Hi list,
just a quick update with more info and screenshots:
http://cb.nowan.net/blog/2015/09/28/vr-go/
Thanks again for your help!
cb

Le 09/09/15 18:06, Sébastien 'Cb' Kuntz a écrit :
> Hi list,
> thank you for your answers! I tried answering with a picture but it got 
> blocked,
> so if you're interested here it is:
>
> https://dl.dropboxusercontent.com/u/3126408/IMG_9456.jpg
>
> Gonçalo> I am using GnuGo to manage the board structure and legality of moves.
> But I note that displaying the kos is not on my list 
> The IGS connection is also working basically so I'm not sure what adding GTP 
> would add ?
> I guess connection to any other client that supports GTP ?
>
> Oliver> komi, handicap and time is a good idea. Since I have implemented
> IGS which supports chat I could display that.
>
> I'll try to play with some local players and see what's missing from here.
> Have a great day!
> Sébastien
>
> Le 08/09/15 00:43, Gonçalo Mendes Ferreira a écrit :
>> First implement a small bot that plays legal moves including detecting
>> superkos.
>>
>> Then read Bensons definition of unconditional life, the Tromp-Taylor
>> rules and the GTP standard draft.
>>
>> On 09/07/2015 10:00 PM, Sébastien 'Cb' Kuntz wrote:
>>> Hi list,
>>> I'm working on a small immersive VR Go application (Oculus, HTC Vive
>>> etc)
>>>
>>> My goals are:
>>> - play remotely against somebody else in VR
>>> - play remotely against somebody on IGS
>>> (- try to get better at Go)
>>>
>>> Since I'm only a beginner in Go,
>>> I'm looking for the minimal set of functions that I need to implement in
>>> order
>>> to be able to play full games.
>>>
>>> Currently implemented:
>>> - 19x19 board
>>> - Place a black or white stone anywhere
>>> - Can't play if not your turn
>>> - Can't play if move is not legal (suicide or ko)
>>> - Captured stones disappear from board
>>> - Captured stones count
>>> - Score estimation
>>> - IGS: login, challenge a user, play move, receive move
>>>
>>> Planned:
>>> - Pass
>>> - Resign
>>> - Undo
>>> - Save to SGF
>>> - Handicap
>>>
>>> Maybe:
>>> - 9x9
>>> - 13x13
>>>
>>> I am most probably missing some functions to complete the minimal set,
>>> so any comment is greatly appreciated :)
>>> Have a great day!
>>> cb
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