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https://github.com/saitohirga/WSJT-X.git
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Many tweaks to QRA64 decoder to optimize processing of 6m ionoscatter signals.
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c17acdb447
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@ -12,7 +12,7 @@ subroutine qra64a(dd,npts,nf1,nf2,nfqso,ntol,mode64,minsync,ndepth, &
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logical ltext
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logical ltext
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complex c00(0:720000) !Complex spectrum of dd()
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complex c00(0:720000) !Complex spectrum of dd()
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complex c0(0:720000) !Complex data for dd()
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complex c0(0:720000) !Complex data for dd()
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real a(3)
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real a(3) !twkfreq params f,f1,f2
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real dd(NMAX) !Raw data sampled at 12000 Hz
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real dd(NMAX) !Raw data sampled at 12000 Hz
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real s3(LN) !Symbol spectra
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real s3(LN) !Symbol spectra
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real s3a(LN) !Symbol spectra
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real s3a(LN) !Symbol spectra
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@ -62,39 +62,49 @@ subroutine qra64a(dd,npts,nf1,nf2,nfqso,ntol,mode64,minsync,ndepth, &
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npts2=npts/2
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npts2=npts/2
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call timer('sync64 ',0)
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call timer('sync64 ',0)
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call sync64(c00,nf1,nf2,nfqso,ntol,mode64,emedelay,dtx,f0,jpk0,sync, &
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call sync64(c00,nf1,nf2,nfqso,ntol,minsync,mode64,emedelay,dtx,f0, &
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sync2,width)
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jpk0,sync,sync2,width)
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call timer('sync64 ',1)
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call timer('sync64 ',1)
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nfreq=nint(f0)
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nfreq=nint(f0)
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if(mode64.eq.1 .and. minsync.ge.0 .and. (sync-7.0).lt.minsync) go to 900
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if(mode64.eq.1 .and. minsync.ne.-1 .and. (sync-7.0).lt.minsync) go to 900
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! if((sync-3.4).lt.float(minsync) .or.width.gt.340.0) go to 900
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a=0.
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a(1)=-f0
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call twkfreq(c00,c0,npts2,6000.0,a)
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irc=-99
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irc=-99
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s3lim=20.
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s3lim=20.
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itz=11
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ibwmax=11
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if(mode64.eq.4) itz=9
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if(mode64.le.4) ibwmax=9
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if(mode64.eq.2) itz=7
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ibwmin=0
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if(mode64.eq.1) itz=5
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idtmax=5
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if(minsync.eq.-2) then
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ibwmin=ibwmax
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idtmax=3
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endif
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LL=64*(mode64+2)
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LL=64*(mode64+2)
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NN=63
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NN=63
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napmin=99
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napmin=99
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do itry0=1,5
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ncall=0
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idt=itry0/2
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if(mod(itry0,2).eq.0) idt=-idt
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do idf0=1,11
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idf=idf0/2
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if(mod(idf0,2).eq.0) idf=-idf
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a=0.
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a(1)=-(f0+0.868*idf)
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call twkfreq(c00,c0,npts2,6000.0,a)
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do idt0=1,idtmax
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idt=idt0/2
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if(mod(idt0,2).eq.0) idt=-idt
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jpk=jpk0 + 750*idt
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jpk=jpk0 + 750*idt
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call spec64(c0,jpk,s3a,LL,NN)
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call spec64(c0,jpk,s3a,LL,NN)
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call pctile(s3a,LL*NN,40,base)
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call pctile(s3a,LL*NN,40,base)
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s3a=s3a/base
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s3a=s3a/base
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where(s3a(1:LL*NN)>s3lim) s3a(1:LL*NN)=s3lim
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where(s3a(1:LL*NN)>s3lim) s3a(1:LL*NN)=s3lim
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do iter=itz,0,-2
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do ibw=ibwmax,ibwmin,-2
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b90=1.728**iter
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b90=1.728**ibw
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if(b90.gt.230.0) cycle
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if(b90.gt.230.0) cycle
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if(b90.lt.0.15*width) exit
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if(b90.lt.0.15*width) exit
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s3(1:LL*NN)=s3a(1:LL*NN)
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s3(1:LL*NN)=s3a(1:LL*NN)
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ncall=ncall+1
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call timer('qra64_de',0)
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call timer('qra64_de',0)
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call qra64_dec(s3,nc1,nc2,ng2,naptype,0,nSubmode,b90, &
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call qra64_dec(s3,nc1,nc2,ng2,naptype,0,nSubmode,b90, &
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nFadingModel,dat4,snr2,irc)
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nFadingModel,dat4,snr2,irc)
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@ -109,21 +119,27 @@ subroutine qra64a(dd,npts,nf1,nf2,nfqso,ntol,mode64,minsync,ndepth, &
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napmin=nap(iirc)
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napmin=nap(iirc)
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irckeep=irc
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irckeep=irc
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dtxkeep=jpk/6000.0 - 1.0
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dtxkeep=jpk/6000.0 - 1.0
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itry0keep=itry0
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f0keep=-a(1)
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iterkeep=iter
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idfkeep=idf
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idtkeep=idt
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ibwkeep=ibw
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endif
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endif
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enddo
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enddo
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if(irc.eq.0) exit
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if(iand(ndepth,3).lt.3 .and. irc.ge.0) go to 100
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enddo
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if(irc.eq.0) go to 100
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enddo ! idt (DT loop)
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enddo ! idf (f0 loop)
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if(napmin.ne.99) then
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100 if(napmin.ne.99) then
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dat4=dat4x
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dat4=dat4x
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b90=b90x
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b90=b90x
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snr2=snr2x
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snr2=snr2x
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irc=irckeep
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irc=irckeep
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dtx=dtxkeep
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dtx=dtxkeep
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itry0=itry0keep
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f0=f0keep
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iter=iterkeep
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idt=idtkeep
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idf=idfkeep
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ibw=ibwkeep
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endif
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endif
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10 decoded=' '
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10 decoded=' '
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@ -140,6 +156,9 @@ subroutine qra64a(dd,npts,nf1,nf2,nfqso,ntol,mode64,minsync,ndepth, &
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else
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else
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snr2=0.
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snr2=0.
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endif
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endif
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nfreq=nint(f0)
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write(71,3071) idf,idt,ncall,irc,nsnr,dtx,nfreq,decoded
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3071 format(5i5,f7.2,i6,2x,a22)
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900 if(irc.lt.0) then
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900 if(irc.lt.0) then
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sy=max(1.0,sync)
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sy=max(1.0,sync)
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@ -1,5 +1,5 @@
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subroutine sync64(c0,nf1,nf2,nfqso,ntol,mode64,emedelay,dtx,f0,jpk,sync, &
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subroutine sync64(c0,nf1,nf2,nfqso,ntol,minsync,mode64,emedelay,dtx,f0, &
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sync2,width)
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jpk,sync,sync2,width)
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use timer_module, only: timer
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use timer_module, only: timer
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@ -61,11 +61,13 @@ subroutine sync64(c0,nf1,nf2,nfqso,ntol,mode64,emedelay,dtx,f0,jpk,sync, &
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smaxall=0.
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smaxall=0.
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jpk=0
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jpk=0
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ja=0
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ja=0
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jb=(5.0+emedelay)*6000 !Bigger range than necessary?
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! jb=(5.0+emedelay)*6000 !Bigger range than necessary?
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jb=(2.0+emedelay)*6000 !Bigger range than necessary?
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jstep=100
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jstep=100
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ipk=0
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ipk=0
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kpk=0
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kpk=0
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nadd=10*mode64
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nadd=10*mode64
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if(minsync.eq.-2) nadd=10 !###
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if(mod(nadd,2).eq.0) nadd=nadd+1 !Make nadd odd
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if(mod(nadd,2).eq.0) nadd=nadd+1 !Make nadd odd
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nskip=max(49,nadd)
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nskip=max(49,nadd)
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@ -96,7 +98,9 @@ subroutine sync64(c0,nf1,nf2,nfqso,ntol,mode64,emedelay,dtx,f0,jpk,sync, &
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s0(:ia-1)=0.
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s0(:ia-1)=0.
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s0(ib+1:)=0.
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s0(ib+1:)=0.
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if(nadd.ge.3) then !Smooth the spectrum
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if(nadd.ge.3) then !Smooth the spectrum
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do ii=1,3
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iiz=3
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if(minsync.eq.-2) iiz=1
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do ii=1,iiz !### Was ii=1,3
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s0b(ia:ib)=s0(ia:ib)
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s0b(ia:ib)=s0(ia:ib)
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call smo(s0b(ia:ib),iz,s0(ia:ib),nadd)
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call smo(s0b(ia:ib),iz,s0(ia:ib),nadd)
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enddo
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enddo
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@ -117,8 +121,6 @@ subroutine sync64(c0,nf1,nf2,nfqso,ntol,mode64,emedelay,dtx,f0,jpk,sync, &
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enddo ! j1 (DT loop)
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enddo ! j1 (DT loop)
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s0a=s0a+2.0
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s0a=s0a+2.0
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! write(17) ia,ib,s0a(ia:ib) !Save data for red curve
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! close(17)
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nskip=50
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nskip=50
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call lorentzian(s0a(ia+nskip:ib-nskip),iz-2*nskip,a)
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call lorentzian(s0a(ia+nskip:ib-nskip),iz-2*nskip,a)
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@ -799,7 +799,7 @@ QPushButton[state="ok"] {
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<string>Sync </string>
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<string>Sync </string>
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</property>
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</property>
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<property name="minimum">
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<property name="minimum">
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<number>-1</number>
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<number>-2</number>
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</property>
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</property>
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<property name="maximum">
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<property name="maximum">
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<number>10</number>
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<number>10</number>
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