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https://github.com/saitohirga/WSJT-X.git
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OK with multicasting data, FFTs starting at t=52 s.
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/map65@439 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
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cb3d314679
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6a2e78939d
@ -2,4 +2,4 @@ parameter (NSMAX=60*96000) !Samples per 60 s file
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integer*2 id !46 MB: raw data from Linrad timf2
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character*80 fname80
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common/datcom/id(4,NSMAX,2),nutc,newdat2,kbuf,kk,kkdone,nlost, &
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nlen,fname80
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t00,nlen,fname80
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@ -28,12 +28,11 @@ subroutine decode1(iarg)
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newdat2=0
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kbuf=1
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kk=NSMAX
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kkdone=0
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kkdone=-1
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newdat=1
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endif
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if((kk-kkdone).gt.32768) call symspec(id,kbuf,kk,kkdone,rxnoise, &
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newspec,newdat,ndecoding)
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if((kk-kkdone).gt.32768) call symspec(id,kbuf,kk,kkdone,nutc,t00,newdat)
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if(ndecoding.gt.0 .and. mode(1:4).eq.'JT65') then
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ndecdone=0
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107
map65a.f90
107
map65a.f90
@ -23,6 +23,7 @@ subroutine map65a(newdat)
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data nfile/0/,nutc0/-999/,nid/0/,ip000/1/,ip001/1/
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save
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print*,'C ',secnds(t00),nutc,kk,kbuf,kkdone
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pctlost=nlost/331.03
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if(nlost.ne.0) write(*,1001) nutc,nlost,pctlost
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1001 format('UTC:',i5.4,' Lost packets:',i6,', or',f6.1,' %')
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@ -33,9 +34,6 @@ subroutine map65a(newdat)
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if(nutc.ne.nutc0) nfile=nfile+1
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nutc0=nutc
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nutcdata=nutc
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write(utcdata,1002) nutc
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1002 format(i4.4)
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utcdata=utcdata(1:2)//':'//utcdata(3:4)
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open(23,file='CALL3.TXT',status='old')
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fselect=mousefqso + 1.6
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@ -57,8 +55,8 @@ subroutine map65a(newdat)
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ib=nint((fb+23000.0)/df + 1.0)
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endif
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kk=0
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nkk=1
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km=0
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nkm=1
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nz=n/8
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do i=1,NFFT
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@ -117,32 +115,32 @@ subroutine map65a(newdat)
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! Keep only the best candidate within ftol.
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if(fshort-fshort0.le.ftol .and. sync2.gt.sync20 &
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.and. nkk.eq.2) kk=kk-1
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.and. nkm.eq.2) km=km-1
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if(fshort-fshort0.gt.ftol .or. &
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sync2.gt.sync20) then
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kk=kk+1
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sig(kk,1)=nfile
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sig(kk,2)=nutc
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sig(kk,3)=fshort
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sig(kk,4)=syncshort
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sig(kk,5)=dt2
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sig(kk,6)=45*(ipol2-1)/57.2957795
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sig(kk,7)=0
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sig(kk,8)=snr2
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sig(kk,9)=0
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sig(kk,10)=0
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! sig(kk,11)=rms0
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sig(kk,12)=savg(ipol2,i)
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sig(kk,13)=0
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sig(kk,14)=0
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sig(kk,15)=0
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sig(kk,16)=0
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! sig(kk,17)=0
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sig(kk,18)=0
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msg(kk)=shmsg0(j)
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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)=fshort
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sig(km,4)=syncshort
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sig(km,5)=dt2
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sig(km,6)=45*(ipol2-1)/57.2957795
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sig(km,7)=0
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sig(km,8)=snr2
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sig(km,9)=0
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sig(km,10)=0
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! sig(km,11)=rms0
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sig(km,12)=savg(ipol2,i)
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sig(km,13)=0
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sig(km,14)=0
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sig(km,15)=0
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sig(km,16)=0
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! sig(km,17)=0
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sig(km,18)=0
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msg(km)=shmsg0(j)
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fshort0=fshort
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sync20=sync2
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nkk=2
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nkm=2
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endif
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endif
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enddo
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@ -155,42 +153,42 @@ subroutine map65a(newdat)
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! (Am I deleting any good decodes by doing this? Any harm in omitting
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! these statements??)
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if(freq-freq0.le.ftol .and. sync1.gt.sync10 .and. &
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nkk.eq.1 .and.nqd.eq.0) kk=kk-1
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nkm.eq.1 .and.nqd.eq.0) km=km-1
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if(freq-freq0.gt.ftol .or. sync1.gt.sync10 .and. nqd.eq.0) then
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nflip=nint(flipk)
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call decode1a(id(1,1,kbuf),newdat,nfilt,freq,nflip,dphi, &
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ipol,sync2,a,dt,pol,nkv,nhist,qual,decoded)
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kk=kk+1
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sig(kk,1)=nfile
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sig(kk,2)=nutc
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sig(kk,3)=freq
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sig(kk,4)=sync1
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sig(kk,5)=dt
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sig(kk,6)=pol
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sig(kk,7)=flipk
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sig(kk,8)=sync2
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sig(kk,9)=nkv
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sig(kk,10)=qual
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! sig(kk,11)=rms0
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sig(kk,12)=savg(ipol,i)
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sig(kk,13)=a(1)
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sig(kk,14)=a(2)
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sig(kk,15)=a(3)
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sig(kk,16)=a(4)
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! sig(kk,17)=a(5)
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sig(kk,18)=nhist
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msg(kk)=decoded
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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
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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)=rms0
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sig(km,12)=savg(ipol,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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nkk=1
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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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enddo
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if(nqd.eq.1) then
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nwrite=0
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do k=1,kk
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do k=1,km
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decoded=msg(k)
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if(decoded.ne.' ') then
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nutc=sig(k,2)
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@ -229,6 +227,7 @@ subroutine map65a(newdat)
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write(11,*) '$EOF'
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call flushqqq(11)
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print*,'D ',secnds(t00),nutc,kk,kbuf,kkdone
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ndecdone=1
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endif
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if(nagain.eq.1) go to 999
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@ -236,9 +235,9 @@ subroutine map65a(newdat)
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! Trim the list and produce a sorted index and sizes of groups.
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! (Should trimlist remove all but best SNR for given UTC and message content?)
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call trimlist(sig,kk,indx,nsiz,nz)
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call trimlist(sig,km,indx,nsiz,nz)
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do i=1,kk
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do i=1,km
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done(i)=.false.
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enddo
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j=0
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@ -307,5 +306,9 @@ subroutine map65a(newdat)
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999 nagain=0
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close(23)
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if(kbuf.eq.1) kkdone=60*96000
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if(kbuf.eq.2) kkdone=0
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kk=kkdone
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print*,'E ',secnds(t00),nutc,kk,kbuf,kkdone
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return
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end subroutine map65a
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42
recvpkt.F90
42
recvpkt.F90
@ -4,9 +4,9 @@ subroutine recvpkt(iarg)
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! Receive timf2 packets from Linrad, stuff data into id().
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! This routine runs in a background thread and will never return.
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#ifdef Win32
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use dflib
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#endif
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!#ifdef Win32
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! use dflib
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!#endif
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parameter (NSZ=2*60*96000)
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real*8 d8(NSZ)
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@ -15,7 +15,6 @@ subroutine recvpkt(iarg)
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logical first
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real*8 center_freq,buf8
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common/plrscom/center_freq,msec,fqso,iptr,nblock,userx_no,iusb,buf8(174)
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! 8 4 4 4 2 1 1 1392
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include 'datcom.f90'
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include 'gcom1.f90'
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include 'gcom2.f90'
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@ -36,9 +35,8 @@ subroutine recvpkt(iarg)
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nblock0=nblock
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if(lost.ne.0 .and. .not.first) then
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! print*,'Lost packets?',nblock,nblock0,lost,rxnoise,mode
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! Fill in zeros for the lost data.
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nlost=nlost + lost
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! print*,'Lost packets:',nblock,nblock0,lost
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nlost=nlost + lost ! Insert zeros for the lost data.
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do i=1,174*lost
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k=k+1
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d8(k)=0
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@ -55,7 +53,6 @@ subroutine recvpkt(iarg)
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k=0
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if(kb.eq.2) k=NSMAX
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nlost=0
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kbuf=kb
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endif
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if(kb.eq.1 .and. (k+174).gt.NSMAX) go to 20
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@ -104,24 +101,25 @@ subroutine recvpkt(iarg)
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mutcm=mod(nsec/60,60)
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mutc=100*mutch + mutcm
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ns=mod(nsec,60)
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! write(*,1010) mutc,ns,0.001*msec,k,rxnoise
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!1010 format('UTC:',i5.4,' ns:',i3,' t:',f10.3,' k:',i8)
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nsec0=nsec
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ntx=ntx+transmitting
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nutc=mutc
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! if(mod(nsec,60).eq.43) kk=k !### ??? ###
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if(mod(nsec,60).eq.52) then
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kk=k
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!###
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! kk=k
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! kbuf=kb
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!###
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! if(ns.eq.42) then
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! nutc=mutc
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! kbuf=kb
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! kk=k
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! t00=secnds(0.0)
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! endif
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if(ns.eq.52) then
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nutc=mutc
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kbuf=kb
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klost=nlost
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! if(ntx.lt.20) then
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! newdat=1
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! ndecoding=1
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! endif
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! ntx=0
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kk=k
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t00=secnds(0.0)
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print*,'A ',0.0,nutc,kk,kbuf,kkdone
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endif
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print*,ns,nutc,kbuf,kk,kkdone
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endif
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endif
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29
symspec.f90
29
symspec.f90
@ -1,28 +1,34 @@
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subroutine symspec(id,kbuf,kk,kkdone,rxnoise,newspec,newdat,ndecoding)
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subroutine symspec(id,kbuf,kk,kkdone,nutc,t00,newdat)
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! Compute spectra at four polarizations, using half-symbol steps.
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parameter (NSMAX=60*96000)
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integer*2 id(4,NSMAX)
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integer*2 id(4,NSMAX,2)
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complex z
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real*8 ts,hsym
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include 'spcom.f90'
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include 'gcom2.f90'
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complex cx(NFFT),cy(NFFT) ! pad to 32k with zeros
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data kbuf0/-999/
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save
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print*,'B ',secnds(t00),0,kk,kbuf,kkdone
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fac=0.0002 * 10.0**(0.05*(-rxnoise))
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hsym=2048.d0*96000.d0/11025.d0 !Samples per half symbol
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npts=hsym !Integral samples per half symbol
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ntot=322 !Half symbols per transmission
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! ntot=279 !Half symbols in 51.8 sec
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if(kkdone.eq.0) then
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if(kbuf.ne.kbuf0 .or. kkdone.eq.-1) then
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kkdone=0
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kbuf0=kbuf
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ts=1.d0 - hsym
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n=0
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do ip=1,4
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do i=1,NFFT
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szavg(ip,i)=0.
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enddo
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enddo
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ts=1.d0 - hsym
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n=0
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endif
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do nn=1,ntot
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@ -31,11 +37,11 @@ subroutine symspec(id,kbuf,kk,kkdone,rxnoise,newspec,newdat,ndecoding)
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i1=ts+2*hsym !Next starting sample pointer
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ts=ts+hsym !OK, update the exact sample pointer
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do i=1,npts !Copy data to FFT arrays
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xr=fac*id(1,i0+i)
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xi=fac*id(2,i0+i)
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xr=fac*id(1,i0+i,kbuf)
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xi=fac*id(2,i0+i,kbuf)
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cx(i)=cmplx(xr,xi)
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yr=fac*id(3,i0+i)
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yi=fac*id(4,i0+i)
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yr=fac*id(3,i0+i,kbuf)
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yi=fac*id(4,i0+i,kbuf)
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cy(i)=cmplx(yr,yi)
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enddo
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@ -86,12 +92,15 @@ subroutine symspec(id,kbuf,kk,kkdone,rxnoise,newspec,newdat,ndecoding)
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! if(n.eq.ntot) then
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if(n.ge.279) then
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call move(ssz5,ss5,322*NFFT)
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write(utcdata,1002) nutc
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1002 format(i4.4)
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utcdata=utcdata(1:2)//':'//utcdata(3:4)
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newspec=1
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call move(ssz,ss,4*322*NFFT)
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call move(szavg,savg,4*NFFT)
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newdat=1
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ndecoding=1
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go to 999
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return
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endif
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kkdone=i1-1
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nhsym=n
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