X-Git-Url: http://gitweb.michael.orlitzky.com/?a=blobdiff_plain;f=src%2FMain.hs;h=1a716836c5db52096e7c15e6caaf45e307ba83cc;hb=b6ce041d136d56fb3d0638c4abadbae64b94b2e5;hp=0afe2f7cc4a27e19f32823b2474f601a00d265f5;hpb=c8ec035a77f871e4deaa976ed6f3a65a32c07048;p=spline3.git diff --git a/src/Main.hs b/src/Main.hs index 0afe2f7..1a71683 100644 --- a/src/Main.hs +++ b/src/Main.hs @@ -5,8 +5,18 @@ import qualified Data.Array.Repa as R import System.Environment (getArgs) import Grid (zoom) -import MRI - +import MRI ( + flip_x, + flip_y, + mri_shape, + mri_slice3d, + read_word16s, + round_array, + swap_bytes, + write_values_slice_to_bitmap, + write_word16s, + z_slice + ) in_file :: FilePath in_file = "./data/mri.bin" @@ -22,12 +32,13 @@ main3d = do let zoom_factor = (scale, scale, scale) let out_file = "output.bin" arr <- read_word16s in_file - let arr' = swap_bytes arr - let arrMRI = R.reshape mri_shape arr' - let dbl_data = R.force $ R.map fromIntegral arrMRI - let output = zoom dbl_data zoom_factor - let word16_output = round_array output + let arr' = swap_bytes arr + let arrMRI = R.reshape mri_shape arr' + dbl_data <- R.computeUnboxedP $ R.map fromIntegral arrMRI + output <- zoom dbl_data zoom_factor + word16_output <- R.computeUnboxedP $ round_array output write_word16s out_file word16_output + return () main2d :: IO () @@ -37,10 +48,13 @@ main2d = do let zoom_factor = (1, scale, scale) let out_file = "output.bmp" arr <- read_word16s in_file - let arr' = swap_bytes arr - let arrInv = flip_x $ flip_y arr' - let arrSlice = z_slice 50 arrInv + arrSlice <- R.computeUnboxedP $ z_slice 50 $ flip_x $ flip_y $ swap_bytes arr let arrSlice' = R.reshape mri_slice3d arrSlice - let dbl_data = R.map fromIntegral arrSlice' - let output = zoom dbl_data zoom_factor - write_values_slice_to_bitmap (z_slice 0 output) out_file + + -- If zoom isn't being inlined we need to extract the slice before hand, + -- and convert it to the require formed. + dbl_data <- R.computeUnboxedP $ R.map fromIntegral arrSlice' + output <- zoom dbl_data zoom_factor + arrSlice0 <- R.computeUnboxedP $ z_slice 0 output + + write_values_slice_to_bitmap arrSlice0 out_file