GetMagickPixelPacket(image,&bias);
image_view=AcquireCacheView(image);
blur_view=AcquireCacheView(blur_image);
-#if defined(MAGICKCORE_OPENMP_SUPPORT)
+#if defined(MAGICKCORE_OPENMP_SUPPORT)
#pragma omp parallel for schedule(dynamic,4) shared(progress,status) omp_throttle(1)
#endif
for (y=0; y < (ssize_t) image->rows; y++)
MagickBooleanType
proceed;
-#if defined(MAGICKCORE_OPENMP_SUPPORT)
+#if defined(MAGICKCORE_OPENMP_SUPPORT)
#pragma omp critical (MagickCore_MotionBlurImageChannel)
#endif
proceed=SetImageProgress(image,BlurImageTag,progress++,image->rows);
UndefinedVirtualPixelMethod,MagickTrue,exception);
random_info=AcquireRandomInfoThreadSet();
image_view=AcquireCacheView(spread_image);
-#if defined(MAGICKCORE_OPENMP_SUPPORT)
+#if defined(MAGICKCORE_OPENMP_SUPPORT)
#pragma omp parallel for schedule(dynamic,4) shared(progress,status) omp_throttle(1)
#endif
for (y=0; y < (ssize_t) spread_image->rows; y++)
MagickBooleanType
proceed;
-#if defined(MAGICKCORE_OPENMP_SUPPORT)
+#if defined(MAGICKCORE_OPENMP_SUPPORT)
#pragma omp critical (MagickCore_SpreadImage)
#endif
proceed=SetImageProgress(image,SpreadImageTag,progress++,image->rows);
{
pixel.index=unsharp_indexes[x]-(MagickRealType) indexes[x];
if (fabs(2.0*pixel.index) < quantum_threshold)
- pixel.index=(MagickRealType) unsharp_indexes[x];
+ pixel.index=(MagickRealType) indexes[x];
else
- pixel.index=(MagickRealType) unsharp_indexes[x]+(pixel.index*
- amount);
+ pixel.index=(MagickRealType) indexes[x]+(pixel.index*amount);
unsharp_indexes[x]=ClampToQuantum(pixel.index);
}
p++;