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AnimeIVTC 2 mod

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Mar 29th, 2015
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  1. # AnimeIVTC() by thetoof
  2. # v2.00 2015-3-29 mod
  3. # last update by AmjadSONY was:- make "precision=1" use "nnedi3" only for "Toriko Anime" by using it like this:- AnimeIVTC(1, precision=1)
  4. # add mode22 bool to use it in mode 2 for Spatial field-blend (field-blend in a part of the picture), ex:- AnimeIVTC(2, bbob=1, mode22=true)
  5. # TC file now will out in V2 ;) , add ediext clip to use it with QTGMC and add bob4p to change QTGMC Preset , add extbob clip to use an External bobber with bbob/cbob=5 , chrfix in mode 1 and other things fixed by doom9 member
  6. # make chrfix work. add dchr bool, can help chrfix with some source, add palf bool for no decimate in mode 1 and make fps 24 instead of 25 for mode 2 in pal source, add tcfv1 bool to made TC file v1 and make it true by default
  7. # add nvfr bool for VFR noisy sources, add real30p bool to not use daa with 30p, and some fix in for PAL cases and other things
  8. # add TFM (mode, cthresh, blockx, blocky, MI) and some fix
  9.  
  10. # Read the documentation for all the required info to know how to use this function, With note that there are some things have changed in this MOD
  11.  
  12. function AnimeIVTC (clip i, int "mode", int "aa", int "precision", int "killcomb", int "cache", bool "ifade", float "sfthr", bool "sfshow"\
  13.         , bool "chrfix"\
  14.         , bool "blend"\  
  15.         , bool "normconv"\
  16.         , int "pattern"\
  17.         , int "pass", bool "rendering" \
  18.         , int "bbob", int "cbob", string "edimode", int "degrain", int "omode", int "cthresh", int "blockx", int "blocky", int "MI", int "tfmm"\
  19.         , int "i1", int "i2", int "e1", int "e2", int "e3", int "p1", int "p2", bool "dchr", bool "palf", bool "tcfv1", bool "nvfr", bool "real30p" \
  20.         , int "overlap", int "pel", int "search", bool "nnedi3pel", string "credconv", bool "mode22", clip "ediext", string "bob4p", clip "extbob"\
  21.         , float "dark", int "thin", int "sharp", int "smooth", bool "stabilize", int "tradius", int "aapel", int "aaov", int "aablk", string "aatype"){
  22.  
  23. ###General arguments###
  24. Assert(defined(mode), "Specify a mode... please read the documentation.")
  25.  
  26. #Highest quality by default
  27. precision   = default ( precision,        3 )
  28.  
  29. #change pal fps
  30. palf    = default ( palf,         false )
  31.  
  32. #VFR default optional
  33. tcfv1   = default ( tcfv1,        true  )
  34. nvfr    = default ( nvfr,         false )
  35.  
  36. #boolean "creds" is set to true if any of the i/p arguments are defined (i.e. if there's a 30i or 30p section to process)
  37. creds = defined(i1) ? true : false
  38. creds = defined(i2) ? true : creds
  39. creds = defined(p1) ? true : creds
  40. creds = defined(p2) ? true : creds
  41. creds = defined(e1) ? true : creds
  42. creds = defined(e2) ? true : creds
  43. creds = defined(e3) ? true : creds
  44.  
  45. # real30p
  46. real30p  = default( real30p,        false)
  47.  
  48. ###Framerate preparation###
  49. normconv = default( normconv, false)
  50. #Determine source region by analysing framerate
  51. Ifrate  = round(framerate(i))==30 ? 1 : framerate(i)==25 ? 2 : 3
  52. assert(ifrate!=3, "What is your input clip?? It's not 30fps NTSC nor 25fps PAL... maybe you're using the function for a purpose it was not meant to. Please post in the AnimeIVTC thread.")
  53.  
  54. #Set the output to the other region if normconv (norm-conversion) is set to true, use same as input if not
  55. Ofrate  = Ifrate==1 && normconv ? 2 : Ifrate==2 && normconv ? 1 : Ifrate
  56.  
  57. #prepare arguments for srestore and tdecimate based on user settings (as seen previously)
  58. frate   = Ofrate==1 ? 23.976 : palf ? 24 : 25
  59. tnum    = Ofrate==1 ? (mode==1 && palf) ? 30000 : 24000 : (mode==2 && palf) ? 24 : ((mode==1 && palf) || mode==2) ? 25 : 20
  60. tden    = Ofrate==1 ? 1001 : 1
  61.  
  62.  
  63.  
  64. #Set pattern=0 (tdecimate) for DHT (safest)
  65. pattern     = default ( pattern,          0 )
  66.  
  67. #Set defaults of bobbing filters to use to general optimal quality
  68. bbob        = default ( bbob,             3 )
  69. cbob        = default ( cbob,             4 )
  70. bob4p       = default ( bob4p,     "Slower" )
  71.  
  72. #Sets output mode to 1 (23.976fps for NTSC and 25fps for PAL) when no 30i or 30p sections are specified and sets it to 0 to use NOP() for every operation where it needs to be specified by the user
  73. omode = (creds==false && mode!=4) || ofrate==2 || normconv ? 1 : default (omode, 0)
  74. Assert(omode!=0, "Specify an output mode (omode)... please read the documentation.")
  75. normconv ? assert(mode==2, "Why would you use normconv=true with a telecined source?") : nop()
  76.  
  77. ###Framerate conversion arguments###
  78. bs      = (i.width>1100) ? 16 : 8
  79. overlap     = default ( overlap,           bs/2 )
  80. pel         = default ( pel,          2 )
  81. search      = default ( search,           4 )
  82. assert(search >= 2, "Using a lower search than 2 will most probably lead to weird artifacts")
  83. nnedi3pel   = default ( nnedi3pel,        false )
  84. credconv    = default ( credconv,       omode==2 ? "a" : "blah" )
  85. creds ? assert(credconv!= "blah", "Please specify credconv. Check in the docs to see which is more appropriate to your source.") : nop()
  86.  
  87. #VFR - If this is pass=2 and that the user made a rendering pass out of pass=1, use input directly for decimation instead of recomputing everything
  88. pass        = default (pass,          1 )
  89. rendering   = default ( rendering,        false )
  90.  
  91. #Ask if hard telecine (mode=1) is actually blend telecine (patter = 3 clean frames followed by 2 blended ones)
  92. blend       = default ( blend,        false )
  93.  
  94. #Ask if double chroma blend removal is needed (see guide for more info about this problem)
  95. chrfix  = default ( chrfix,       false )
  96. dchr    = default ( dchr,       false )
  97.  
  98. #mode22 for Spatial field-blend
  99. mode22  = default ( mode22,       false )
  100.  
  101. #Set cache to 10 frames for all functions using scriptclip to prevent seeking issues + frame order mess-up with temporal filters
  102. cache       = default ( cache,       10 )
  103.  
  104. #Let the user decide which edimode (optimal varies greatly depending on source) and degrain (++ affects quality vs speed) settings to use in qTGMC
  105. edimode     = default ( edimode,       "nnedi3" )
  106. degrain     = default ( degrain,          1 )
  107.  
  108. #Set decombing and antialiasing filters to off by default
  109. killcomb    = default ( killcomb,         0 )
  110. aa      = default ( aa,           0 )
  111. aa = killcomb==3 && aa==2 ? 0 : aa
  112.  
  113. #Set interlaced fade ins detection (and correction to off by default)
  114. ifade       = default ( ifade,         false )
  115. #Also turn it off if aa=2 (use daa()), since it applies the same operation on the whole clip as ifade would have had selectively)
  116. ifade       = aa==2 || killcomb==3 ? false : ifade
  117. sfthr   = default ( sfthr,  0.4 )
  118. sfshow = default ( sfshow, false )
  119.  
  120. ###Alright, let's start doing something :p ###
  121.  
  122.  
  123. #########
  124. #Bobbing#
  125. #########
  126.  
  127. #Assign clip to prevent double computation
  128. edeint= i.nnedi3(-2)
  129. emask = i.tmm(1)
  130.  
  131. #For later NOP() use if blendbob is not needed
  132. usebbob = chrfix && blend || mode==2
  133.  
  134.  
  135. #Use non-motion-compensated bobber for blended clips since blends have a negative impact on motion detection (if blends are averaged with frames, they can be harder to detect/remove) (mode=2 and mode=1 with blend and chrfix because blend telecine... well has a lot of blends)
  136. blendbob    = usebbob ? bbob<=0 ? i.tdeint(1)                                       :
  137. \               bbob==1 ? i.tdeint(1,       edeint=edeint   )                       :
  138. \               bbob==2 ? i.tdeint(1,       edeint=edeint,emask=emask)                  :
  139. \               bbob==3 ? i.yadifmod(mode=1,    edeint=edeint)                          :
  140. \               bbob==4 ? i.QTGMC(Preset=bob4p,edimode=edimode,tr2=degrain,ediext=ediext)   :
  141. \                         extbob                                                                : NOP()
  142.  
  143. #For later NOP() use if clearbob is not needed
  144. usecbob = mode==3 || defined(i1) || chrfix && blend==false
  145.  
  146. #Allow usage of mo-comp bobber (TempGaussMC) when source is not blended. Highly recommended for stability. (mode=3, interlaced credits, used in chrfix because impact is minimal compared to bob flicker on the whole clip)
  147. clearbob    = usecbob ? cbob<=0 ? i.tdeint(1)                                       :
  148. \               cbob==1 ? i.tdeint(1,       edeint=edeint)                          :
  149. \               cbob==2 ? i.tdeint(1,       edeint=edeint,emask=emask)                  :
  150. \               cbob==3 ? i.yadifmod(mode=1,    edeint=edeint)                          :
  151. \                   cbob==4 ? i.QTGMC(Preset=bob4p,edimode=edimode,tr2=degrain,ediext=ediext)   :
  152. \                         extbob                                                                : NOP()
  153.  
  154. ############################
  155. #Chroma swap between fields# chrfix
  156. ############################
  157.  
  158. #Repair double chroma blending if requested by user using xbob depending on source (known by the mode)
  159. chrdeb = chrfix ? blend || mode==2 ? dchr ? blendbob.chroma_rep2(cache) : blendbob.chroma_rep(cache) : dchr ? clearbob.chroma_rep2(cache) : clearbob.chroma_rep(cache) : nop()
  160.  
  161. #Remove duplicates (like a safe selecteven/odd) for further processing before final decimation (hybrid decimation (except blend decimation to prevent having 2 calls of tdecimate) or blend telecine IVTC)
  162. #Once bobbed, in mode=1 (tdecimate(1,3,5), in mode=1 + blend = back to 30fps for further deblending, in mode=2 srestore will do the job, in mode=3 tdecimate(1,3,5), in mode 4 VFR needs 30, CFR can do it (personal notes)
  163. debprep = chrfix ? mode==1 && blend || mode==4 && omode==2 ? chrdeb.tdecimate(1,1,2) : chrdeb : i
  164.  
  165. ################
  166. #Field matching# MODE=1 AND 4
  167. ################
  168.  
  169. #Field match for mode 1, pass 2 of mode 4 (hybrid without tfm.txt output) or mode=4 with blend decimation (no need for txt file) or mode=4 with interlaced credits (txt file unusable)
  170. usefm = mode==1 || (mode==4 && (pass==2 || creds || omode==1))
  171.  
  172. #field match for hard telecine or blend telecine restoration for mode==1
  173. fm =    (precision==0 && usefm) ? blend ? debprep.srestore(omode="pp0") : i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI) :
  174. \   (precision==1 && usefm) ? blend ? debprep.srestore(omode="pp1") : i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI,clip2=i.nnedi3) :
  175. \   (precision==2 && usefm) ? blend ? debprep.srestore(omode="pp2") : i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI,clip2=i.tdeint(2,edeint=edeint)) :
  176. \   (precision==3 && usefm) ? blend ? debprep.srestore(omode="pp3") : i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI,clip2=i.tdeint(2,edeint=edeint,emask=emask)) :
  177. \   nop()
  178. fm = usefm ? ifade ? fm.smartfademod(sfthr, sfshow, cache) : fm : nop()
  179.  
  180. #Field match + tfm.txt output for VFR clips (mode=4, pass=1)
  181. usehfm = mode==4 && pass==1 && usefm==false
  182.  
  183. hybridfm =  (usehfm && precision==0) ? i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI, output="tfm.txt") :
  184. \       (usehfm && precision==1) ? i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI, output="tfm.txt",clip2=i.nnedi3) :
  185. \       (usehfm && precision==2) ? i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI, output="tfm.txt",clip2=i.tdeint(2,edeint=edeint)) :
  186. \       (usehfm && precision==3) ? i.tfm(slow=2,mode=tfmm,cthresh=cthresh,blockx=blockx,blocky=blocky,MI=MI, output="tfm.txt",clip2=i.tdeint(2,edeint=edeint,emask=emask)) :
  187. \       nop()
  188. hybridfm = usehfm ? ifade ? hybridfm.smartfademod(sfthr, sfshow, cache) : hybridfm : nop()
  189.  
  190. ###############        ######################
  191. #Field blended# MODE=2 #Double hard telecine# MODE=3
  192. ###############        ######################
  193.  
  194. #Since during double chroma blend removal it was checked whether to use blendbob or clearbob depending on the source (blendbob was used for field blended and clearbob was used for double hard telecine), use chrbob when chrfix=true, else use the appropriate one
  195.  
  196. fbbob = mode==2 ? chrfix ? debprep : blendbob : nop()
  197.  
  198. dhtbob = mode==3 ? chrfix ? debprep : clearbob : nop()
  199.  
  200. ################
  201. #CFR decimation# OMODE=1
  202. ################
  203.  
  204. #HT decimation (mode=1), remove 3 frames out of 5 when chrfix=true since the clip has been bobbed to 60fps
  205. fmdecim = mode==1 ? chrfix ? debprep.tdecimate(1,3,5) : palf ? fm : fm.tdecimate()                                          : nop()
  206.  
  207. #Field blended blend removal & decimation (mode=2) No need to check for chrfix since it was done in the previous step
  208. fbdecim = mode==2 ? mode22 ? chrfix ? fbbob.srestore(omode=2, mode=4, thresh=44, cache=cache, dclip=fbbob.crop(10,0,-10,0)).srestore(frate=frate, mode=4, speed=-4, cache=cache) :  fbbob.srestore(omode=2, mode=4, thresh=44, cache=cache, dclip=fbbob.crop(10,0,-10,0)).srestore(frate=frate, mode=-4, speed=-4, cache=cache)     :
  209. \chrfix ? fbbob.srestore(frate=frate, cache=cache) :    fbbob.srestore(frate=frate, cache=cache, dclip=i.bob(-0.2,0.6).reduceflicker(strength=1))   : nop()
  210.  
  211. #Pattern finding and decimation for double hard telecine (mode=3) No need to check for chrfix since it was done in the previous step
  212. a= mode==3 && (pattern==1 || pattern==-1) ? dhtbob.selectevery(5,0,3) : NOP()
  213. b= mode==3 && (pattern==2 || pattern==-1) ? dhtbob.selectevery(5,1,4) : NOP()
  214. c= mode==3 && (pattern==3 || pattern==-1) ? dhtbob.selectevery(5,0,2) : NOP()
  215. d= mode==3 && (pattern==4 || pattern==-1) ? dhtbob.selectevery(5,1,3) : NOP()
  216. e= mode==3 && (pattern==5 || pattern==-1) ? dhtbob.selectevery(5,2,4) : NOP()
  217. dhtdecim = mode==3 ?            pattern==-1 ? stackvertical(stackhorizontal(a.subtitle("pattern=1"),b.subtitle("pattern=2"),c.subtitle("pattern=3")),stackhorizontal(d.subtitle("pattern=4"),e.subtitle("pattern=5"),e.blackness())) :
  218. \                   pattern==1 ? a :
  219. \                   pattern==2 ? b :
  220. \                   pattern==3 ? c :
  221. \                   pattern==4 ? d :
  222. \                   pattern==5 ? e :
  223. \                   dhtbob.tdecimate(1,3,5) : nop()
  224.  
  225. #Hybrid CFR blend decimation of 30p into 24p
  226. blenddecim = (mode==4 && omode==1) ? chrfix ? debprep.tdecimate(1,3,5,hybrid=1) :   fm.tdecimate(hybrid=1)              : nop()
  227.  
  228. #########
  229. #Credits# CREDS=TRUE (USER SPECIFIES I1, I2, P1, P2, E1, E2 OR E3)
  230. #########
  231.  
  232. #Interlaced : use the same smart-bobbed clip as before; we don't care if the background is blended or not since it is unrecoverable anyways (at least for now... see developments about using masking to isolate creds from background)
  233. credbob = defined(i1) ? clearbob.selecteven() : nop()
  234.  
  235. #Progressive : Blend deinterlace the 24t background while doing minimal damage on the 30p credits
  236. blendbg= defined(p1) ? real30p ? i : i.daa3() : nop()
  237.  
  238. ###CFR conversion###
  239. #######################
  240. ###Framerate conversion (recommended for static or low-motion backgrounds since it is prone artifacts... it reduces framerate/motion based on motion vectors)
  241.  
  242. ####Convert the framerate of the interlaced credits
  243. #Determine if usage of the following conversion is required
  244. usemocompi = defined(i1) && credconv=="mocomp"
  245.  
  246. #External pelclip on source with nnedi, if requested
  247. upsi =      nnedi3pel && usemocompi ?   credbob.    nnedi3_rpow2(rfactor=pel,cshift="spline36resize")        : nop()
  248.  
  249. #Prepare super clip for the interlaced credits
  250. credbobsuper    = usemocompi ?          credbob.    MSuper(pel=pel, levels=0)                    : nop()
  251. credbobupsuper  = usemocompi && nnedi3pel ?     credbob.    MSuper(pel=pel, levels=0, pelclip=upsi)              : nop()
  252.  
  253. #Calculate vectors
  254. bvi =       usemocompi ? nnedi3pel ?    credbobupsuper. MAnalyse(isb = true,search=search, blksize=bs, overlap=overlap)  :
  255. \                       credbobsuper.   MAnalyse(isb = true,search=search, blksize=bs, overlap=overlap)  : nop()
  256.  
  257. fvi =       usemocompi ? nnedi3pel ?    credbobupsuper. MAnalyse(isb = false,search=search, blksize=bs, overlap=overlap) :
  258. \                       credbobsuper.   MAnalyse(isb = false,search=search, blksize=bs, overlap=overlap) : nop()
  259.  
  260. #Apply framerate conversion
  261. fpsconvi =      usemocompi ? nnedi3pel ?    credbob.    MFlowFps(credbobupsuper,bvi, fvi, tnum, tden)            :
  262. \                       credbob.    MFlowFps(credbobsuper,  bvi, fvi, tnum, tden)            : nop()
  263.  
  264. ###Convert the framerate of the progressive credits
  265. #Determine if usage of the following conversion is required
  266. usemocompp = defined(p1) && credconv=="mocomp"
  267.  
  268. #External pelclip on source with nnedi, if requested
  269. upsp =      nnedi3pel && usemocompp ?   blendbg.    nnedi3_rpow2(rfactor=pel,cshift="spline36resize")        : nop()
  270.  
  271. #Prepare super clip for the progressive credits
  272. blendbgsuper    = usemocompp ?          blendbg.MSuper(pel=pel, levels=0)                        : nop()
  273. blendbgsuperup  = usemocompp && nnedi3pel ?     blendbg.MSuper(pel=pel, levels=0, pelclip=upsp)                  : nop()
  274.  
  275. #Calculate vectors
  276. bvp =       usemocompp ? nnedi3pel ?    blendbgsuperup. MAnalyse(isb = true,search=search, blksize=bs, overlap=overlap)  :
  277. \                       blendbgsuper.   MAnalyse(isb = true,search=search, blksize=bs, overlap=overlap)  : nop()
  278.  
  279. fvp =       usemocompp ? nnedi3pel ?    blendbgsuperup. MAnalyse(isb = false,search=search, blksize=bs, overlap=overlap) :
  280. \                       blendbgsuper.   MAnalyse(isb = false,search=search, blksize=bs, overlap=overlap) : nop()
  281.  
  282. #Apply framerate conversion
  283. fpsconvp =  usemocompp ? nnedi3pel ?    blendbg.MFlowFps(blendbgsuperup,bvp, fvp, tnum, tden)                :
  284. \                       blendbg.MFlowFps(blendbgsuper,  bvp, fvp, tnum, tden)                : nop()
  285.  
  286. #######################
  287. ###Blend 30p creds into 24t (ugly and fast, but can lead to less disturbing artifacts when you have a high motion background)
  288. blendi = defined(i1) && credconv=="blend" ? credbob.convertfps(tnum,tden) : nop()
  289.  
  290. blendp = defined(p1) && credconv=="blend" ? blendbg.convertfps(tnum,tden) : nop()
  291.  
  292. #######################
  293. ###Drop frames 30p creds into 24t (ugly and fast, will lead to stuttery motion)
  294. drop_credconv = (credconv=="drop" && normconv) ? 1 : 0
  295.  
  296. assert(drop_credconv!=1, "Please choose another credconv. drop not compatible with normconv=true.")
  297.  
  298. dropi = defined(i1) && credconv=="drop" ? (mode==1 && palf) ? credbob : credbob.tdecimate(1) : nop()
  299.  
  300. dropp = defined(p1) && credconv=="drop" ? (mode==1 && palf) ? blendbg : blendbg.tdecimate(1) : nop()
  301.  
  302. ########
  303. #SPLICE# CREDS=TRUE (USER SPECIFIES I1, I2, P1, P2, E1, E2 OR E3)
  304. ########
  305.  
  306. #Determine the "mix" mode (how the different sections (30i, 24t, 30p) are spliced together)
  307. #Also check for user error when entering the frame numbers
  308.  
  309. mix22a17    = defined(e1) && defined(e2) && defined(e3) && defined(i1) && defined(p1)   ? true : false
  310. mix7        = defined(e1) && defined(e2) && defined(e3) && defined(i1) && defined(i2)   ? true : false
  311. mix14       = defined(e1) && defined(e2) && defined(e3) && defined(p1) && defined(p2)   ? true : false
  312.  
  313. mix21a20a16a15  = defined(e1) && defined(e2) && defined(i1) && defined(p1) && mix22a17==false   ? true : false
  314. mix6a3      = defined(e1) && defined(e2) && defined(i1) && defined(i2) && mix7==false   ? true : false
  315. mix13a10    = defined(e1) && defined(e2) && defined(p1) && defined(p2) && mix14==false  ? true : false
  316.  
  317. mix19a18    = defined(e1) && defined(p1) && defined(i1) && mix21a20a16a15==false    ? true : false
  318. mix9        = defined(e1) && defined(p1) && defined(p2) && mix13a10==false      ? true : false
  319. mix2        = defined(e1) && defined(i1) && defined(i2) && mix6a3==false        ? true : false
  320. mix4        = defined(e1) && defined(e2) && defined(i1) && mix21a20a16a15==false && mix6a3==false   ? true : false
  321. mix11       = defined(e1) && defined(e2) && defined(p1) && mix21a20a16a15==false && mix13a10==false ? true : false
  322.  
  323. mix1a5  = defined(e1) && defined(i1) && mix19a18==false && mix2==false && mix4==false       ? true : false
  324. mix8a12 = defined(e1) && defined(p1) && mix19a18==false && mix11==false && mix9==false      ? true : false
  325.  
  326.  
  327. #Getting the "mix" mode based on user input
  328. mix = 0
  329. mix = mix1a5        && i1<e1        ? 1 : mix
  330. mix = mix2      && i1<e1<i2         ? 2 : mix
  331. mix = mix6a3        && i1<e1<i2<e2      ? 3 : mix
  332. mix = mix4      && e1<i1<e2         ? 4 : mix
  333. mix = mix1a5        && e1<i1        ? 5 : mix
  334. mix = mix6a3        && e1<i1<e2<i2      ? 6 : mix
  335. mix = mix7      && e1<i1<e2<i2<e3   ? 7 : mix
  336. mix = mix8a12       && p1<e1        ? 8 : mix
  337. mix = mix9      && p1<e1<p2         ? 9 : mix
  338. mix = mix13a10      && p1<e1<p2<e2      ? 10 : mix
  339. mix = mix11         && e1<p1<e2         ? 11 : mix
  340. mix = mix8a12       && e1<p1        ? 12 : mix
  341. mix = mix13a10      && e1<p1<e2<p2      ? 13 : mix
  342. mix = mix14         && e1<p1<e2<p2<e3   ? 14 : mix
  343. mix = mix21a20a16a15    && e1<i1<e2<p1      ? 15 : mix
  344. mix = mix21a20a16a15    && i1<e1<p1<e2      ? 16 : mix
  345. mix = mix22a17      && e1<i1<e2<p1<e3   ? 17 : mix
  346. mix = mix19a18      && i1<e1<p1         ? 18 : mix
  347. mix = mix19a18      && p1<e1<i1         ? 19 : mix
  348. mix = mix21a20a16a15    && e1<p1<e2<i1      ? 20 : mix
  349. mix = mix21a20a16a15    && p1<e1<i1<e2      ? 21 : mix
  350. mix = mix22a17      && e1<p1<e2<i1<e3   ? 22 : mix
  351. mix = defined(i2) && defined(i1)==false ? 0 : mix
  352. mix = defined(p2) && defined(p1)==false ? 0 : mix
  353. mix = defined(e2) && defined(e1)==false ? 0 : mix
  354. mix = defined(e3) && defined(e2)==false ? 0 : mix
  355. mix = defined(e3) && defined(e1)==false ? 0 : mix
  356. mix = defined(i1) && defined(e1)==false ? 0 : mix
  357. mix = defined(p1) && defined(e1)==false ? 0 : mix
  358. creds ? assert(mix!=0, "Mistake in entering i1, e1.... parameters. Please check.") : nop()
  359.  
  360. #Determine frame numbers based on mix mode and user input of i/p/e1/2/3
  361. istart1=mix==1 || mix==2 || mix==3 || mix==16 || mix==18                    ? 0     : \
  362.     mix==4 || mix==5 || mix==6 || mix==7 || mix==15 || mix==17 || mix==19 || mix==21    ? e1+1  : \
  363.     mix==20 || mix==22                                  ? e2+1  : nop()
  364.  
  365. istart2=mix==2 || mix==3 ? e1+1 : mix==6 || mix==7 ? e2+1 : nop()
  366.  
  367. pstart1=mix==8 || mix==9 || mix==10 || mix==19 || mix==21                   ? 0     : \
  368.     mix==11 || mix==12 || mix==13 || mix==14 || mix==16 || mix==18 || mix==20 || mix==22    ? e1+1  : \
  369.     mix==15 || mix==17                                  ? e2+1  : nop()
  370.  
  371. pstart2=mix==9 || mix==10 ? e1+1 : mix==13 || mix==14 ? e2+1 : nop()
  372.  
  373. estart1=mix==4 || mix==5 || mix==6 || mix==7 || mix==11 || mix==12 || mix==13 || mix==14 || mix==15 || mix==17 || mix==20 || mix==22    ? 0     : \
  374.     mix==1 || mix==2 || mix==3 || mix==16 || mix==18                                        ? i1+1  : \
  375.     mix==8 || mix==9 || mix==10 || mix==19 || mix==21                                       ? p1+1  : nop()
  376.  
  377. estart2=mix==4 || mix==6 || mix==7 || mix==15 || mix==17 || mix==21     ? i1+1  : \
  378.     mix==3                              ? i2+1  : \
  379.     mix==11 || mix==13 || mix==14 || mix==16 || mix==20 || mix==22  ? p1+1  : \
  380.     mix==10                             ? p2+1  : nop()
  381.  
  382. estart3=mix==7 ? i2+1 : mix==14 ? p2+1 : mix==17 ? p1+1 : mix==22 ? i1+1 : nop()
  383.  
  384. maxfps = defined(i1) ? framerate(i) : defined(p1) ? framerate(i) : nop()
  385.  
  386. #Final 24fps ivtced clip and deinterlaced + framerate converted for CFR (omode=1)
  387. tocfrfinalt = omode==1 ? (mode==1) ? fmdecim : (mode==2) ? fbdecim : (mode==3) ? dhtdecim : (mode==4 && omode==1) ? blenddecim : nop() : nop()
  388. tocfrfinali = omode==1 && creds ? (credconv=="mocomp") ? fpsconvi : (credconv=="blend") ? blendi : credconv=="drop" ? dropi : nop() : nop()
  389. tocfrfinalp = omode==1 && creds ? (credconv=="mocomp") ? fpsconvp : (credconv=="blend") ? blendp : credconv=="drop" ? dropp : nop() : nop()
  390.  
  391. #Final 30fps clips (prepare for hybrid decimation, make everything 30fps) for hybrid use fm since it will be spliced (txt file will be useless) (used when creds=true)
  392. tovfrfinalt = omode==2 && creds ? (mode==1) ? fm : (mode==2) ? fbdecim.changefps(maxfps) : (mode==3) ? dhtdecim.changefps(maxfps) : (mode==4 && omode==2) ? fm : nop() : nop()
  393. tovfrfinali = omode==2 && creds ? credbob : nop()
  394. tovfrfinalp = omode==2 && creds ? blendbg : nop()
  395.  
  396. #Final clip to splice
  397. spliceprept = mix!=0 ? omode==1 ? tocfrfinalt : omode==2 ? tovfrfinalt : nop() : nop()
  398. spliceprepi = mix!=0 ? omode==1 ? tocfrfinali : omode==2 ? tovfrfinali : nop() : nop()
  399. spliceprepp = mix!=0 ? omode==1 ? tocfrfinalp : omode==2 ? tovfrfinalp : nop() : nop()
  400.  
  401. #######################
  402. ###Trim
  403. #Factor to get the proper trim values after decimating
  404. factor = omode==1 ? defined(i1) ? float(framerate(tocfrfinali)/framerate(i)) : defined(p1) ? float(framerate(tocfrfinalp)/framerate(i)) : nop() : nop()
  405.  
  406. et1 =   defined(e1) ? omode==2 ? spliceprept.trim(estart1,e1) : spliceprept.trim(int(estart1*factor),int(e1*factor)) : nop()
  407. et2 =   defined(e2) ? omode==2 ? spliceprept.trim(estart2,e2) : spliceprept.trim(int(estart2*factor),int(e2*factor)) : nop()
  408. et3 =   defined(e3) ? omode==2 ? spliceprept.trim(estart3,e3) : spliceprept.trim(int(estart3*factor),int(e3*factor)) : nop()
  409.  
  410. ci1 =   defined(i1) ? omode==2 ? spliceprepi.trim(istart1,i1) : spliceprepi.trim(int(istart1*factor),int(i1*factor)) : nop()
  411. ci2 =   defined(i2) ? omode==2 ? spliceprepi.trim(istart2,i2) : spliceprepi.trim(int(istart2*factor),int(i2*factor)) : nop()
  412.  
  413. #Prepare 30p sections for splicing
  414. cp1 =   defined(p1) ? omode==2 ? spliceprepp.trim(pstart1,p1) : spliceprepp.trim(int(pstart1*factor),int(p1*factor)) : nop()
  415. cp2 =   defined(p2) ? omode==2 ? spliceprepp.trim(pstart2,p2) : spliceprepp.trim(int(pstart2*factor),int(p2*factor)) : nop()
  416.  
  417. spliced=(mix==1) ?  ci1 +   et1 : \
  418.     (mix==2) ?  ci1 +   et1 +   ci2 : \
  419.     (mix==3) ?  ci1 +   et1 +   ci2 +   et2 : \
  420.     (mix==4) ?  et1 +   ci1 +   et2 : \
  421.     (mix==5) ?  et1 +   ci1 : \
  422.     (mix==6) ?  et1 +   ci1 +   et2 +   ci2 : \
  423.     (mix==7) ?  et1 +   ci1 +   et2 +   ci2 +   et3 : \
  424.     (mix==8) ?  cp1 +   et1 : \
  425.     (mix==9) ?  cp1 +   et1 +   cp2 : \
  426.     (mix==10) ?     cp1 +   et1 +   cp2 +   et2 : \
  427.     (mix==11) ?     et1 +   cp1 +   et2 : \
  428.     (mix==12) ?     et1 +   cp1 : \
  429.     (mix==13) ?     et1 +   cp1 +   et2 +   cp2 : \
  430.     (mix==14) ?     et1 +   cp1 +   et2 +   cp2 +   et3 : \
  431.     (mix==15) ?     et1 +   ci1 +   et2 +   cp1 : \
  432.     (mix==16) ?     ci1 +   et1 +   cp1 +   et2 : \
  433.     (mix==17) ? et1 +   ci1 +   et2 +   cp1 +   et3 : \
  434.     (mix==18) ?     ci1 +   et1 +   cp1 : \
  435.     (mix==19) ?     cp1 +   et1 +   ci1 : \
  436.     (mix==20) ?     et1 +   cp1 +   et2 +   ci1 : \
  437.     (mix==21) ?     cp1 +   et1 +   ci1 +   et2 : \
  438.     (mix==22) ?     et1 +   cp1 +   et2 +   ci1 +   et3 : \
  439.     NOP()
  440.  
  441. finalcfr =  omode==1 ? creds ? spliced : tocfrfinalt : nop()
  442. tovfrdec1 = omode==2 ? creds ? spliced : chrfix ? debprep : hybridfm : nop()
  443. tovfrdec2 = omode==2 ? rendering ? i : creds ? spliced : chrfix ? debprep : fm : nop()
  444.  
  445. finalvfr =  omode==2 && pass==1 ? nvfr ? tovfrdec1.TDecimate(4, output="stats.txt",denoise=true,vidThresh=0.8,dupThresh=0.9) : tovfrdec1.TDecimate(4, output="stats.txt") :
  446. \       omode==2 && pass==2 ? nvfr ? tovfrdec2.TDecimate(5,hybrid=2,tfmin=creds ? "" : "tfm.txt",input="stats.txt",mkvout="timecodes.txt",tcfv1=tcfv1,batch=true,vidThresh=0.4,dupThresh=0.6) : tovfrdec2.TDecimate(5,hybrid=2,tfmin=creds ? "" : "tfm.txt",input="stats.txt",mkvout="timecodes.txt",tcfv1=tcfv1,batch=true) : nop()
  447.  
  448. topp = omode==1 ? finalcfr : omode==2 ? finalvfr : nop()
  449.  
  450. #Kill combing depending on user settings
  451. dec =   killcomb==0 ? topp :
  452. \   killcomb==1 ? topp.vinverse() :
  453. \   killcomb==2 ? topp.vinverseD() :
  454. \   killcomb==3 ? topp.daa3() :
  455. \       interleave( topp.        subtitle("killcomb=0",align=9),
  456. \               topp.vinverse(). subtitle("killcomb=1",align=9),
  457. \               topp.vinverseD().subtitle("killcomb=2",align=9),
  458. \               topp.daa3().subtitle("killcomb=3",align=9))
  459.  
  460. aaed =  aa==0 ? dec :
  461. \   aa==1 ? dec.ediaa() :
  462. \   aa==2 ? dec.daa3() :
  463. \   aa==3 ? dec.maa() :
  464. \   aa==4 ? dec.sharpaamcmod(dark,thin,sharp,smooth,stabilize,tradius,aapel,aaov,aablk,aatype) :
  465. \           interleave( dec.        subtitle("aa=0",align=9),
  466. \                   dec.ediaa().    subtitle("aa=1",align=9),
  467. \                   dec.daa3(). subtitle("aa=2",align=9),
  468. \                   dec.maa().  subtitle("aa=3",align=9),
  469. \                   dec.sharpaamcmod(dark,thin,sharp,smooth,stabilize,tradius,aapel,aaov,aablk,aatype).subtitle("aa=4",align=9))
  470.  
  471. return omode==2 && pass==1 ? finalvfr : aaed
  472. }
  473.  
  474.  
  475. function chroma_rep(clip source, int "cache")
  476. {
  477. ###### parameters & other necessary vars ######
  478.     cache   = default(cache,-1)
  479.  
  480.  
  481. ###### source preparation & lut ######
  482. global  out1    = source
  483. global  out2    = mergechroma(source,mt_adddiff(source.trim(1,0),mt_makediff(source.trim(1,0),source.trim(2,0),y=1,u=3,v=3),y=1,u=3,v=3).blur(1))
  484.  
  485.  
  486. ###### initialise variables ######
  487. global  alfr     = -100
  488.  
  489.  
  490. ###### evaluation call & output calculation ######
  491. scriptclip( source, """
  492.  
  493. ### preparation ###
  494.        cfr = current_frame
  495.        ajmp = alfr+1==cfr
  496.        
  497.    global  alfr = cfr
  498.  
  499.        al_v = LumaDifference(out1.trim(1,0),out1.trim(2,0))
  500.        ac_v = ChromaUDifference(out1.trim(1,0),out1.trim(2,0)) + ChromaVDifference(out1.trim(1,0),out1.trim(2,0))
  501.  
  502.  ## luma value shifting ##
  503.    l10 = ajmp ? l01 : al_v
  504. global      l01 = ajmp ? l12 : al_v
  505. global      l12 = al_v
  506.  
  507.  ## chroma value shifting ##
  508.    c10 = ajmp ? c01 : ac_v
  509. global      c01 = ajmp ? c12 : ac_v
  510. global      c12 = ac_v
  511.    
  512. ### condition ###
  513.    change  = l12*3<l01 && c01*1.5<c12
  514.    chango  = l01*3<l10 && c10*1.5<c01
  515.    
  516.    change ? out2 : chango ? out1.trim(1,0) : out1
  517.  
  518. """)
  519.  
  520.  
  521. ###### final decimation & caching ######
  522. cache<0 ? last : last.RequestLinear(8, cache, 5, false, false)
  523.  
  524. return last
  525. }
  526.  
  527.  
  528. function chroma_rep2(clip source, int "cache")
  529. {
  530. ###### parameters & other necessary vars ######
  531.     cache   = default(cache,-1)
  532.  
  533.  
  534. ###### source preparation & lut ######
  535. global  out1    = source
  536. global  out2    = mergechroma(source,mt_adddiff(source.trim(1,0),mt_makediff(source.trim(1,0),source.trim(2,0),y=1,u=3,v=3),y=1,u=3,v=3).blur(1))
  537.  
  538.  
  539. ###### initialise variables ######
  540. global  alfr     = -100
  541.  
  542.  
  543. ###### evaluation call & output calculation ######
  544. chrixout = scriptclip( source, """
  545.  
  546. ### preparation ###
  547.        cfr = current_frame
  548.        ajmp = alfr+1==cfr
  549.        
  550.    global  alfr = cfr
  551.  
  552.        al_v = LumaDifference(out1,out1.trim(1,0))
  553.        ac_v = ChromaUDifference(out1,out1.trim(1,0)) + ChromaVDifference(out1,out1.trim(1,0))
  554.  
  555.  ## luma value shifting ##
  556.    l10 = ajmp ? l01 : al_v
  557. global      l01 = ajmp ? l12 : al_v
  558. global      l12 = al_v
  559.  
  560.  ## chroma value shifting ##
  561.    c10 = ajmp ? c01 : ac_v
  562. global      c01 = ajmp ? c12 : ac_v
  563. global      c12 = ac_v
  564.    
  565. ### condition ###
  566.    change  = l12*3<l01 && c01*1.5<c12
  567.    chango  = l01*3<l10 && c10*1.5<c01
  568.    
  569.    change ? out2 : chango ? out1.trim(1,0) : out1
  570.  
  571. """)
  572.  
  573.  
  574. ###### final decimation & caching ######
  575. chrixout2 = cache<0 ? source.mergechroma(chrixout) : source.mergechroma(chrixout).RequestLinear(8, cache, 5, false, false)
  576.  
  577. return chrixout2
  578. }
  579.  
  580.  
  581. #based on smartfade v0.2 by martino - Aimed at removing interlaced fades in anime. Uses luma difference between two fields as activation threshold.
  582. #mod by thetoof : removed degrainmedian post-processing,
  583. #       changed how the fields are blended together (average of 2 nnedi interpolations + contra-sharpening to retain more detail) and
  584. #       added cache parameter to forward the setting of animeivtc to this function
  585. #       renamed global parameter to something less general than "threshold"
  586.  
  587. function smartfademod(clip c, float "sfthr", bool "sfshow", int "cache") {
  588.    
  589. global sfthr    = default ( sfthr,  0.4 ) # Threshold for fade detection.
  590. show        = default ( sfshow, false ) # Displays luma difference between fields without processing anything.
  591. cache       = default ( cache,   10 ) # Cache the frames to help seeking and other functions requesting many frames
  592.  
  593. show ? scriptclip(c, "subtitle(string(abs(    separatefields().selectodd().averageluma() \
  594.                             - separatefields().selecteven().averageluma())))") : \
  595.        scriptclip(c, "sep = separatefields() \
  596.       avg = sep.selectodd().averageluma() - sep.selecteven().averageluma() \
  597.       abs(avg) > sfthr ? interleave(sep.selecteven(),sep.selectodd()).weave().daa3() : last")
  598.  
  599. cache<0 ? last : last.RequestLinear(8, cache, 5, false, false)
  600.  
  601.     return last
  602.  
  603. }
  604.  
  605. #Suggested by Mystery Keeper in "Denoise of tv-anime" thread
  606. function ediaa(clip a) {return a.EEDI2(field=1).TurnRight().EEDI2(field=1).TurnLeft().spline36resize(a.width,a.height,-0.5,-0.5)}
  607.  
  608. #Anti-aliasing with contra-sharpening by Didée
  609. function daa(clip c) {
  610. nn  = c.nnedi2(field=-2)
  611. dbl     = mt_average(selecteven(nn),selectodd(nn),U=3,V=3)
  612. dblD    = mt_makediff(c,dbl,U=3,V=3)
  613. shrpD   = mt_makediff(dbl,dbl.removegrain((width(c)>1100) ? 20 : 11),U=3,V=3)
  614. DD  = shrpD.repair(dblD,13)
  615. return dbl.mt_adddiff(DD,U=3,V=3) }
  616.  
  617. #Anti-aliasing with edge masking by martino, mask using "sobel" taken from Kintaro's useless filterscripts and modded by thetoof for spline36
  618. function maa(clip input, int "mask") {
  619. mask = input.mt_edge("sobel",7,7,5,5).mt_inflate()
  620. aa_clip=input.spline36Resize(width(input)*2,height(input)*2).TurnLeft().SangNom().TurnRight().SangNom().spline36Resize(width(input),height(input)).MergeChroma(input)
  621. return mt_merge(input,aa_clip,mask) }
  622.  
  623. #Developped in the "fine anime antialiasing thread"
  624. function SharpAAMCmod(clip orig, float "dark", int "thin", int "sharp", int "smooth", bool "stabilize", int "tradius", int "aapel", int "aaov", int "aablk", string "aatype")
  625. {
  626. dark    = default ( dark,     0.2 ) # strokes darkening strength
  627. thin    = default ( thin,      10 ) # Presharpening
  628. sharp   = default ( sharp,    150 ) # Postsharpening
  629. smooth  = default ( smooth,    -1 ) # Postsmoothing
  630. stabilize= default ( stabilize,false ) # Use post stabilization with Motion Compensation
  631. Tradius = default ( Tradius,    2 ) # 2 = MDegrain2 / 3 = MDegrain3
  632. aapel   = default ( aapel,      1 ) # accuracy of the motion estimation (Value can only be 1, 2 or 4. 1 means a precision to the pixel. 2 means a precision to half a pixel, 4 means a precision to quarter a pixel, produced by spatial interpolation (better but slower).)
  633. aaov    = default ( aaov,       (orig.width>1100) ? 8 : 4 ) # block overlap value (horizontal). Must be even and less than block size. (Higher = more precise & slower)
  634. aablk   = default ( aablk,      (orig.width>1100) ? 16 : 8 ) # Size of a block (horizontal). It's either 4, 8 or 16 ( default is 8 ). Larger blocks are less sensitive to noise, are faster, but also less accurate.
  635. aatype  = default ( aatype, "Sangnom" ) # Use Sangnom() or EEDI2() for anti-aliasing
  636.  
  637. w=width(orig)
  638. h=height(orig)
  639. m=mt_logic( orig.DEdgeMask(0,255,0,255,"5 10 5 0 0 0 -5 -10 -5", divisor=4,Y=3,U=3,V=3)
  640.  \       ,orig.DEdgeMask(0,255,0,255,"5 0 -5 10 0 -10 5 0 -5", divisor=4,Y=3,U=3,V=3)
  641.  \       ,"max").mt_lut("x 128 / 0.86 ^ 255 *")
  642. preaa=(thin==0 && dark==0) ? orig : (thin==0) ? orig.Toon(dark) : (dark==0) ? orig.awarpsharp2(depth=thin) : orig.Toon(dark).awarpsharp2(depth=thin)
  643. aa= (aatype=="Sangnom") ? preaa.spline36resize(w*2,h*2).TurnLeft().SangNom().TurnRight().SangNom().spline36resize(w,h) : (aatype=="EEDI2") ? preaa.ediaa() : blankclip(pixel_type="YV12").subtitle("Please use Sangnom or EEDI2 for aatype")
  644. postsh=(sharp==0 && smooth==0) ? aa : aa.lsfmod(edgemode=1,strength=sharp,overshoot=1,soft=smooth)
  645. merged=mt_merge(orig,postsh,m,Y=3,U=3,V=3)
  646.  
  647. sD=mt_makediff(orig,merged)
  648.  
  649. origsuper= orig.MSuper(pel=aapel)
  650. sDsuper  = sD.  MSuper(pel=aapel, levels=1)
  651.  
  652.  
  653. fv3 = tradius==3 ? origsuper.MAnalyse(isb=false,delta=3,overlap=aaov,blksize=aablk) : nop()
  654. fv2 = tradius>=2 ? origsuper.MAnalyse(isb=false,delta=2,overlap=aaov,blksize=aablk) : nop()
  655. fv1 = tradius>=1 ? origsuper.MAnalyse(isb=false,delta=1,overlap=aaov,blksize=aablk) : nop()
  656. bv1 = tradius>=1 ? origsuper.MAnalyse(isb=true, delta=1,overlap=aaov,blksize=aablk) : nop()
  657. bv2 = tradius>=2 ? origsuper.MAnalyse(isb=true, delta=2,overlap=aaov,blksize=aablk) : nop()
  658. bv3 = tradius==3 ? origsuper.MAnalyse(isb=true, delta=3,overlap=aaov,blksize=aablk) : nop()
  659. sDD = tradius==1 ? sD.MDegrain1(sDsuper,bv1,fv1) : tradius==2 ? sD.MDegrain2(sDsuper,bv1,fv1,bv2,fv2) : sD.MDegrain3(sDsuper,bv1,fv1,bv2,fv2,bv3,fv3)
  660.  
  661. reduc = 0.4
  662. sDD = mt_lutxy(sD,sDD,"x 128 - abs y 128 - abs < x y ?").mergeluma(sDD,1.0-reduc)
  663.  
  664. return stabilize ? orig.mt_makediff(sDD,U=2,V=2) : merged
  665. }
  666.  
  667. # Kill Combing Function from mcbob
  668. function VinverseD(clip clp, float "sstr", int "amnt", int "uv")
  669. {
  670. uv   = default(uv,3)
  671. sstr = default(sstr,2.7)
  672. amnt = default(amnt,255)
  673. uv2  = (uv==2) ? 1 : uv
  674. STR  = string(sstr)
  675. AMN  = string(amnt)
  676. vblur  = clp.mt_convolution("1","50 99 50",U=uv,V=uv)
  677. vblurD = mt_makediff(clp,vblur,U=uv2,V=uv2)
  678. Vshrp  = mt_lutxy(vblur,vblur.mt_convolution("1","1 4 6 4 1",U=uv2,V=uv2),expr="x x y - "+STR+" * +",U=uv2,V=uv2)
  679. VshrpD = mt_makediff(Vshrp,vblur,U=uv2,V=uv2)
  680. VlimD  = mt_lutxy(VshrpD,VblurD,expr="x 128 - y 128 - * 0 < x 128 - abs y 128 - abs < x y ? 128 - 0.25 * 128 + x 128 - abs y 128 - abs < x y ? ?",U=uv2,V=uv2)
  681. mt_adddiff(Vblur,VlimD,U=uv,V=uv)
  682. (amnt>254) ? last : (amnt==0) ? clp : mt_lutxy(clp,last,expr="x "+AMN+" + y < x "+AMN+" + x "+AMN+" - y > x "+AMN+" - y ? ?",U=uv,V=uv)
  683. return(last)
  684. }
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