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WIP on simplifying map65a.f90.
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@ -19,8 +19,7 @@ subroutine ftninit
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open(12,file=appd//'/q65w_decodes.txt',status='unknown')
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open(12,file=appd//'/q65w_decodes.txt',status='unknown')
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open(17,file=appd//'/red.dat',status='unknown')
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open(17,file=appd//'/red.dat',status='unknown')
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open(19,file=appd//'/livecq.txt',status='unknown')
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open(19,file=appd//'/livecq.txt',status='unknown')
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! open(21,file=appd//'/map65_rx.log',status='unknown',access='append',err=950)
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open(71,file=appd//'/debug.tmp',status='unknown')
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! open(26,file=appd//'/tmp26.txt',status='unknown')
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! Import FFTW wisdom, if available:
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! Import FFTW wisdom, if available:
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iret=fftwf_init_threads() !Initialize FFTW threading
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iret=fftwf_init_threads() !Initialize FFTW threading
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@ -119,10 +119,18 @@ subroutine map65a(dd,ss,savg,newdat,nutc,fcenter,ntol,idphi,nfa,nfb, &
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ntry=0
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ntry=0
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short=0. !Zero the whole short array
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short=0. !Zero the whole short array
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jpz=1
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jpz=1
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print*,'AAA',mode65
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! if(xpol) jpz=4
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! if(xpol) jpz=4
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! First steps for JT65 decoding
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! First steps for JT65 decoding
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do i=ia,ib !Search over freq range
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! do i=ia,ib !Search over freq range
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do i=ia,ia
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if(mode65.eq.0) then
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print*,'BBB'
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go to 68
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endif
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freq=0.001*(i-16385)*df
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freq=0.001*(i-16385)*df
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! Find the local base level for each polarization; update every 10 bins.
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! Find the local base level for each polarization; update every 10 bins.
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if(mod(i-ia,10).eq.0) then
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if(mod(i-ia,10).eq.0) then
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@ -233,55 +241,29 @@ subroutine map65a(dd,ss,savg,newdat,nutc,fcenter,ntol,idphi,nfa,nfb, &
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f00=(i-1)*df !Freq of detected sync tone (0-96000 Hz)
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f00=(i-1)*df !Freq of detected sync tone (0-96000 Hz)
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ntry=ntry+1
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ntry=ntry+1
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68 print*,'CCC'
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call timer('decode1a',0)
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call timer('decode1a',0)
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ifreq=i
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ifreq=i
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ikhz=nint(freq+0.5*(nfa+nfb)-foffset)-nfshift
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ikhz=nint(freq+0.5*(nfa+nfb)-foffset)-nfshift
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idf=nint(1000.0*(freq+0.5*(nfa+nfb)-foffset-(ikHz+nfshift)))
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idf=nint(1000.0*(freq+0.5*(nfa+nfb)-foffset-(ikHz+nfshift)))
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rewind 71
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write(71,*)newdat,f00,nflip,mode65,nfsample, &
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xpol,mycall,hiscall,hisgrid,neme,ndepth,nqd,dphi, &
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ndphi,nutc,ikHz,idf,ipol,ntol,sync2, &
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a,dt,pol,nkv,nhist,nsum,nsave,qual,decoded
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call decode1a(dd,newdat,f00,nflip,mode65,nfsample, &
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call decode1a(dd,newdat,f00,nflip,mode65,nfsample, &
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xpol,mycall,hiscall,hisgrid,neme,ndepth,nqd,dphi, &
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xpol,mycall,hiscall,hisgrid,neme,ndepth,nqd,dphi, &
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ndphi,nutc,ikHz,idf,ipol,ntol,sync2, &
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ndphi,nutc,ikHz,idf,ipol,ntol,sync2, &
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a,dt,pol,nkv,nhist,nsum,nsave,qual,decoded)
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a,dt,pol,nkv,nhist,nsum,nsave,qual,decoded)
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call timer('decode1a',1)
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call timer('decode1a',1)
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if(mode65.eq.0) exit !### JHT ###
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! The case sync1=2.0 is just to make sure decode1a is called and bigfft done.
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if(mode65.ne.0 .and. sync1.ne.2.000000) then
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if(km.lt.MAXMSG) km=km+1
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sig(km,1)=nfile
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sig(km,2)=nutc
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sig(km,3)=freq + 0.5*(nfa+nfb)
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sig(km,4)=sync1
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sig(km,5)=dt
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sig(km,6)=pol
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sig(km,7)=flipk
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sig(km,8)=sync2
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sig(km,9)=nkv
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sig(km,10)=qual
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! sig(km,11)=idphi
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sig(km,12)=savg(i)
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sig(km,13)=a(1)
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sig(km,14)=a(2)
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sig(km,15)=a(3)
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sig(km,16)=a(4)
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! sig(km,17)=a(5)
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sig(km,18)=nhist
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msg(km)=decoded
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freq0=freq
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sync10=sync1
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nkm=1
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endif
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endif
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endif
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endif
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endif
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endif
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endif
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enddo !i=ia,ib
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enddo !i=ia,ib
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if(ndphi.eq.1 .and.iloop.lt.12) then
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iloop=iloop+1
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go to 2
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endif
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if(ndphi.eq.1 .and.iloop.eq.12) call getdphi(qphi)
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if(nhsym.eq.nhsym1 .and. tsec0.gt.3.0) go to 700
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if(nqd.eq.0 .and. bq65) then
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if(nqd.eq.0 .and. bq65) then
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! Do the wideband Q65 decode
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! Do the wideband Q65 decode
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do icand=1,ncand
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do icand=1,ncand
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