Mercurial > sdl-ios-xcode
view src/thread/riscos/SDL_syscond.c @ 1542:a8bf1aa21020
Fixed bug #15
SDL_blit_A.mmx-speed.patch.txt --
Speed improvements and a bugfix for the current GCC inline mmx
asm code:
- Changed some ops and removed some resulting useless ones.
- Added some instruction parallelism (some gain)
The resulting speed on my Xeon improved upto 35% depending on
the function (measured in fps).
- Fixed a bug where BlitRGBtoRGBSurfaceAlphaMMX() was
setting the alpha component on the destination surfaces (to
opaque-alpha) even when the surface had none.
SDL_blit_A.mmx-msvc.patch.txt --
MSVC mmx intrinsics version of the same GCC asm code.
MSVC compiler tries to parallelize the code and to avoid
register stalls, but does not always do a very good job.
Per-surface blending MSVC functions run quite a bit faster
than their pure-asm counterparts (upto 55% faster for 16bit
ones), but the per-pixel blending runs somewhat slower than asm.
- BlitRGBtoRGBSurfaceAlphaMMX and BlitRGBtoRGBPixelAlphaMMX (and all
variants) can now also handle formats other than (A)RGB8888. Formats
like RGBA8888 and some quite exotic ones are allowed -- like
RAGB8888, or actually anything having channels aligned on 8bit
boundary and full 8bit alpha (for per-pixel alpha blending).
The performance cost of this change is virtually 0 for per-surface
alpha blending (no extra ops inside the loop) and a single non-MMX
op inside the loop for per-pixel blending. In testing, the per-pixel
alpha blending takes a ~2% performance hit, but it still runs much
faster than the current code in CVS. If necessary, a separate function
with this functionality can be made.
This code requires Processor Pack for VC6.
author | Sam Lantinga <slouken@libsdl.org> |
---|---|
date | Wed, 15 Mar 2006 15:39:29 +0000 |
parents | d910939febfa |
children | 782fd950bd46 c121d94672cb a1b03ba2fcd0 |
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/* SDL - Simple DirectMedia Layer Copyright (C) 1997-2006 Sam Lantinga This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. This library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with this library; if not, write to the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA Sam Lantinga slouken@libsdl.org */ #include "SDL_config.h" /* RISC OS implementations uses pthreads based on linux code */ #if SDL_THREADS_DISABLED #include "../generic/SDL_syscond.c" #else #include <sys/time.h> #include <unistd.h> #include <pthread.h> #include "SDL_thread.h" #include "SDL_sysmutex_c.h" struct SDL_cond { pthread_cond_t cond; }; /* Create a condition variable */ SDL_cond * SDL_CreateCond(void) { SDL_cond *cond; cond = (SDL_cond *) SDL_malloc(sizeof(SDL_cond)); if ( cond ) { if ( pthread_cond_init(&cond->cond, NULL) < 0 ) { SDL_SetError("pthread_cond_init() failed"); SDL_free(cond); cond = NULL; } } return(cond); } /* Destroy a condition variable */ void SDL_DestroyCond(SDL_cond *cond) { if ( cond ) { pthread_cond_destroy(&cond->cond); SDL_free(cond); } } /* Restart one of the threads that are waiting on the condition variable */ int SDL_CondSignal(SDL_cond *cond) { int retval; if ( ! cond ) { SDL_SetError("Passed a NULL condition variable"); return -1; } retval = 0; if ( pthread_cond_signal(&cond->cond) != 0 ) { SDL_SetError("pthread_cond_signal() failed"); retval = -1; } return retval; } /* Restart all threads that are waiting on the condition variable */ int SDL_CondBroadcast(SDL_cond *cond) { int retval; if ( ! cond ) { SDL_SetError("Passed a NULL condition variable"); return -1; } retval = 0; if ( pthread_cond_broadcast(&cond->cond) != 0 ) { SDL_SetError("pthread_cond_broadcast() failed"); retval = -1; } return retval; } int SDL_CondWaitTimeout(SDL_cond *cond, SDL_mutex *mutex, Uint32 ms) { int retval; struct timeval delta; struct timespec abstime; if ( ! cond ) { SDL_SetError("Passed a NULL condition variable"); return -1; } gettimeofday(&delta, NULL); abstime.tv_sec = delta.tv_sec + (ms/1000); abstime.tv_nsec = (delta.tv_usec + (ms%1000) * 1000) * 1000; if ( abstime.tv_nsec > 1000000000 ) { abstime.tv_sec += 1; abstime.tv_nsec -= 1000000000; } tryagain: retval = pthread_cond_timedwait(&cond->cond, &mutex->id, &abstime); switch (retval) { case EINTR: goto tryagain; break; case ETIMEDOUT: retval = SDL_MUTEX_TIMEDOUT; break; case 0: break; default: SDL_SetError("pthread_cond_timedwait() failed"); retval = -1; break; } return retval; } /* Wait on the condition variable, unlocking the provided mutex. The mutex must be locked before entering this function! */ int SDL_CondWait(SDL_cond *cond, SDL_mutex *mutex) { int retval; if ( ! cond ) { SDL_SetError("Passed a NULL condition variable"); return -1; } retval = 0; if ( pthread_cond_wait(&cond->cond, &mutex->id) != 0 ) { SDL_SetError("pthread_cond_wait() failed"); retval = -1; } return retval; } #endif