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Autres articles (74)
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Ajouter notes et légendes aux images
7 février 2011, parPour pouvoir ajouter notes et légendes aux images, la première étape est d’installer le plugin "Légendes".
Une fois le plugin activé, vous pouvez le configurer dans l’espace de configuration afin de modifier les droits de création / modification et de suppression des notes. Par défaut seuls les administrateurs du site peuvent ajouter des notes aux images.
Modification lors de l’ajout d’un média
Lors de l’ajout d’un média de type "image" un nouveau bouton apparait au dessus de la prévisualisation (...) -
HTML5 audio and video support
13 avril 2011, parMediaSPIP uses HTML5 video and audio tags to play multimedia files, taking advantage of the latest W3C innovations supported by modern browsers.
The MediaSPIP player used has been created specifically for MediaSPIP and can be easily adapted to fit in with a specific theme.
For older browsers the Flowplayer flash fallback is used.
MediaSPIP allows for media playback on major mobile platforms with the above (...) -
De l’upload à la vidéo finale [version standalone]
31 janvier 2010, parLe chemin d’un document audio ou vidéo dans SPIPMotion est divisé en trois étapes distinctes.
Upload et récupération d’informations de la vidéo source
Dans un premier temps, il est nécessaire de créer un article SPIP et de lui joindre le document vidéo "source".
Au moment où ce document est joint à l’article, deux actions supplémentaires au comportement normal sont exécutées : La récupération des informations techniques des flux audio et video du fichier ; La génération d’une vignette : extraction d’une (...)
Sur d’autres sites (7582)
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script doesnt recognize bars / lenght right for cutting audio , ffmpeg terminal
14 avril 2024, par totzillarbeatsThis Terminal script doesnt recognize bars / lenght right for cutting audio , maybe somebody knows whats wrong with the calculation :)


Would be happy about any help the cutting already works !


#!/bin/bash

# Function to extract BPM from filename

get_bpm() {
 local filename="$1"
 local bpm=$(echo "$filename" | grep -oE '[0-9]{1,3}' | head -n1)
 echo "$bpm"
}

# Function to cut audio based on BPM
cut_audio() {
 local input_file="$1"
 local bpm="$2"
 local output_file="${input_file%.*}_cut.${input_file##*.}" # Appends "_cut" to original filename

 # Define the number of beats per bar (assuming 4 beats per bar)
 beats_per_bar=4

 # Calculate the duration of each bar in seconds
 bar_duration=$((60 * beats_per_bar / bpm))

 # Define start and end times for each bar range
 start_times=(0 21 33 45 57 69 81 93 105 117 129 141)
 end_times=(20 29 41 53 65 77 89 101 113 125 137 149)

 # Iterate through each bar range
 for ((i = 0; i < ${#start_times[@]}; i++)); do
 start_time=${start_times[$i]}
 end_time=${end_times[$i]}
 echo "Cutting audio file $input_file at $bpm BPM for bar $((i + 1)) ($start_time-$end_time) for $bar_duration seconds..."

 # Cut audio for current bar range using ffmpeg
 ffmpeg -i "$input_file" -ss "$start_time" -to "$end_time" -c copy "$output_file"_"$((i + 1)).${input_file##*.}" -y
 done

 # Check if the output files are empty and delete them if so
 for output_file in "${output_file}"_*; do
 if [ ! -s "$output_file" ]; then
 echo "Output file $output_file is empty. Deleting..."
 rm "$output_file"
 fi
 done

 echo "Audio cut and saved as $output_file"
}


# Main script
if [ "$#" -eq 0 ]; then
 echo "Usage: $0 [audio_file1] [audio_file2] ..."
 exit 1
fi

for file in "$@"; do
 bpm=$(get_bpm "$file")
 if [ -z "$bpm" ]; then
 echo "Error: No BPM found in filename $file"
 else
 cut_audio "$file" "$bpm"
 fi
done



Maybe its only the math calc in the beginning but idk :)


If you need more details just lmk


-
Script doesnt recognize bars / length right for cutting audio , ffmpeg terminal
14 avril 2024, par totzillarbeatsThis terminal script doesn't recognize bars / length right for cutting audio, maybe somebody knows what's wrong with the calculation ...


Would be happy about any help the cutting already works !


#!/bin/bash

# Function to extract BPM from filename

get_bpm() {
 local filename="$1"
 local bpm=$(echo "$filename" | grep -oE '[0-9]{1,3}' | head -n1)
 echo "$bpm"
}

# Function to cut audio based on BPM
cut_audio() {
 local input_file="$1"
 local bpm="$2"
 local output_file="${input_file%.*}_cut.${input_file##*.}" # Appends "_cut" to original filename

 # Define the number of beats per bar (assuming 4 beats per bar)
 beats_per_bar=4

 # Calculate the duration of each bar in seconds
 bar_duration=$((60 * beats_per_bar / bpm))

 # Define start and end times for each bar range
 start_times=(0 21 33 45 57 69 81 93 105 117 129 141)
 end_times=(20 29 41 53 65 77 89 101 113 125 137 149)

 # Iterate through each bar range
 for ((i = 0; i < ${#start_times[@]}; i++)); do
 start_time=${start_times[$i]}
 end_time=${end_times[$i]}
 echo "Cutting audio file $input_file at $bpm BPM for bar $((i + 1)) ($start_time-$end_time) for $bar_duration seconds..."

 # Cut audio for current bar range using ffmpeg
 ffmpeg -i "$input_file" -ss "$start_time" -to "$end_time" -c copy "$output_file"_"$((i + 1)).${input_file##*.}" -y
 done

 # Check if the output files are empty and delete them if so
 for output_file in "${output_file}"_*; do
 if [ ! -s "$output_file" ]; then
 echo "Output file $output_file is empty. Deleting..."
 rm "$output_file"
 fi
 done

 echo "Audio cut and saved as $output_file"
}


# Main script
if [ "$#" -eq 0 ]; then
 echo "Usage: $0 [audio_file1] [audio_file2] ..."
 exit 1
fi

for file in "$@"; do
 bpm=$(get_bpm "$file")
 if [ -z "$bpm" ]; then
 echo "Error: No BPM found in filename $file"
 else
 cut_audio "$file" "$bpm"
 fi
done



Maybe its only the math calc in the beginning but idk :)


If you need more details just lmk


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aarch64 : cabac_encode_{decision,bypass,terminal}_asm
19 novembre 2014, par Janne Grunauaarch64 : cabac_encode_decision,bypass,terminal_asm
benchmarks on a Nexus 9 (nvidia denver) :
101.3 cycles in x264_cabac_encode_decision_c, 67105369 runs, 3495 skips
97.3 cycles in x264_cabac_encode_decision_asm, 67105493 runs, 3371 skips
132.8 cycles in x264_cabac_encode_terminal_c, 1046950 runs, 1626 skips
116.1 cycles in x264_cabac_encode_terminal_asm, 1048424 runs, 152 skips
92.4 cycles in x264_cabac_encode_bypass_c, 16776192 runs, 1024 skips
89.6 cycles in x264_cabac_encode_bypass_asm, 16776453 runs, 763 skipsCycle counts are not as stable as one would like. The dynamic code
optimisation seems to produce different results for small chnages in a
binary. Repeated runs with the same binary produce stable results
though (ignoring the first run).