09.02.2026, 19:37
I am converting some minidv footage to 4k and applying a number of filters.
When I resize I set the hieght to 2160 and allow the width to be automatically calculated to 2880. Further, I set the ouptut par to 1:1, understanding that the input PAR is 8:9. In VS, I use the NNEID3 resizer and check GPU. I have an intel arc380 graphics card.
I Bob deinterlace using QTGMC and apply some quality filters. The output is as I want, but it is very slow to process (~2.11fps). In providing the vs spring to AI (Gemini in my case), it notes that the way I am doing it is by grossing up the size by a factor of 8 (rfactor=8) only to downsize it immediately thereafter.
Is there a way to adjust this in the Hybrid GUI. Here is the script I generate. Please do not hesitate to point out any other inefficiencies that you find in my script. Thank you
When I resize I set the hieght to 2160 and allow the width to be automatically calculated to 2880. Further, I set the ouptut par to 1:1, understanding that the input PAR is 8:9. In VS, I use the NNEID3 resizer and check GPU. I have an intel arc380 graphics card.
I Bob deinterlace using QTGMC and apply some quality filters. The output is as I want, but it is very slow to process (~2.11fps). In providing the vs spring to AI (Gemini in my case), it notes that the way I am doing it is by grossing up the size by a factor of 8 (rfactor=8) only to downsize it immediately thereafter.
Is there a way to adjust this in the Hybrid GUI. Here is the script I generate. Please do not hesitate to point out any other inefficiencies that you find in my script. Thank you
# Imports
import vapoursynth as vs
# getting Vapoursynth core
import ctypes
import sys
import os
core = vs.core
# Limit thread count to 16
core.num_threads = 16
# Import scripts folder
scriptPath = 'C:/Program Files/Hybrid/64bit/vsscripts'
sys.path.insert(0, os.path.abspath(scriptPath))
# Loading Support Files
Dllref = ctypes.windll.LoadLibrary("C:/Program Files/Hybrid/64bit/vsfilters/Support/libfftw3f-3.dll")
# loading plugins
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/SharpenFilter/CAS/CAS.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/ResizeFilter/nnedi3/NNEDI3CL.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/DenoiseFilter/FFT3DFilter/fft3dfilter.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/Support/libmvtools_sf_em64t.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/Support/TCanny.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/Support/vszip.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/DenoiseFilter/CTMF/CTMF.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/GrainFilter/AddGrain/AddGrain.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/DenoiseFilter/NEO_FFT3DFilter/neo-fft3d.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/DenoiseFilter/DFTTest/DFTTest.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/Support/EEDI3m.dll")# vsQTGMC
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/ResizeFilter/nnedi3/vsznedi3.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/Support/libmvtools.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/Support/fmtconv.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/DeinterlaceFilter/Bwdif/Bwdif.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/Support/libllvmexpr.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/DenoiseFilter/ZSmooth/zsmooth.dll")
core.std.LoadPlugin(path="C:/Program Files/Hybrid/64bit/vsfilters/SourceFilter/LSmashSource/LSMASHSource.dll")
# Import scripts
import edi_rpow2
import degrain
import dehalo
import qtgmc
import validate
# Source: 'T:\OneDrive\AVI Master Files\2005MiniDV\01 Jan\.2005-01-05_19-28-49.AVI'
# Current color space: YUV411P8, bit depth: 8, resolution: 720x480, frame rate: 29.97fps, scanorder: bottom field first, yuv luminance scale: limited, matrix: 470bg, format: DV
# Loading T:\OneDrive\AVI Master Files\2005MiniDV\01 Jan\.2005-01-05_19-28-49.AVI using LWLibavSource
clip = core.lsmas.LWLibavSource(source="T:/OneDrive/AVI Master Files/2005MiniDV/01 Jan/.2005-01-05_19-28-49.AVI", format="YUV411P8", stream_index=0, cache=0, prefer_hw=0)
frame = clip.get_frame(0)
# setting color matrix to 470bg.
clip = core.std.SetFrameProps(clip, _Matrix=vs.MATRIX_BT470_BG)
# setting color transfer (vs.TRANSFER_BT601), if it is not set.
if validate.transferIsInvalid(clip):
clip = core.std.SetFrameProps(clip=clip, _Transfer=vs.TRANSFER_BT601)
# setting color primaries info (to vs.PRIMARIES_BT470_BG), if it is not set.
if validate.primariesIsInvalid(clip):
clip = core.std.SetFrameProps(clip=clip, _Primaries=vs.PRIMARIES_BT470_BG)
# setting color range to TV (limited) range.
clip = core.std.SetFrameProps(clip=clip, _ColorRange=vs.RANGE_LIMITED)
# making sure frame rate is set to 29.97fps
clip = core.std.AssumeFPS(clip=clip, fpsnum=30000, fpsden=1001)
# making sure the detected scan type is set (detected: bottom field first)
clip = core.std.SetFrameProps(clip=clip, _FieldBased=vs.FIELD_BOTTOM) # bff
# adjusting color space from YUV411P8 to YUV444P16 for vsQTGMC
clip = core.resize.Bicubic(clip=clip, format=vs.YUV444P16)
# Deinterlacing using QTGMC
clip = qtgmc.QTGMC(Input=clip, Preset="Slower", InputType=0, TFF=False, TR2=1, Sharpness=1.0, SourceMatch=0, Lossless=0, EZDenoise=1.00, NoisePreset="Fast") # new fps: 59.94
# Making sure content is preceived as frame based
clip = core.std.SetFrameProps(clip=clip, _FieldBased=vs.FIELD_PROGRESSIVE) # progressive
# ColorMatrix: adjusting color matrix from 470bg to 709
# adjusting luma range to 'limited' due to post clipping
clip = core.resize.Bicubic(clip, matrix_in_s="470bg", matrix_s="709", range_in=0, range=0)
# applying FineDeHalo to remove halos
clip = dehalo.FineDehalo(clip, thlimi=53, darkstr=1.50)
# removing grain using TemporalDegrain2
clip = degrain.TemporalDegrain2(clip, degrainPlane=4, meAlgPar=False, postFFT=1, ppSAD1=9, ppSAD2=6, ppSCD1=4, thSCD2=100, fftThreads=4)
# resizing using NNEDI3CL
# current: 720x480 target: 2880x2160 -> pow: 8
clip = edi_rpow2.nnedi3cl_rpow2(clip, rfactor=8, nsize=2, nns=2)# 5760x3840
# resizing 5760x3840 to 2880x2160
clip = core.fmtc.resample(clip, w=2880, h=2160, kernel="spline64", interlaced=False, interlacedd=False)# before YUV444P16 after YUV444P16
# contrast sharpening using CAS
clip = core.cas.CAS(clip, sharpness=0.700)
# letterboxing 2880x2160 to 3840x2160
clip = core.std.AddBorders(clip, left=480, right=480, top=0, bottom=0)
# adjusting output color from: YUV444P16 to YUV420P10 for SvtAv1Model
clip = core.resize.Bicubic(clip=clip, format=vs.YUV420P10, dither_type="error_diffusion")
# set output frame rate to 59.94fps (progressive)
clip = core.std.AssumeFPS(clip=clip, fpsnum=60000, fpsden=1001)
# output
clip.set_output()
