.NewBuffer(r.cfg.RBMaxElements, r.cfg.RBCapacity, time.Duration(r.cfg.RBWriteTimeout)*time.Second)
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if err != nil {
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return fmt.Errorf("could not initialise MTS ring buffer: %w", err)
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}
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w = newMtsSender(
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newHttpSender(r.ns, r.cfg.Logger.Log, r.bitrate.Report),
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r.cfg.Logger.Log,
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rb,
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ring.NewBuffer(r.cfg.MTSRBSize, r.cfg.MTSRBElementSize, time.Duration(r.cfg.MTSRBWriteTimeout)*time.Second),
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r.cfg.ClipDuration,
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)
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mtsSenders = append(mtsSenders, w)
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@ -287,15 +296,11 @@ func (r *Revid) setupPipeline(mtsEnc func(dst io.WriteCloser, rate float64) (io.
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mtsSenders = append(mtsSenders, w)
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case config.OutputRTMP:
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r.cfg.Logger.Log(logger.Debug, "using RTMP output")
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rb, err := vring.NewBuffer(r.cfg.RBMaxElements, r.cfg.RBCapacity, time.Duration(r.cfg.RBWriteTimeout)*time.Second)
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if err != nil {
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return fmt.Errorf("could not initialise RTMP ring buffer: %w", err)
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}
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w, err := newRtmpSender(
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r.cfg.RTMPURL,
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rtmpConnectionTimeout,
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rtmpConnectionMaxTries,
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rb,
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ring.NewBuffer(r.cfg.RTMPRBSize, r.cfg.RTMPRBElementSize, time.Duration(r.cfg.RTMPRBWriteTimeout)*time.Second),
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r.cfg.Logger.Log,
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r.bitrate.Report,
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)
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@ -749,48 +754,48 @@ func (r *Revid) Update(vars map[string]string) error {
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default:
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r.cfg.Logger.Log(logger.Warning, "invalid Logging param", "value", value)
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}
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case "RTMPRBMaxElements":
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case "RTMPRBSize":
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v, err := strconv.Atoi(value)
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if err != nil || v < 0 {
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r.cfg.Logger.Log(logger.Warning, "invalid RTMPRBMaxElements var", "value", value)
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r.cfg.Logger.Log(logger.Warning, "invalid RTMPRBSize var", "value", value)
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break
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}
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r.cfg.RBMaxElements = v
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case "RTMPRBCapacity":
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r.cfg.RTMPRBSize = v
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case "RTMPRBElementSize":
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v, err := strconv.Atoi(value)
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if err != nil || v < 0 {
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r.cfg.Logger.Log(logger.Warning, "invalid RTMPRBCapacity var", "value", value)
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r.cfg.Logger.Log(logger.Warning, "invalid RTMPRBElementSize var", "value", value)
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break
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}
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r.cfg.RBCapacity = v
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r.cfg.RTMPRBElementSize = v
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case "RTMPRBWriteTimeout":
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v, err := strconv.Atoi(value)
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if err != nil || v <= 0 {
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r.cfg.Logger.Log(logger.Warning, "invalid RTMPRBWriteTimeout var", "value", value)
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break
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}
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r.cfg.RBWriteTimeout = v
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case "MTSRBMaxElements":
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r.cfg.RTMPRBWriteTimeout = v
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case "MTSRBSize":
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v, err := strconv.Atoi(value)
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if err != nil || v < 0 {
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r.cfg.Logger.Log(logger.Warning, "invalid MTSRBMaxElements var", "value", value)
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r.cfg.Logger.Log(logger.Warning, "invalid MTSRBSize var", "value", value)
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break
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}
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r.cfg.RBMaxElements = v
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case "MTSRBCapacity":
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r.cfg.MTSRBSize = v
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case "MTSRBElementSize":
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v, err := strconv.Atoi(value)
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if err != nil || v < 0 {
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r.cfg.Logger.Log(logger.Warning, "invalid MTSRBCapacity var", "value", value)
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r.cfg.Logger.Log(logger.Warning, "invalid MTSRBElementSize var", "value", value)
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break
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}
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r.cfg.RBCapacity = v
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r.cfg.MTSRBElementSize = v
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case "MTSRBWriteTimeout":
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v, err := strconv.Atoi(value)
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if err != nil || v <= 0 {
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r.cfg.Logger.Log(logger.Warning, "invalid MTSRBWriteTimeout var", "value", value)
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break
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}
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r.cfg.RBWriteTimeout = v
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r.cfg.MTSRBWriteTimeout = v
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case "CBR":
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v, ok := map[string]bool{"true": true, "false": false}[strings.ToLower(value)]
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if !ok {
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@ -44,7 +44,7 @@ import (
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"bitbucket.org/ausocean/av/protocol/rtp"
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"bitbucket.org/ausocean/iot/pi/netsender"
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"bitbucket.org/ausocean/utils/logger"
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"bitbucket.org/ausocean/utils/vring"
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"bitbucket.org/ausocean/utils/ring"
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)
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// Log is used by the multiSender.
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@ -54,6 +54,7 @@ type Log func(level int8, message string, params ...interface{})
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const (
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rtmpRBReadTimeout = 1 * time.Second
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mtsRBReadTimeout = 1 * time.Second
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maxBuffLen = 100000000
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)
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// httpSender provides an implemntation of io.Writer to perform sends to a http
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@ -173,7 +174,7 @@ func (s *fileSender) Close() error { return s.file.Close() }
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type mtsSender struct {
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dst io.WriteCloser
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buf []byte
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ring *vring.Buffer
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ring *ring.Buffer
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next []byte
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pkt packet.Packet
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repairer *mts.DiscontinuityRepairer
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@ -186,7 +187,7 @@ type mtsSender struct {
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}
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// newMtsSender returns a new mtsSender.
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func newMtsSender(dst io.WriteCloser, log func(lvl int8, msg string, args ...interface{}), rb *vring.Buffer, clipDur time.Duration) *mtsSender {
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func newMtsSender(dst io.WriteCloser, log func(lvl int8, msg string, args ...interface{}), rb *ring.Buffer, clipDur time.Duration) *mtsSender {
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s := &mtsSender{
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dst: dst,
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repairer: mts.NewDiscontinuityRepairer(),
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@ -202,7 +203,7 @@ func newMtsSender(dst io.WriteCloser, log func(lvl int8, msg string, args ...int
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// output starts an mtsSender's data handling routine.
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func (s *mtsSender) output() {
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var elem *vring.Element
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var chunk *ring.Chunk
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for {
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select {
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case <-s.done:
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@ -210,29 +211,29 @@ func (s *mtsSender) output() {
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defer s.wg.Done()
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return
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default:
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// If elem is nil then we're ready to get another from the ringBuffer.
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if elem == nil {
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// If chunk is nil then we're ready to get another from the ringBuffer.
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if chunk == nil {
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var err error
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elem, err = s.ring.Next(mtsRBReadTimeout)
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chunk, err = s.ring.Next(mtsRBReadTimeout)
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switch err {
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case nil, io.EOF:
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continue
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case vring.ErrNextTimeout:
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s.log(logger.Debug, "ring buffer read timeout")
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case ring.ErrTimeout:
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s.log(logger.Debug, "mtsSender: ring buffer read timeout")
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continue
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default:
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s.log(logger.Error, "unexpected error", "error", err.Error())
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continue
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}
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}
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err := s.repairer.Repair(elem.Bytes())
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err := s.repairer.Repair(chunk.Bytes())
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if err != nil {
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elem.Close()
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elem = nil
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chunk.Close()
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chunk = nil
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continue
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}
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s.log(logger.Debug, "writing")
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_, err = s.dst.Write(elem.Bytes())
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s.log(logger.Debug, "mtsSender: writing")
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_, err = s.dst.Write(chunk.Bytes())
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if err != nil {
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s.log(logger.Debug, "failed write, repairing MTS", "error", err)
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s.repairer.Failed()
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@ -240,8 +241,8 @@ func (s *mtsSender) output() {
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} else {
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s.log(logger.Debug, "good write")
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}
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elem.Close()
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elem = nil
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chunk.Close()
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chunk = nil
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}
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}
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}
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@ -268,6 +269,9 @@ func (s *mtsSender) Write(d []byte) (int, error) {
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}
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if err != nil {
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s.log(logger.Warning, "ringBuffer write error", "error", err.Error(), "n", n, "size", len(s.buf))
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if err == ring.ErrTooLong {
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s.ring = ring.NewBuffer(maxBuffLen/len(d), len(d), 5*time.Second)
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}
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}
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s.buf = s.buf[:0]
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}
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@ -290,13 +294,13 @@ type rtmpSender struct {
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timeout uint
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retries int
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log func(lvl int8, msg string, args ...interface{})
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ring *vring.Buffer
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ring *ring.Buffer
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done chan struct{}
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wg sync.WaitGroup
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report func(sent int)
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}
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func newRtmpSender(url string, timeout uint, retries int, rb *vring.Buffer, log func(lvl int8, msg string, args ...interface{}), report func(sent int)) (*rtmpSender, error) {
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func newRtmpSender(url string, timeout uint, retries int, rb *ring.Buffer, log func(lvl int8, msg string, args ...interface{}), report func(sent int)) (*rtmpSender, error) {
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var conn *rtmp.Conn
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var err error
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for n := 0; n < retries; n++ {
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@ -326,7 +330,7 @@ func newRtmpSender(url string, timeout uint, retries int, rb *vring.Buffer, log
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// output starts an mtsSender's data handling routine.
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func (s *rtmpSender) output() {
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var elem *vring.Element
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var chunk *ring.Chunk
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for {
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select {
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case <-s.done:
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@ -334,15 +338,15 @@ func (s *rtmpSender) output() {
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defer s.wg.Done()
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return
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default:
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// If elem is nil then we're ready to get another from the ring buffer.
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if elem == nil {
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// If chunk is nil then we're ready to get another from the ring buffer.
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if chunk == nil {
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var err error
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elem, err = s.ring.Next(rtmpRBReadTimeout)
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chunk, err = s.ring.Next(rtmpRBReadTimeout)
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switch err {
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case nil, io.EOF:
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continue
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case vring.ErrNextTimeout:
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s.log(logger.Debug, "ring buffer read timeout")
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case ring.ErrTimeout:
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s.log(logger.Debug, "rtmpSender: ring buffer read timeout")
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continue
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default:
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s.log(logger.Error, "unexpected error", "error", err.Error())
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@ -357,9 +361,7 @@ func (s *rtmpSender) output() {
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continue
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}
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}
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b := elem.Bytes()
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s.log(logger.Debug, "writing to conn", "len", len(b))
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_, err := s.conn.Write(b)
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_, err := s.conn.Write(chunk.Bytes())
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switch err {
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case nil, rtmp.ErrInvalidFlvTag:
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s.log(logger.Debug, "good write to conn")
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@ -371,8 +373,8 @@ func (s *rtmpSender) output() {
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}
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continue
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}
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elem.Close()
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elem = nil
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chunk.Close()
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chunk = nil
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}
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}
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}
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@ -386,6 +388,9 @@ func (s *rtmpSender) Write(d []byte) (int, error) {
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s.log(logger.Debug, "good ring buffer write", "len", len(d))
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} else {
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s.log(logger.Warning, "ring buffer write error", "error", err.Error())
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if err == ring.ErrTooLong {
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s.ring = ring.NewBuffer(maxBuffLen/len(d), len(d), 5*time.Second)
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}
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}
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s.report(len(d))
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return len(d), nil
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|
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@ -39,20 +39,13 @@ import (
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"bitbucket.org/ausocean/av/container/mts"
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"bitbucket.org/ausocean/av/container/mts/meta"
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"bitbucket.org/ausocean/utils/logger"
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"bitbucket.org/ausocean/utils/vring"
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"bitbucket.org/ausocean/utils/ring"
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)
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var (
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errSendFailed = errors.New("send failed")
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)
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// Ring buffer parameters.
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const (
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rbMaxElements = 10000
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rbCapacity = 200000000 // bytes
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rbWriteTimeout = 5
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)
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// destination simulates a destination for the mtsSender. It allows for the
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// emulation of failed and delayed sends.
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type destination struct {
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@ -141,11 +134,7 @@ func TestMtsSenderSegment(t *testing.T) {
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// Create ringBuffer, sender, sender and the MPEGTS encoder.
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const numberOfClips = 11
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dst := &destination{t: t, done: make(chan struct{}), doneAt: numberOfClips}
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rb, err := vring.NewBuffer(rbMaxElements, rbCapacity, 0)
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if err != nil {
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t.Fatalf("could not initialise ring buffer: %v", err)
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}
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sender := newMtsSender(dst, (*dummyLogger)(t).log, rb, 0)
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sender := newMtsSender(dst, (*dummyLogger)(t).log, ring.NewBuffer(defaultMTSRBSize, defaultMTSRBElementSize, 0), 0)
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const psiSendCount = 10
|
||||
encoder, err := mts.NewEncoder(sender, 25, mts.EncodeH264, mts.PacketBasedPSI(psiSendCount))
|
||||
|
@ -224,11 +213,7 @@ func TestMtsSenderFailedSend(t *testing.T) {
|
|||
// Create destination, the mtsSender and the mtsEncoder
|
||||
const clipToFailAt = 3
|
||||
dst := &destination{t: t, testFails: true, failAt: clipToFailAt, done: make(chan struct{})}
|
||||
rb, err := vring.NewBuffer(rbMaxElements, rbCapacity, 10*time.Millisecond)
|
||||
if err != nil {
|
||||
t.Fatalf("could not initialise ring buffer: %v", err)
|
||||
}
|
||||
sender := newMtsSender(dst, (*dummyLogger)(t).log, rb, 0)
|
||||
sender := newMtsSender(dst, (*dummyLogger)(t).log, ring.NewBuffer(defaultMTSRBSize, defaultMTSRBElementSize, 0), 0)
|
||||
|
||||
const psiSendCount = 10
|
||||
encoder, err := mts.NewEncoder(sender, 25, mts.EncodeH264, mts.PacketBasedPSI(psiSendCount))
|
||||
|
@ -309,11 +294,7 @@ func TestMtsSenderDiscontinuity(t *testing.T) {
|
|||
// Create destination, the mtsSender and the mtsEncoder.
|
||||
const clipToDelay = 3
|
||||
dst := &destination{t: t, sendDelay: 10 * time.Millisecond, delayAt: clipToDelay, done: make(chan struct{})}
|
||||
rb, err := vring.NewBuffer(1, rbCapacity, 10*time.Millisecond)
|
||||
if err != nil {
|
||||
t.Fatalf("could not initialise ring buffer: %v", err)
|
||||
}
|
||||
sender := newMtsSender(dst, (*dummyLogger)(t).log, rb, 0)
|
||||
sender := newMtsSender(dst, (*dummyLogger)(t).log, ring.NewBuffer(1, defaultMTSRBElementSize, 0), 0)
|
||||
|
||||
const psiSendCount = 10
|
||||
encoder, err := mts.NewEncoder(sender, 25, mts.EncodeH264, mts.PacketBasedPSI(psiSendCount))
|
||||
|
|
Loading…
Reference in New Issue