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  • MediaSPIP version 0.1 Beta

    16 April 2011, by

    MediaSPIP 0.1 beta est la première version de MediaSPIP décrétée comme "utilisable".
    Le fichier zip ici présent contient uniquement les sources de MediaSPIP en version standalone.
    Pour avoir une installation fonctionnelle, il est nécessaire d’installer manuellement l’ensemble des dépendances logicielles sur le serveur.
    Si vous souhaitez utiliser cette archive pour une installation en mode ferme, il vous faudra également procéder à d’autres modifications (...)

  • Amélioration de la version de base

    13 September 2013

    Jolie sélection multiple
    Le plugin Chosen permet d’améliorer l’ergonomie des champs de sélection multiple. Voir les deux images suivantes pour comparer.
    Il suffit pour cela d’activer le plugin Chosen (Configuration générale du site > Gestion des plugins), puis de configurer le plugin (Les squelettes > Chosen) en activant l’utilisation de Chosen dans le site public et en spécifiant les éléments de formulaires à améliorer, par exemple select[multiple] pour les listes à sélection multiple (...)

  • Mise à jour de la version 0.1 vers 0.2

    24 June 2013, by

    Explications des différents changements notables lors du passage de la version 0.1 de MediaSPIP à la version 0.3. Quelles sont les nouveautés
    Au niveau des dépendances logicielles Utilisation des dernières versions de FFMpeg (>= v1.2.1); Installation des dépendances pour Smush; Installation de MediaInfo et FFprobe pour la récupération des métadonnées; On n’utilise plus ffmpeg2theora; On n’installe plus flvtool2 au profit de flvtool++; On n’installe plus ffmpeg-php qui n’est plus maintenu au profit de (...)

On other websites (9702)

  • how to make rtmp streaming player on windows phone 8

    9 April 2014, by user3334845

    i am making basic online live tv program on wp8.I'am use to Microsoft.Web.Media.SmoothStreaming framework and Microsoft Player Framework (Microsoft.PlayerFramework.WP8.Core, Version=1.8.2.2). My app is play http mms and rtsp with this framework. But not play rtmp live streams :S. I'm stucked. I'm search about how play rtmp on wp8. And i am found two thinks:
    1-) ffmpeg core (librtmp) (https://code.google.com/p/rtmp-mediaplayer/)
    2-)FluorineFx (http://www.fluorinefx.com/download.html)

    i am trying first librtmp but this code is so complex for me:S
    and i am trying B plan FluorineFx, install it and trying add dll wp8 reference but program get error "this dll is making for visual studio 2008", and trying FluorineFx samples in programfiles directory, but same error vs2008 works not current:S.

    I'm stuck here please help me.

  • Android NDK. How to play video.

    4 February 2014, by bukka.wh

    I need to play video on Android device (different formats). As I have understand, the best way is to use Android NDK with specific libraries that can play video. I have done some basic examples to understand NDK usage, but I don't know what to do next. As I have understood, I must install ffmpeg first of all.
    So I have the following questions given below:

    1. I need to have ffmpeg (the best way is to use Linux, not Windows,
      because in Windows there are some troubles with its installation).
    2. How to play sound of video?
    3. I have read that some open-source libraries can play video without any efforts. My job is to give them byte-array or path to video on SD. Is this right?

    So, can anyone help me and explain basic ways how to play video with ndk, may be some basic plan or links?
    Thank you very much for interest to my question!

  • Translating Return To Ringworld

    17 August 2016, by Multimedia Mike — Game Hacking

    As indicated in my previous post, the Translator has expressed interest in applying his hobby towards another DOS adventure game from the mid 1990s: Return to Ringworld (henceforth R2RW) by Tsunami Media. This represents significantly more work than the previous outing, Phantasmagoria.


    Return to Ringworld Title Screen
    Return to Ringworld Title Screen

    I have been largely successful thus far in crafting translation tools. I have pushed the fruits of these labors to a Github repository named improved-spoon (named using Github’s random name generator because I wanted something more interesting than ‘game-hacking-tools’).

    Further, I have recorded everything I have learned about the game’s resource format (named RLB) at the XentaxWiki.

    New Challenges
    The previous project mostly involved scribbling subtitle text on an endless series of video files by leveraging a separate software library which took care of rendering fonts. In contrast, R2RW has at least 30k words of English text contained in various blocks which require translation. Further, the game encodes its own fonts (9 of them) which stubbornly refuse to be useful for rendering text in nearly any other language.

    Thus, the immediate 2 challenges are:

    1. Translating volumes of text to Spanish
    2. Expanding the fonts to represent Spanish characters

    Normally, “figuring out the file format data structures involved” is on the list as well. Thankfully, understanding the formats is not a huge challenge since the folks at the ScummVM project already did all the heavy lifting of reverse engineering the file formats.

    The Pitch
    Here was the plan:

    • Create a tool that can dump out the interesting data from the game’s master resource file.
    • Create a tool that can perform the elaborate file copy described in the previous post. The new file should be bit for bit compatible with the original file.
    • Modify the rewriting tool to repack some modified strings into the new resource file.
    • Unpack the fonts and figure out a way to add new characters.
    • Repack the new fonts into the resource file.
    • Repack message strings with Spanish characters.

    Showing The Work: Modifying Strings
    First, I created the tool to unpack blocks of message string resources. I elected to dump the strings to disk as JSON data since it’s easy to write and read JSON using Python, and it’s quick to check if any mistakes have crept in.

    The next step is to find a string to focus on. So I started the game and looked for the first string I could trigger:


    Return to Ringworld: Original text

    This shows up in the JSON string dump as:

      
        "Spanish": "!0205Your quarters on the Lance of Truth are spartan, in accord with your mercenary lifestyle.",
        "English": "!0205Your quarters on the Lance of Truth are spartan, in accord with your mercenary lifestyle."
      ,
    

    As you can see, many of the strings are encoded with an ID key as part of the string which should probably be left unmodified. I changed the Spanish string:

      
        "Spanish": "!0205Hey, is this thing on?",
        "English": "!0205Your quarters on the Lance of Truth are spartan, in accord with your mercenary lifestyle."
      ,
    

    And then I wrote the repacking tool to substitute this message block for the original one. Look! The engine liked it!


    Return to Ringworld: Modified text

    Little steps, little steps.

    Showing The Work: Modifying Fonts
    The next little step is to find a place to put the new characters. First, a problem definition: The immediate goal is to translate the game into Spanish. The current fonts encoded in the game resource only support 128 characters, corresponding to 7-bit ASCII. In order to properly express Spanish, 16 new characters are required: á, é, í, ó, ú, ü, ñ (each in upper and lower case for a total of 14 characters) as well as the inverted punctuation symbols: ¿, ¡.

    Again, ScummVM already documents (via code) the font coding format. So I quickly determined that each of the 9 fonts is comprised of 128 individual bitmaps with either 1 or 2 bits per pixel. I wrote a tool to unpack each character into an individual portable grey map (PGM) image. These can be edited with graphics editors or with text editors since they are just text files.

    Where to put the 16 new Spanish characters? ASCII characters 1-31 are non-printable, so my first theory was that these characters would be empty and could be repurposed. However, after dumping and inspecting, I learned that they represent the same set of characters as seen in DOS Code Page 437. So that’s a no-go (so I assumed; I didn’t check if any existing strings leveraged those characters).

    My next plan was hope that I could extend the font beyond index 127 and use positions 128-143. This worked superbly. This is the new example string:

      
        "Spanish": "!0205¿Ves esto? ¡La puntuacion se hace girar!",
        "English": "!0205Your quarters on the Lance of Truth are spartan, in accord with your mercenary lifestyle."
      ,
    

    Fortunately, JSON understands UTF-8 and after mapping the 16 necessary characters down to the numeric range of 128-143, I repacked the new fonts and the new string:


    Return to Ringworld: Espanol
    Translation: “See this? The punctuation is rotated!”

    Another victory. Notice that there are no diacritics in this string. None are required for this translation (according to Google Translate). But adding the diacritics to the 14 characters isn’t my department. My tool does help by prepopulating [aeiounAEIOUN] into the right positions to make editing easier for the Translator. But the tool does make the effort to rotate the punctuation since that is easy to automate.

    Next Steps and Residual Weirdness
    There is another method for storing ASCII text inside the R2RW resource called strip resources. These store conversation scripts. There are plenty of fields in the data structures that I don’t fully understand. So, following the lessons I learned from my previous translation outing, I was determined to modify as little as possible. This means copying over most of the original data structures intact, but changing the field representing the relative offset that points to the corresponding string. This works well since the strings are invariably stored NULL-terminated in a concatenated manner.

    I wanted to document for the record that the format that R2RW uses has some weirdness in they way it handles residual bytes in a resource. The variant of the resource format that R2RW uses requires every block to be aligned on a 16-byte boundary. If there is space between the logical end of the resource and the start of the next resource, there are random bytes in that space. This leads me to believe that these bytes were originally recorded from stale/uninitialized memory. This frustrates me because when I write the initial file copy tool which unpacks and repacks each block, I want the new file to be identical to the original. However, these apparent nonsense bytes at the end thwart that effort.

    But leaving those bytes as 0 produces an acceptable resource file.

    Text On Static Images
    There is one last resource type we are working on translating. There are various bits of text that are rendered as images. For example, from the intro:


    Return to Ringworld: Static text

    It’s possible to locate and extract the exact image that is overlaid on this scene, though without the colors:


    Original static text

    The palettes are stored in a separate resource type. So it seems the challenge is to figure out the palette in use for these frames and render a transparent image that uses the same palette, then repack the new text-image into the new resource file.

    The post Translating Return To Ringworld first appeared on Breaking Eggs And Making Omelettes.