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https://github.com/saitohirga/WSJT-X.git
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eaa540b65b
- Remove alsa/oss from configure.ac and regenerate configure file. - Note it is MAP65 not WSJT. - rfile3a.f90 -> rfile3a.F90 for gfortran preprocessor. - Comment out compiler option that does not work on gfortran for now. git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/map65@1151 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
137 lines
3.3 KiB
Fortran
137 lines
3.3 KiB
Fortran
subroutine recvpkt(iarg)
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! Receive timf2 packets from Linrad and stuff data into array id().
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! (This routine runs in a background thread and will never return.)
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parameter (NSZ=2*60*96000)
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real*8 d8(NSZ)
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integer*1 userx_no,iusb
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integer*2 nblock,nblock0
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logical synced
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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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include 'datcom.f90'
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include 'gcom1.f90'
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include 'gcom2.f90'
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equivalence (id,d8)
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data nblock0/0/,kb/1/,ns00/99/
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data sqave/0.0/,u/0.001/,rxnoise/0.0/,pctblank/0.0/,kbuf/1/,lost_tot/0/
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data multicast0/-99/
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save
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1 call setup_rsocket(multicast) !Open socket for multicast/unicast data
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k=0
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kk=0
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kxp=0
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kb=1
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nsec0=-999
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fcenter=144.125 !Default (startup) frequency)
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multicast0=multicast
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ntx=0
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synced=.false.
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10 if(multicast.ne.multicast0) go to 1
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call recv_pkt(center_freq)
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! Should receive a new packet every 174/96000 = 0.0018125 s
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nsec=mod(Tsec,86400.d0) !Time according to MAP65
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nseclr=msec/1000 !Time according to Linrad
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fcenter=center_freq
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! Reset buffer pointers at start of minute.
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ns=mod(nsec,60)
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if(ns.lt.ns00 .and. (lauto+monitoring.ne.0)) then
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! print*,'new minute:',mod(nsec/60,60),ns00,ns,ntx,kb
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if(ntx.eq.0) kb=3-kb
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k=(kb-1)*60*96000
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kxp=k
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ndone1=0
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ndone2=0
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lost_tot=0
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synced=.true.
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ntx=0
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endif
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ns00=ns
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if(transmitting.eq.1) ntx=1
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! Test for buffer full
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if((kb.eq.1 .and. (k+174).gt.NSMAX) .or. &
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(kb.eq.2 .and. (k+174).gt.2*NSMAX)) go to 20
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! Check for lost packets
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lost=nblock-nblock0-1
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if(lost.ne.0) then
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nb=nblock
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if(nb.lt.0) nb=nb+65536
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nb0=nblock0
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if(nb0.lt.0) nb0=nb0+65536
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lost_tot=lost_tot + 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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enddo
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endif
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nblock0=nblock
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tdiff=mod(0.001d0*msec,60.d0)-mod(Tsec,60.d0)
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if(tdiff.lt.-30.) tdiff=tdiff+60.
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if(tdiff.gt.30.) tdiff=tdiff-60.
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! Move data into Rx buffer and compute average signal level.
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sq=0.
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do i=1,174
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k=k+1
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d8(k)=buf8(i)
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k2=k
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n=1
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if(k.gt.NSMAX) then
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k2=k2-NSMAX
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n=2
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endif
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x1=id(1,k2,n)
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x2=id(2,k2,n)
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x3=id(3,k2,n)
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x4=id(4,k2,n)
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sq=sq + x1*x1 + x2*x2 + x3*x3 + x4*x4
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enddo
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sqave=sqave + u*(sq-sqave)
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rxnoise=10.0*log10(sqave) - 48.0
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kxp=k
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20 if(nsec.ne.nsec0) then
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nsec0=nsec
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mutch=nseclr/3600
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mutcm=mod(nseclr/60,60)
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mutc=100*mutch + mutcm
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! If we have not transmitted in this minute, see if it's time to start FFTs
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if(ntx.eq.0 .and. lauto+monitoring.ne.0) then
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if(ns.ge.nt1 .and. ndone1.eq.0 .and. synced) then
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nutc=mutc
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fcenter=center_freq
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kbuf=kb
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kk=k
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ndiskdat=0
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ndone1=1
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endif
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! See if it's time to start the full decoding procedure.
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nhsym=(k-(kbuf-1)*60*96000)/17832.9252
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if(ndone1.eq.1 .and. nhsym.ge.279 .and.ndone2.eq.0) then
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kk=k
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nlost=lost_tot ! Save stats for printout
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ndone2=1
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! print*,'recvpkt 2:',ns,kb,k
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endif
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endif
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! if(ns.le.5 .or. ns.ge.46) write(*,3001) ns,ndone1,kb, &
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! kbuf,ntx,kk,tdiff
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!3001 format(5i4,i11,f8.2)
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endif
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go to 10
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end subroutine recvpkt
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