- all files converted to unix line endings
- files from other subsystems and most of system have been removed
- include/SFML/System.hpp and include/SFML/Network.hpp modified to
not include removed stuff
- IpAddress.*pp renamed to IPAddress.*pp to workaround git apply bug
with case-only renames
Also, this avoids keeping the system awake if a game is not being
played.
Frankly, I don't know what the point of precisely tracking these things
is, but that's how the API works. Feel free to add analogous
functionality on other platforms.
Updates for Mario Smash Football, Medabots Infinity 4th Submission,
Super Mario Sunshine, Tom Clancy's Splinter Cell Double Agent, Sonic
Riders, Bigfoot - King of Crush, Turbo: Super Stunt Squad, Kid
Adventures Sky Captain, Toy Story 3.
Fixes issues 7868, 7799, 6586.
This is the same extension that we all know and love but under a different name with some different requirements.
In regular OpenGL fashion, you can't just move a desktop OpenGL extension to OpenGL ES without ratifying a new extension, which is why this falls
under a EXT extension, which in turn causes it to have suffixes attached to their function names.
This is the first step in our way towards conquering all mobile GPUs that don't support desktop OpenGL, hopefully we also can add support for
buffer_storage to OpenGL ES as well so we can make full use of this extension.
This is a fairly lengthy change that can't be separated out to multiple commits well due to the nature of fastmem being a bit of an intertangled mess.
This makes my life easier for maintaining fastmem on ARMv7 because I now don't have to do any terrible instruction counting and NOP padding. Really
makes my brain stop hurting when working with it.
This enables fastmem for a whole bunch of new instructions, which basically means that all instructions now have fastmem working for them. This also
rewrites the floating point loadstores again because the last implementation was pretty crap when it comes to performance, even if they were the
cleanest implementation from my point of view.
This initially started with me rewriting the fastmem routines to work just like the previous/current implementation of floating loadstores. That was
when I noticed that the performance tanked and decided to rewrite all of it.
This also happens to implement gatherpipe optimizations alongside constant address optimization.
Overall this comment brings a fairly large speedboost when using fastmem.