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Commit b2f7ef91 authored by MJB's avatar MJB
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adding ffmpeg scripts

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#!/bin/bash
apt-get update
apt-get -y install zip python
wget http://zebulon.bok.net/Bento4/binaries/Bento4-SDK-1-5-1-621.x86_64-unknown-linux.zip
unzip Bento4-SDK-1-5-1-621.x86_64-unknown-linux.zip
sudo add-apt-repository ppa:jonathonf/ffmpeg-3
sudo apt-get update && sudo apt install ffmpeg libav-tools x264 x265
ffmpeg -version
# Telegraf configuration
# Telegraf is entirely plugin driven. All metrics are gathered from the
# declared inputs, and sent to the declared outputs.
# Plugins must be declared in here to be active.
# To deactivate a plugin, comment out the name and any variables.
# Use 'telegraf -config telegraf.conf -test' to see what metrics a config
# file would generate.
# Global tags can be specified here in key="value" format.
[global_tags]
# location of the data centre
location="{{LOCATION}}"
# media service template id
sfc="{{SFC_ID}}"
# media service instance
sfc_i="{{SFC_ID_INSTANCE}}"
# service function type
sf="{{SF_ID}}"
# service function instance id
sf_i="{{SF_ID_INSTANCE}}"
# ipendpoint id aka surrogate instance
ipendpoint="{{IP_ENDPOINT_ID}}"
# Configuration for telegraf agent
[agent]
## Default data collection interval for all inputs
interval = "10s"
## Rounds collection interval to 'interval'
## ie, if interval="10s" then always collect on :00, :10, :20, etc.
round_interval = true
## Telegraf will cache metric_buffer_limit metrics for each output, and will
## flush this buffer on a successful write.
metric_buffer_limit = 1000
## Flush the buffer whenever full, regardless of flush_interval.
flush_buffer_when_full = true
## Collection jitter is used to jitter the collection by a random amount.
## Each plugin will sleep for a random time within jitter before collecting.
## This can be used to avoid many plugins querying things like sysfs at the
## same time, which can have a measurable effect on the system.
collection_jitter = "0s"
## Default flushing interval for all outputs. You shouldn't set this below
## interval. Maximum flush_interval will be flush_interval + flush_jitter
flush_interval = "10s"
## Jitter the flush interval by a random amount. This is primarily to avoid
## large write spikes for users running a large number of telegraf instances.
## ie, a jitter of 5s and interval 10s means flushes will happen every 10-15s
flush_jitter = "0s"
## Logging configuration:
## Run telegraf in debug mode
debug = false
## Run telegraf in quiet mode
quiet = false
## Specify the log file name. The empty string means to log to stdout.
logfile = "G:/Telegraf/telegraf.log"
## Override default hostname, if empty use os.Hostname()
hostname = ""
###############################################################################
# OUTPUTS #
###############################################################################
# Configuration for influxdb server to send metrics to
[[outputs.influxdb]]
# The full HTTP or UDP endpoint URL for your InfluxDB instance.
# Multiple urls can be specified but it is assumed that they are part of the same
# cluster, this means that only ONE of the urls will be written to each interval.
# urls = ["udp://127.0.0.1:8089"] # UDP endpoint example
urls = ["{{INFLUXDB_URL}}"] # required
# The target database for metrics (telegraf will create it if not exists)
database = "{{DATABASE_NAME}}" # required
# Precision of writes, valid values are "ns", "us" (or "µs"), "ms", "s", "m", "h".
# note: using second precision greatly helps InfluxDB compression
precision = "s"
## Write timeout (for the InfluxDB client), formatted as a string.
## If not provided, will default to 5s. 0s means no timeout (not recommended).
timeout = "5s"
# username = "telegraf"
# password = "metricsmetricsmetricsmetrics"
# Set the user agent for HTTP POSTs (can be useful for log differentiation)
# user_agent = "telegraf"
# Set UDP payload size, defaults to InfluxDB UDP Client default (512 bytes)
# udp_payload = 512
###############################################################################
# INPUTS #
###############################################################################
# # Influx HTTP write listener
[[inputs.http_listener]]
## Address and port to host HTTP listener on
service_address = ":8186"
## timeouts
read_timeout = "10s"
write_timeout = "10s"
## HTTPS
#tls_cert= "/etc/telegraf/cert.pem"
#tls_key = "/etc/telegraf/key.pem"
## MTLS
#tls_allowed_cacerts = ["/etc/telegraf/clientca.pem"]
\ No newline at end of file
#!/bin/bash
#
# Bento4 must be manually obtained from https://www.bento4.com/downloads/ ffmpeg can be installed as follows
# (Debian - http://www.deb-multimedia.org/) ~$
# sudo echo deb http://www.deb-multimedia.org jessie main non-free >> /etc/apt/sources.list
# ~$ sudo apt update ~$ sudo apt install deb-multimedia-keyring ~$ sudo apt update && sudo apt-get dist-upgrade
#
# First encode the video to 24fps!!! and MP4 (h.264)
#
# Video MP4 file
INPUT=$1
OUTPUT_iFRAMES="$1-iFrames.mp4"
OUTPUT_FRAGMENTED="$OUTPUT_iFRAMES-Fragmented.mp4"
rm -rf output
# Insert Correct number of I frames
#ffmpeg -y -i $INPUT -profile:v baseline -level 3.0 -c:a libfdk_aac -ac 2 -ab 128k -c:v libx264 -x264opts 'keyint=24:min-keyint=24:no-scenecut' -b:v 400k -maxrate 400k -bufsize 1000k -vf "scale=-1:360" $OUTPUT_iFRAMES
ffmpeg -y -i $INPUT -profile:v baseline -level 3.0 -c:a aac -ac 2 -ab 128k -c:v libx264 -x264opts 'keyint=24:min-keyint=24:no-scenecut' -b:v 400k -maxrate 400k -bufsize 1000k -vf "scale=-1:360" -strict experimental $OUTPUT_iFRAMES
# fragment MP4
/home/ubuntu/Bento4-SDK-1-5-1-621.x86_64-unknown-linux/bin/mp4fragment --timescale 1000 $OUTPUT_iFRAMES $OUTPUT_FRAGMENTED
# Option 1 with Bento4
/home/ubuntu/Bento4-SDK-1-5-1-621.x86_64-unknown-linux/bin/mp4dash --mpd-name=stream.mpd --use-segment-list --use-compat-namespace $OUTPUT_FRAGMENTED
# not sure what this is for
mv output/audio/en/mp4a/* output/audio/en
rm -rf output/audio/en/mp4
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